Various indicators that affect the perception of tax compliance in Turkey.
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It is a de facto assumption for all countries that tax income cannot be gained in its entire potential (tax capacity). The same is also valid for the efforts aimed at minimizing the loss of tax revenue (tax effort). It is undeniable that applications for taxpayers both socially and psychologically are also needed in order to prevent possible loss of tax income along with the technical efforts made by tax legislators and tax offices. Thus, tax compliance takes place in the scope of the efficiency of the tax implementation such as the completeness of legislation, inspections, and sanctions.
Many high quality studies have been conducted in Turkey on tax compliance and its main indicators, i.e., tax ethics. Some of these were supported with field studies. However, due to the passing of time and changing conditions, the continuity in the research on these issues is required since empirical studies indicate that the changes in the conditions over time may give different results.
In this study, as a different approach, perception of tax compliance was tested on university students who have little or no tax implementation experience. For the government, tax income operations are heavily dependent on tax compliance, while the fairness of the allocation of tax burden affects the tax payers’ compliance. The situation has been studied here by dealing with university students in regard to whether or not a perception of tax compliance develops in a highly educated people who are not tax payers yet, and to what degree. With this intention, a questionnaire related to the factors that affect the tax compliance was implemented on a sample group that includes people with similar characteristics involving the level of education, department of study, and age.
As stated by James and Alley, tax compliance was defined “in terms of the degree to which taxpayers comply with the tax law” [1]. Tax compliance is the tax payers’ compliance with tax laws and regulations, while the concept assumes willingness of the tax payers to comply with their liabilities without being inspected, prosecuted, and without a need for a threat or a sanction [2]. The concepts of tax ethics and tax consciousness are hidden in this definition. Tax consciousness is defined as a necessary fact that helps to know the extent to which changes in people’s tax burden will affect their behavior [3]. Besides that, tax moral is also defined as “taxpayers’ intrinsic motivation to pay taxes” in [4]. Higher the tax consciousness happens, higher the tax morality becomes. As long as the tax consciousness occurs and increases, tax moral will increase and a perception of tax compliance will develop (Figure 1).
Forward-reverse connections of tax compliance. Source: Author’s illustration.
The tax compliance shaped by tax consciousness and tax ethics should be completed by the stages of taxing in terms of the tax payer. The content of tax compliance is described in four parts [5]:
Complete declaration of the income to be taxed
Accurate representation of the factors to be discounted from the tax
Submitting the declaration on time
Calculating the tax liability correctly.
In our study, the concept of tax compliance will be tested with empirical experiments on university students who are not tax payers yet, but have knowledge about these issues because of their level of education. For this paper, it is preferred to use lab experiment with undergraduate students. As referred in [6], most laboratory experiments which have been conducted by using students are very common. The reason is that in these experiments, it is realized that the responses of students are often heavily the same as the responses of other subject pools in similar lab experiments. Unlike Levitte and List (2007) and Kogler et al. [27], students as a subject pool are useful in many studies [7, 8, 9, 10].
Even though the study has its limitations, it will help in the development of a perception of tax compliance through information before tax-paying experience and efforts for the creation of social norms in terms of its novelty. Thus, it will show whether such efforts will have an impact on the efficiency of future tax income.
Tax compliance may be defined in two ways namely
There are fundamental factors that affect formal and/or financial compliance. The following is a list of factors that affect tax compliance [11]:
Level of income and tax ratios
Social and demographic factors
Sanctions, probability of inspection, previous inspections
Subjective and objective measures/preventions
Effects of certified public accountants and/or tax consultants
Moral and social dynamics
Complexity of the tax system and tax amnesty.
Among the factors stated above, the ones emphasized here are social-demographic and moral-social dynamics that affect compliance for the tax payer and inspections-sanctions and subjective-objective measures that affect tax administration implementations. The level of knowledge and social norms gained by students in the experiment up to this study is considered to be sufficient in order to test the factors mentioned before.
In addition to the factors listed above, various financial and economic indicators that affect tax compliance may lead to a change in the tax payer’s perception of compliance. These factors may be ordered as follows: tax burden, tax structure, debt burden, and underground economy (Figure 2).
Influencing factors of tax compliance. Source: Author’s illustration.
The most important macroeconomic parameter that affects the perception of tax compliance is the tax burden, which also affects tax consciousness. The higher the tax burden on an individual is, the more problematic the tax compliance becomes, especially because of the idea that the system is unjust. The idea that the tax burden is unjust may develop based on the ratio of direct and indirect taxes in the tax structure. As the tax payers know that indirect taxes are collected from everyone on goods and services and the burden is inversely proportionate to the income, they may develop opposite reactions. In direct taxes, such as ones collected according to a projected declaration, the tax payer may fail to comply with the declaration based on the amount of the burden. In withholding taxes, as there is no way to avoid the tax, there may be thoughts of overestimation against other tax payers. This situation in the direct and indirect tax structure may affect tax compliance by itself, as well as over the tax burden.
Debt burden normally leads to tax increases for the term following the term it is experienced. The tax burden is dependent on the magnitude of the debt burden. This is another way of which tax burden interferes with tax compliance. As Önder reports that any decrease or disappearance of the perception of tax compliance for any reason will bring an increase in underground economy [12]. In scope of this issue, the 2015 Action Plan to Eliminate Underground Economy by the Ministry of Development determined increasing the voluntary tax compliance as an important action plan component and stated that
Table 1 shows some indicators that affect tax compliance in Turkey with numbers from the year 2013. These data not only provide numbers important to understand the concepts used in this study but also represent factors that influence real life situations. During the experimental implementation stage of the study, the students were briefed about the data that are mentioned above. As a group which does not carry the tax burden and/or does not completely feel it yet, university students know about these issues in terms of economics and finances, and it is important to test these parameters under these conditions in order to understand the perception of tax compliance.
2013 | % |
---|---|
Income tax/gross domestic product (GDP) | 5.02 |
Corporate tax/GDP | 2.01 |
VAT + special consumption tax/GDP | 10.1 |
Tax burden/GDP | 29.3 |
Net foreign debt stock/GDP | 27.8 |
The ratio of the total tax income (including social security premiums) lost because of underground economy | 16 |
Experimental survey method was used for the subject of this study. The questions in the questionnaire consist of ones that were asked in a similar way in previous studies on the subject.1 There were seven questions and they used a three-point Likert scale as in [17], which worked on “
The construct of the analysis is to evaluate the level of significance for the questions in the form of hypotheses and crossexamine the related hypotheses.
In total, 287 students from three different departments at the Faculty of Economics and Administrative Sciences of Ankara Gazi University took part in the study. The mean age of students was 23 (SD: 2.1).
As seen in Table 2, the departments were chosen by considering the students of these departments start taking public finance, tax law, and economics classes in their first year. Taking the courses which are public finance and tax law helps students understand the place of taxes in law implementation and public finance, whereas learning economics raises awareness on the roles taxes play in the economic system and helps students understand the relationship of taxes and macroeconomic parameters, therefore affecting tax compliance. Every student who participated has taken the mentioned courses and/or is currently taking it.
Finance department | Labor economics and industrial relations department | Econometrics department | |
---|---|---|---|
Number of participants by department | 112 | 102 | 73 |
Number of participants by department.
Source. Author’s identification.
As seen in Table 3, it is important that participants are mostly third and fourth year students, as their knowledge about taxes is above a certain level and they can answer the questions with similar awareness.
First year | Second year | Third year | Fourth year | |
---|---|---|---|---|
Distribution of participants by levels | 62 | 48 | 94 | 83 |
Distribution of participants by levels of grade.
Source. Author’s identification.
In selection of the questions in the questionnaire according to Likert Scale Formation Technique (Summation Ordering Technique) described in detail in [18], hypotheses were developed in order to assess the fundamental content of the subjects of this study. The hypotheses are given in Table 4.
Hypotheses H1 and H2 are for testing the tax consciousness, which fundamentally affects tax compliance. Associating paying taxes with being a good citizen and being aware of the contribution of taxes for national development will establish or improve a perception of tax compliance.
Hypotheses H3, H4, and H5 are indicators for tax payers with established or developed perceptions of tax compliance on whether they comply with the duties of paying taxes as they must be.
Hypotheses H6 and H7 measure the contribution of factors provided by the tax administration on the perception of tax compliance. Providing correct and fast service at the administration not only establishes/improves trust in the administration but also prevents complexities and strengthens the tax payers’ perceptions of compliance.
Hypotheses | |
---|---|
1 | H1: Being a tax payer who shows the required compliance means being a good citizen |
2 | H2: A compliant tax payer gained this trait as they think paying taxes helps in national development |
3 | H3: A compliant tax payer makes their declaration on time |
4 | H4: A compliant tax payer calculates their debt accurately |
5 | H5: A compliant tax payer is sensitive about paying their tax debts |
6 | H6: A compliant tax payer gained this trait because the tax administration provided correct and fast service |
7 | H7: A compliant tax payer gained this trait because the tax administration provided correct information about calculated tax payments |
Hypotheses of the lab experiment.
Source. Author’s identification.
Fundamentally, two things may be provided as limitations of the study. The first limitation is that it is difficult to collect information on tax compliance behavior as encountered in many tax compliance studies [19].
The second limitation is that, as Kogler et al. reported, problems may arise when students are selected as a sample, as they do not have sufficient experience paying taxes. Kogler et al. indicated in 2013 that students fail to concentrate especially on tax evasion scenarios because of their lack of experience [20].
Frequencies and percentages of the responses to the hypotheses are given in Table 5.
Statements | Responses | |||||
---|---|---|---|---|---|---|
Disagree | Somewhat agree | Agree | ||||
Frequency | % | Frequency | % | Frequency | % | |
H1: Being a tax payer who shows the required compliance means being a good citizen | 32 | 11.1 | 47 | 16.4 | 198 | 69.0 |
H2: A compliant tax payer gained this trait as they think paying taxes helps in national development | 49 | 17.1 | 90 | 31.4 | 147 | 51.2 |
H3: A compliant tax payer makes their declaration on time | 19 | 6.6 | 38 | 13.2 | 230 | 80.1 |
H4: A compliant tax payer calculates their debt accurately | 33 | 11.5 | 61 | 21.3 | 192 | 66.9 |
H5: A compliant tax payer is sensitive about paying their tax debts | 26 | 9.1 | 44 | 15.3 | 216 | 75.3 |
H6: A compliant tax payer gained this trait because the tax administration provided correct and fast service | 90 | 31.4 | 88 | 30.7 | 109 | 38.0 |
H7: A compliant tax payer gained this trait because the tax administration provided correct information about calculated tax payments | 68 | 23.7 | 92 | 32.1 | 126 | 43.9 |
Statements and the distributions of frequencies of the responses.
Source. Author’s identification.
As a general assessment, considering the percentages of the responses, the perception of tax compliance decreases for the statements about the tax administration.
The percentage distribution of the hypotheses H1 and H2 seen in Graph 1 that the statements are related to tax consciousness and implementations toward these may increase the perception of tax compliance.
The percentage distribution of the H1 and H2 hypotheses. Source. Author’s calculation.
Graph 2 shows the relationship between increases in the perception of tax compliance and compliance by tax payers who show voluntary compliance, where the tendency for the participants’ responses showed a relationship in the positive direction.
The percentage distribution of the H3, H4, and H5 hypotheses. Source. Author’s calculation.
Graph 3 shows the distribution of responses to hypotheses testing effects of trusting the tax administration and the administration’s operation on the perception of tax compliance. Participation percentages show that the administration is not considered to be providing a correct and fast service, and this is thought to decrease the perception of tax compliance. It can be seen on the distributions that supplying correct information will prevent complexities and increase the perception of tax compliance.
The percentage distribution of the H6 and H7 hypotheses. Source. Author’s calculation.
In this section, hypotheses found to be related to each other and with high levels of significance will be assessed by crossexamination. In crossexaminations and comments, three different stages will be followed: (1) tax consciousness and tax compliance, (2) tax payer duties and tax compliance, and (3) trusting the tax administration and tax compliance.
In this stage, the hypotheses H1 and H2 will be assessed together and the tax compliance and tax consciousness relationship will be observed.
For tax compliance, the financial, economic, and social meaning of taxes must be understood by the tax payers. Leder et al. reported that information campaigns about taxes financing public goods and services increase consciousness of tax payers about the importance of taxes, strengthen their perceptions toward financial change, and increase their compliance levels [21]. Likewise, Karakostas and Zizzo also stated that especially implementations like advertisements support the concept of norm creation toward tax compliance [22].
Significance level (P) and chi-squared (χ2) numbers indicate that the relationship is positive with a mid-sized magnitude. As Table 6 shows, 45.3% of the participants agreed with both statements. An interesting result arose about the relationship between “being a good citizen” and “contributing to national development.” In total, 6.5% of the participants agreed with being a good citizen, but disagreed with contributing to national development. Considering that participants were university students, it may be argued that even though the result covers a few people, the participants have awareness of the liability of the tax payer in terms of being a good citizen, but they do not completely grasp the economic effects of paying taxes and/or they do not think the collected taxes are used for the development.
A compliant tax payer gained this trait as they think paying taxes helps national development | Total | |||||
---|---|---|---|---|---|---|
Disagree | Somewhat Agree | Agree | ||||
Being a tax payer who shows the required compliance means being a good citizen | Disagree | Frequency | 16 | 9 | 7 | 32 |
% | 5.8% | 3.3% | 2.5% | 11.6% | ||
Somewhat Agree | Frequency | 12 | 25 | 10 | 47 | |
% | 4.3% | 9.1% | 3.6% | 17.0% | ||
Agree | Frequency | 18 | 54 | 125 | 197 | |
% | 6.5% | 19.6% | 45.3% | 71.4% | ||
Total | Frequency | 46 | 88 | 142 | 276 | |
% | 16.7% | 31.9% | 51.4% | 100.0% | ||
χ2 = 57.594 Level of significance (P) = 0.000 |
Tax compliance-tax consciousness relationship.
Source: Author’s identification.
In this stage, the hypotheses H3 and H5 will be assessed together, and the tax compliance and tax payer duties relationship will be observed. Complying with tax duties on time and in the way it must be done is closely related to efforts to create a social norm. Leder et al. stated that when there is a low level of tax compliance, strict policies to prevent tax evasion are not enough, but an effort to create a social norm is important [21]. Cummings et al. also stated that inspection bodies are effective on social norms about tax compliance, and these norms are dependent on the tax regime and the state’s willingness to satisfy citizens’ demands [23]. On the other hand, Feld and Larsen indicated that social norms and deterrence should be used simultaneously [24].
The hypothesis H3 denotes the relationship between tax compliance and making declarations on time, which is the first duty in tax responsibilities. The crossexamination here is making declarations on time and being aware of the importance of taxes in national development. Level of significance (P) and chi-squared (χ2) numbers indicate a positive relationship with mid-sized magnitude. As it may be seen in Table 7, 47.6% of participants believe in the existence of this relationship. Similar to the interesting result of the previous test, 8% of the participants agreed with the timely submission of declarations, while they did not think taxes have a relationship with the national development.
A compliant tax payer is sensitive about paying their tax debts | Total | |||||
---|---|---|---|---|---|---|
Disagree | Somewhat Agree | Agree | ||||
A compliant tax payer makes their declaration on time | Disagree | Frequency | 9 | 9 | 1 | 19 |
% | 3.1% | 3.1% | .3% | 6.6% | ||
Somewhat Agree | Frequency | 17 | 11 | 10 | 38 | |
% | 5.9% | 3.8% | 3.5% | 13.3% | ||
Agree | Frequency | 23 | 70 | 136 | 229 | |
% | 8.0% | 24.5% | 47.6% | 80.1% | ||
Total | Frequency | 49 | 90 | 147 | 286 | |
% | 17.1% | 31.5% | 51.4% | 100.0% | ||
χ2 = 50.782 Level of significance (P) = 0.000 |
Tax compliance-tax payer duties relationship 1.
Source. Author’s calculation
Lewis et al. observed that level of inspections affects tax compliance, and high inspection rates on tax evasion increased the voluntary tax compliance [25]. However, in Kastlunger et al. (2009), it was seen that inspections without increasing and/or strengthening tax compliance lead tax payers to invent new ways to evade taxes [26].
As the sensitivity to pay tax debts, as indicated in H5, is related to being a good citizen and the importance of taxes in national development, Tables 8 and 9 may be considered together. The levels of significance (P) and chi-squared (χ2) numbers in both tests show that there is a positive relationship, while the first relationship has a small magnitude and the second has a mid-sized magnitude. Even though 60.9% participants in the first test agree with both statements in Table 5, the distinctive finding is that 5.4% of the participants agree with sensitivity to pay debts, while disagreeing with being a good citizen relationship. This may be explained by that the students are aware of tax as a compulsory and required liability, rather than being aware of taxes associated with being a good citizen. Kogler et al. stated that issuing feedback to tax payers in a timely manner about tax inspections creates positive effects on tax compliance [27]. Likewise, Castro and Scartascini found that tax payers who received feedback about deterrents to tax crimes had 5% higher amounts of positive behaviors than those who did not receive feedbacks [28].
A compliant tax payer is sensitive about paying their tax debts | Total | |||||
---|---|---|---|---|---|---|
Disagree | Somewhat Agree | Agree | ||||
Being a tax payer who shows the required compliance means being a good citizen | Disagree | Frequency | 9 | 8 | 15 | 32 |
% | 3.3% | 2.9% | 5.4% | 11.6% | ||
Somewhat Agree | Frequency | 7 | 13 | 27 | 47 | |
% | 2.5% | 4.7% | 9.8% | 17.0% | ||
Agree | Frequency | 9 | 20 | 168 | 197 | |
% | 3.3% | 7.2% | 60.9% | 71.4% | ||
Total | Frequency | 25 | 41 | 210 | 276 | |
% | 9.1% | 14.9% | 76.1% | 100.0% | ||
χ2 = 37.254 Level of significance (P) = 0.000 |
Tax compliance-tax payer duties relationship 2.
Source. Author’s calculation
A compliant tax payer gained this trait as they think paying taxes helps national development | Total | |||||
---|---|---|---|---|---|---|
Disagree | Somewhat Agree | Agree | ||||
A compliant tax payer is sensitive about paying their tax debts | Disagree | Frequency | 14 | 7 | 5 | 26 |
% | 4.9% | 2.5% | 1.8% | 9.1% | ||
Somewhat Agree | Frequency | 16 | 15 | 13 | 44 | |
% | 5.6% | 5.3% | 4.6% | 15.4% | ||
Agree | Frequency | 19 | 68 | 128 | 215 | |
% | 6.7% | 23.9% | 44.9% | 75.4% | ||
Total | Frequency | 49 | 90 | 146 | 285 | |
% | 17.2% | 31.6% | 51.2% | 100.0% | ||
χ2 = 50.849 Level of significance (P) = 0.000 |
Tax compliance-tax payer duties relationship 3.
Source. Author’s calculation.
Similarly, 44.9% of the participants in the test as shown in Table 6 above agreed with both statements. However, even though 6.7% agreed with sensitivity to pay tax debts, they disagreed with the importance of paying taxes for national development or that it will increase tax compliance. The relationship has the same direction as it is stated in the previous test.
Hypotheses H6 and H7 were crossexamined, and the relationship between trusting the tax administration and tax compliance was investigated.
Cummings et al. (2009) found that administration’s quality of management has an observable effect on tax compliance [23]. Şafaklı and Kutlay (2014) indicated that the tax administration having strategic plans toward knowledge of tax payers of tax laws will increase tax consciousness and therefore tax compliance [29].
Table 10 shows the relationship of H6, which suggests that the tax administration provides correct and fast service and this increases tax compliance and the test of submitting declarations on time, which is the first duty in tax requirements. The level of significance (P) and chi-squared (χ2) numbers show that there is a positive relationship, while it has a small magnitude. In total, 34.8% of the participants agreed with both statements. However, even though 22.6% agreed with the importance of submitting declarations on time, they did not agree that the tax administration works fast and correctly. It may be that students who have not experienced the tax implementation are missing trust in the tax administration or they have not developed it yet.
A compliant tax payer gained this trait because the tax administration provided correct and fast service | Total | |||||
---|---|---|---|---|---|---|
Disagree | Somewhat Agree | Agree | ||||
A compliant tax payer makes their declaration on time | Disagree | Frequency | 10 | 4 | 5 | 19 |
% | 3.5% | 1.4% | 1.7% | 6.6% | ||
Somewhat Agree | Frequency | 15 | 19 | 4 | 38 | |
% | 5.2% | 6.6% | 1.4% | 13.2% | ||
Agree | Frequency | 65 | 65 | 100 | 230 | |
% | 22.6% | 22.6% | 34.8% | 80.1% | ||
Total | Frequency | 90 | 88 | 109 | 287 | |
% | 31.4% | 30.7% | 38.0% | 100.0% | ||
χ2 = 19.936 Level of significance (P) = 0.001 |
Tax compliance and trusting the tax administration relationship 1.
Source. Author’s calculation.
Kogler et al. reported that the highest tax compliance and the lowest tax evasion are experienced in countries where the authority is seen trusted and effective by citizens. They argued that the state should win the citizens’ trust with generally fair implementations and service-oriented behavior [20]. Verboon and Dijke stated the importance of the authorities’ fair treatment of citizens in increasing tax compliance, therefore increasing the effectiveness of their sanctions [30].
When the hypotheses H6 and H7 are considered together, as shown in Table 11, significance level (P) and chi-squared (χ2) numbers show a positive relationship with high magnitude. In total, 28.3% of the participants agreed with both statements. However, 15.7% of the participants disagreed with both statements. Both statements test the trust in the tax administration, and the number of people who chose to disagree is noteworthy. Leder et al. (2010) stated that if the tax administration shows transparency in disclosing final data about financial transition, it will be able to gain tax payers’ trust, which is extremely important for tax compliance [21]. Litina and Palivos argued that individuals (tax payers) who believe that the tax administration is honest will have very high probability to respond to sanctions positively [31].
A compliant tax payer gained this trait because the tax administration provided correct information about calculated tax payments | Total | |||||
---|---|---|---|---|---|---|
Disagree | Somewhat Agree | Agree | ||||
A compliant tax payer gained this trait because the tax administration provided correct and fast service | Disagree | Frequency | 45 | 29 | 16 | 90 |
% | 15.7% | 10.1% | 5.6% | 31.5% | ||
Somewhat Agree | Frequency | 14 | 45 | 29 | 88 | |
% | 4.9% | 15.7% | 10.1% | 30.8% | ||
Agree | Frequency | 9 | 18 | 81 | 108 | |
% | 3.1% | 6.3% | 28.3% | 37.8% | ||
Total | Frequency | 68 | 92 | 126 | 286 | |
% | 23.8% | 32.2% | 44.1% | 100.0% | ||
χ2 = 97.107 Level of significance (P) = 0.000 |
Tax compliance and trusting the tax administration relationship 2.
Source. Author’s calculation.
This study tests tax compliance in terms of university students, who have not yet completely experienced taxpaying implementations. The perception of tax compliance was tested on students who are expected to show high consciousness about taxes because of their qualifications and the departments they study in.
Findings of the study were listed below:
In terms of tax consciousness and tax compliance, it was seen that students agree that paying taxes completes the concept of being a good citizen.
On the contrary, Leder et al. in which mentioned that importance of information campaigns about taxes financing public goods and services increasing the compliance level, students do not agree with the importance of taxes in national development [21]. This means that convincing information about taxes should be made.
In terms of tax compliance and tax payer duties, students perceive the sensitivity submitting declarations on time and showing care in paying tax debts.
Feld and Larsen (2012) indicated that social norms and deterrence should be applied simultaneously and Lewis et al. (2009) observed that high inspection rates on tax evasion increase the voluntary tax compliance, and students realizing this as a civic duty tax obligation should be inspected and audited [24, 25]. Besides that, it should be noted that on the basis of the findings of the study, students see taxes as a compulsory requirement, rather than a way for being a “good citizen.”
The situation is complicated in the relationship of the tax administration and tax compliance.
Thoughts in Cummings et al. in which mentioned that administration’s quality affecting tax compliance, Kogler et al. in which reported that how trusted and effective tax authority could make possible an higher tax compliance level in many countries and Verboon and Dijke in which stated the importance of the authorities’ fair treatment of citizens in increasing tax compliance are similar [20, 23, 30]. On the contrary, with these workings, in this paper, students have negative perceptions on the tax administration being transparent, correct, and trustable. They think the success in tax compliance is caused by tax payers themselves, rather than by the tax administration.
On the contrary, Litina and Palivos argued that believing in the honesty of the tax administration makes possible that the sanctions are effective, and Djawadi and Fahr mentioned that how the transparency about public expenditures effects the tax compliance in a positive way; another finding in this stage is that the tax administration does not disclose the data on where taxes are spent according to the students [32].
The loop heat pipe is a variant of the ordinary heat pipe, and is a two-phase flow loop type heat pipe, which is a unidirectional heat conduction element similar to a diode. The working medium is mainly composed of a gas phase and a liquid phase in the steam pipe and the liquid pipe respectively. The form of the cycle, complete the transfer of heat. The design idea of the world’s first LHP system was proposed by scientists in 1971. Then Soviet scientists Maydanik and Gerasimov successfully developed the world’s first LHP system in 1972, after the Soviet Union and the United States. Research institutions are beginning to study loop heat pipes. The loop heat pipe is a high-efficiency loop heat transfer device with two-phase separation heat transfer. Since the structure of the loop heat pipe is more complicated than the ordinary heat pipe, it can adapt to more different working environments. The loop heat pipe has many advantages such as high heat transfer performance, long-distance heat transfer, small heat transfer temperature difference, and flexible installation. Therefore, in recent years, it has been widely used in aerospace heat dissipation, electronic products heat dissipation, anti-gravity ground heat transfer working environment and other fields.
\nLoop heat pipe was a new kind of two phase flow heat equipment, it used capillary suction force drive the working medium to complete the cycle of working medium inside the heat pipe flow and by using phase change of working medium two-phase flow to transfer heat [1]. Loop heat pipe had many advantages, such as large heat transmission, transmission distance, high heat transfer efficiency, antigravity features was strong, etc. [2]. Loop heat pipe was first applied in aerospace field, with the constant improvement of the loop heat pipe technology, it gradually be applied to every other civilian areas, especially in electronic cooling field [3].
\nThe most important characteristic of loop heat pipe was its resistance to gravity characteristic. Baumann [4] made a theoretical analysis first for the influence of loop heat pipe resistance to gravity, but fails to provide the experimental data to support. Zhang [5] studied the loop heat pipe in start-up and heat transfer performance under antigravity work condition, found the loop heat pipe started up under the condition of antigravity liquid reflux need to overcome additional pressure drop loss gravity bringing, and in outside loop resistance increased obviously. When vapor trough exist vapor, start-up time and temperature increase, loop heat pipe appeared complex compound startup phenomenon. Anti-gravity work increased the working temperature of the loop heat pipe system, reduced the automatic temperature control range, and leaded to vapor produced in the evaporator was more likely to overheat and overall system thermal resistance increased at the same time. In order to match the cooling parts, the evaporators were often made into plates [1]. Research team of Chinese Academy of Sciences institute of physics [6] carried out the establishment of the numerical model of the plate LHP evaporator and the heat transfer model, then they analyzed the heat transfer mechanism inside the evaporator. Mitomi [7] designed three kinds of length loop heat pipe with the length were 2, 5, 10 m. Loop heat pipe working medium was ethanol and capillary core was made by polytetrafluoroethylene porous material. They analyzed the normal working performance and carried out numerical simulation, and found that three pipes could work under the same starting power. South China University of Technology Developers [8] had studied the influence of heat leakage, the initiation characteristics and optimized the evaporator, reservoir and condenser. Beijing Aerospace University and Institute of Space Studied [9, 10] studied the whole loop heat pipe system, including the evaporator and capillary core structure optimization effect on the performance of the loop heat pipe, the influence of reservoir auxiliary cooling and the evaporator auxiliary heat on loop heat pipe performance, performance test of loop heat pipe in microgravity environment, the influence of quantity of quality filling on the performance of the loop heat pipe. In practical application, there could be multiple sources of heat and multiple sources. The number of evaporators, condensers and accumulators is not fixed. Jentung Ku [11] tests the multi-evaporator loop heat pipe with 50 W power in a vacuum environment, and the performance is stable.
\nCapillary core is an important component in loop heat pipe. Porosity, permeability, pore size distribution and capillary suction ability are the key parameters to reflect the performance of capillary core. In order to improve the ability of anti-gravity operation and long-distance operation of the loop heat pipe, it is necessary for the capillary core to have the characteristics of high permeability and high capillary suction ability. As the core device in the loop heat pipe, the capillary core transmits heat in the evaporator and provides enough capillary force to drive the working fluid cycle. At the same time, the vapor should be transferred to the vapor pipe in time to prevent the phenomenon of suction. Wolf indicates that LHP has gravity heat pipe and capillary pump heat pipe. It has the advantages of anti-gravity, long distance operation, no external power source, high stability, passive energy transportation and so on. Capillary core, as the core component of loop heat pipe, provides the necessary power for the forward operation of heat pipe. At present, the main types of capillary core are: grooved capillary core, metal mesh capillary core, ceramic capillary core and metal powder sintered capillary core. At present, most metal powder sintered capillary cores are made of copper and nickel. These capillary cores are widely used in loop heat pipes because of their good thermal properties and liquid compatibility.
\nOn the basis of previous studies, double pore capillaries were prepared by molten salt pore making technique. Compared with the addition of volatile pore-making agent, NaCl, with 99.5% purity and carbonyl nickel powder as capillary core material has the advantages of easy removal and uniform void distribution. The main parameters of capillary core, such as porosity, permeability, thermal conductivity, pore distribution and capillary suction ability, were measured according to the ratio of pore-forming agent and the pressure of cold pressing molding. The effect of the ratio of pore-making agent and the pressure of cold pressing on the properties of capillary core was obtained.
\nNickel powder was selected as raw material and NaCl as pore-making agent to prepare double pore capillary core. The main steps were powder ratio, cold pressing, sintering and cleaning. The specific steps were as follows: the preparation process was shown in Figure 1.
Powder ratio: In this paper, 2 μm nickel powder with 99.5% purity of NaCl was selected as the material to prepare the double aperture capillary core. Firstly, the NaCl particles were ground by ball mill (the positive and negative rotation time was 45 min, the interval time was 5 min, the total milling time was 6 h), and the total milling time was 6 h, the positive and negative rotation time was 45 min, the interval time was 5 min, and the total milling time was 6 h. The particle size of NaCl was mainly distributed in 200–400 mesh after ball milling. There were very few NaCl particles below 400 mesh. The NaCl powder with diameter of 48 μm (300–400 mesh) was screened by vibrating screen, and then the nickel powder and NaCl powder were mixed evenly by ball mill, and then put into drying. The box was dried.
Cold pressing molding. The powder was compacted by a press (the target pressure was 30, 40, 50, 60 KN, and the booster speed was 200 N/s).
The capillary core is sintered. The vacuum hot pressing sintering furnace selected in the experiment is ZT-40-20Y, combined with multiple sintering experiments and the temperature curve drawn in the previous literatures is shown in Figure 2.
Ultrasonic cleaning. After sintering, the NaCl particles in the capillary core need to be dissolved by ultrasonic cleaning to form a void and obtain a dual pore structure. The SEM of biporous wick is shown in Figure 3.
Flow chart of capillary core preparation.
Sintering temperature curve of nickel based capillary core.
50 kN cold pressure 20% NaCl mass fraction capillary core surface 1200 and 600 times scanning electron microscope.
Schematic diagram of gas resistance test table.
Porosity and permeability curves of different NaCl proportion.
Porosity and permeability curves of different cold pressing pressure.
Schematic diagram of capillary suction platform.
Physical model of capillary aspiration.
The suction curve of different wicks with different cold pressure.
Pore diameter distribution (a), (b), (c), and (d) are 10, 20, 30, and 40%, respectively.
The suction curve of different NaCl ratio.
Pore diameter distribution (a), (b), (c), and (d) are 30, 40, 50, and 60 kN, respectively.
Schematic diagram of capillary core structure.
Evaporator structure profile.
Structural diagram of evaporator and liquid reservoir.
Condenser structure (including two heat dissipation modes).
Loop heat pipe structure diagram.
Perfusion pipeline diagram.
Drawing of vacuum line.
Schematic diagram of vacuum perfusion pipeline.
Loop heat pipe vacuum perfusion test bench.
Location of thermocouple distribution.
5 W heating power loop heat pipe temperature curve.
8 W heating power loop heat pipe temperature curve (−5°C heat sink).
10 W heating power loop heat pipe temperature curve (−5°C heat sink).
Curve of temperature change with heating power.
Relationship between heating power and thermal resistance.
Temperature curve of heating power loop heat pipe (−10°C heat sink).
Temperature curve of heating power loop heat pipe (−15°C heat sink).
Porosity is the most direct index of porous structure of capillary core. The internal pores of capillary core are divided into connected pores, semi-connected pores, closed pores. The porosity of capillary core prepared by salt solution technique is mainly affected by the proportion and size of pore-forming agent.
\nArchimedes drainage method for porosity measurement, capillary core wet weight
According to the gas resistance test table shown in Figure 4, the experimental device uses compressed air as the air source, and the compressed air in the air compressor enters from the left side air compressor joint. In order to ensure the accuracy of the experiment and improve the service time of the platform, a filter and a steady pressure tank are connected after the air enters the pipeline. The gas flow through the experimental section is controlled by the mass flow-meter and the mass flow controller after the air passes through the unidirectional valve after the steady pressure. The capillary core is installed in the experiment section, and the pressure difference between the two sides of the capillary core is detected by pressure differential transmitter. At the end of the experiment, the gas was emptied into the air through the buffer tank.
\nThe flow in this experiment is the flow inside the tube, the maximum flow rate is 30 L/min, the length of stainless steel tube is 300 mm, the inner diameter of stainless steel pipe is 20 mm, and the Reynolds number is
\nThe calculated Reynolds number is 176.9. The experimental fluid flow is laminar flow, which accords with the applicable condition of Darcy formula. The length of stainless steel tube is 15 times the length of capillary core. The working fluid in the pipe can be developed fully and the inlet effect can be reduced effectively. The thickness of stainless steel tube wall 1 mm is much smaller than the diameter of capillary core. This experimental device can accurately measure the permeability of porous media K. A number of empty tube experiments were carried out before the experiment to eliminate the pressure drop caused by friction on the pipe wall.
\nAccording to the results of many experiments by French scientist Darcy, permeability K can be measured experimentally by formula (3).
\nAccording to the experimental part, Figure 5 shows the porous wicks porosity and permeability curves of different NaCl proportion.
\nIt can be seen from the figure that as the proportion of NaCl increases, the porosity and permeability increase gradually. The reasons of this phenomenon are:
As the proportion of NaCl increases, the volume of NaCl particles increases, and the total powder mass is equal during cold press forming, so the porosity increases as the proportion of NaCl increases.
During the cold pressing and sintering process, as the temperature rises, the gap between the nickel powder particles gradually decreases, and the gap between the nickel powder and the NaCl particles remains unchanged, so the proportion of the pore former increases, and the porous wick shrinks. The smaller the degree, the larger the porosity.
The particle size of NaCl particles is significantly larger than the particle size of nickel powder. After cleaning and desalting, the original NaCl particles occupy the pores, the flow resistance of the working medium in the pores decreases, and the permeability increases.
Figure 6 is porous wick porosity and permeability curve for 20% NaCl wt of different cold forming pressures. It can be seen from the figure that as the cold forming pressure increases, the porosity remains basically unchanged and the permeability gradually decreases. The reasons are:
As the cold forming pressure increases, the pore size between the nickel powder particles decreases, and the working fluid flow resistance becomes larger, so the permeability decreases.
The proportion of total NaCl in the porous wick is the same. The pores occupied by NaCl particles account for the main part of the biporous structure. The proportion of pores formed between the nickel powder particles during sintering is small, so the porosity remains basically unchanged.
The relationship between capillary force and permeability is complex, the relationship between capillary force and permeability is negative, and the increase of permeability is bound to decrease. The most direct method for observing capillary force is to observe the liquid level rising velocity and suction mass velocity in porous media. In this paper, the suction ability of capillary core is determined by observing the suction quality of capillary core.
\nThe principle of the experiment is that the bottom of the capillary core is in contact with the liquid surface by controlling the lifting platform to ensure that only the bottom of the capillary core exists the phenomenon of suction. The electronic analysis balance records the data and draws the suction curve.
\nAs shown in Figure 7, the size of the capillary suction specimen is 100 mm in length and 20 mm in diameter. The suction fluid is deionized water, the bottom of the capillary core is in rigid contact with the deionized water surface through the motion control platform, and the quality of the working fluid inside the beaker is measured by the electronic analytical balance (accuracy is 0.0001 g). The reduced mass is the quality of capillary suction. In order to control the rising velocity of liquid level accurately, the minimum rising speed of motion control platform is 0.01 mm/s. In order to ensure the measuring accuracy and the total quality of suction fluid to reduce the influence of the inside wall of beaker on the suction process, the diameter of beaker is 40 mm. The height is 160 mm. Figure 8 shows the physical model of capillary aspiration. The suction curve of different PFA agent ratio and different cold-forming pressure are shown in Figure 9 and Figure 10.
\nFigure 11 (the number below the pore-forming agent ratio is the total number of pores in the range of 0–30 μm in the electron micrograph) is 80 times magnification of the surface of the porous wicks, and the surface pore size distribution is measured by image pro plus software, 10, 20, 30, 40%, respectively. It can be seen that most of the pore diameters are distributed at 2–4 μm (about 30%). It can be seen that the total pore size decreases in the range of 2–30 μm with the increase of the proportion of pore-forming agent, The reason is that the proportion of the pore-forming agent is increased, and the number of pore-forming agent particles in the same section is increased, and the pores of each size are adhered to each other, resulting in a decrease of the number of total pores.
\nAs is shown in Figure 10, the capillary suction mass of the porous wick is proportional to the porosity, and the experimental results are in line with the derivation conclusion.
\nThe capillary suction speed of the porous wick is proportional to the porosity and the average pore diameter. It can be seen from the figure that the porous wicks (40% NaCl wt) have the fastest capillary suction speed and the porous wicks (10% NaCl wt) have the slowest capillary suction speed. Porous wicks (20% NaCl wt) with a small diameter of pores more than porous wicks (30% NaCl wt), so the former has a higher suction speed than the latter.
\nAs is shown in different cold forming pressures, suction speed porous wicks (30 kN) > porous wicks (40 kN) > porous wicks (50 kN) > porous wicks (60 kN), the suction quality is basically consistent but there are small differences, porous wick (30 kN) > porous wick (40 kN) > porous wick (50 kN) > porous wick (60 kN).
\nIt can be seen that as the cold pressure increases, the porosity and permeability both decrease. When the length of the porous wick is controlled, the internal structure of the porous wick pressed at 30 kN pressure is loose, the permeability is large, the suction resistance is small, so the suction speed is faster, the permeability decreases gradually with the increase of pressure, the suction speed decreases. As is shown in Figure 12 small pores which produce larger capillary force decrease with the increase of pressure, so the capillary suction speed is porous wicks (30 kN) > porous wicks (40 kN) > porous wicks (50 kN) > porous wicks (60 kN).
\nThe total suction mass of the porous wicks with different cold forming pressures is porous wicks (30 kN) > porous wicks (40 kN) > porous wicks (50 kN) > porous wicks (60 kN), which is consistent with the porosity test results.
\nThe structure size of capillary core has an important effect on the performance of loop heat pipe. For example, the length of capillary core has a significant effect on the heat transfer capacity of loop heat pipe. When the length of the capillary core is long, the synergy between the temperature and the flow field becomes longer with the increase of the length of the capillary core, but when the capillary core is too long, the flow resistance of the working fluid in the capillary core is further increased. It will result in less fluid flowing through the capillary core in unit time and affect the heat transfer rate of the loop heat pipe. The structural size of the capillary core was prepared with reference and in the second chapter of this paper. The final size of the capillary core was 100 mm in length and 20 mm in diameter. The 3D model of capillary wick is as shown in Figure 13.
\nThe capillary core is not only a simple cylindrical structure, its structure is relatively complex, the outside is a vapor trough for the passage of vapor, and the internal storage tank for liquid working fluid. The curved liquid surface of vapor liquid phase transition of the working fluid is in the capillary core, the liquid working fluid enters through the liquid channel, and the vaporization at the curved liquid level is derived from the vapor tank. The results show that the ratio of the depth to width of the capillary vapor channel is 1:1, and the effect is the best when the length of the groove is 75 mm, the depth and width are 2 mm, and the number of grooves is 6. In the third chapter, the capillary core suction ability of different inner diameter liquid storage channel is studied. The capillary core suction performance is the best when the inner diameter is 8 mm. The final structure of the evaporator and reservoir is shown in Figure 15.
\nEvaporator and liquid accumulator are the main components of loop heat pipe. Especially the evaporator, which contains capillary core, is the place where the liquid working fluid changes to the gas working medium in the loop heat pipe. However, the vapor generated in the capillary core must prevent its reverse flow into the liquid reservoir. In the evaporator, there is a liquid lead pipe in the capillary core, which is connected to the vapor pipeline, and the liquefied working fluid is directly introduced into the liquid channel inside the capillary core. The structure of the evaporator is shown in Figure 14 below. Structural diagram of evaporator and liquid reservoir is shown in Figure 15.
\nIn the design of loop heat pipe evaporator and liquid accumulator, the most important thing is to ensure the positive heat conduction of the loop heat pipe, and the most important thing is to do the sealing work well. The seal of evaporator and liquid accumulator means that there is a certain pressure bearing capacity in isolation from the outside environment, and more important is to prevent the diffusion (heat leakage) of the gas working fluid from the evaporator to the liquid accumulator. The heat transfer within the loop heat pipe is not strictly unidirectional, but the heat transfer in the loop heat pipe is not strictly unidirectional. Most of the external heat input in the capillary core makes the working fluid gasification to participate in the loop heat pipe circulation, only a part of the heat into the liquid reservoir in the form of heat conduction, this part of the heat called is a heat leak. Heat leakage will lead to excessive temperature and abnormal increase of pressure of the liquid accumulator, which will affect the normal operation of the working fluid in the loop heat pipe. The heat leakage is mainly transmitted through the heat conductivity of the capillary core and the outer wall of the loop heat pipe, which is difficult to avoid. However, the heat leakage should be considered in the preparation of the loop heat pipe. Limit the adverse effects of heat leakage to a lower range of effects. If vapor enters the tank, it will cause the temperature and pressure of the tank to rise, which will lead to the failure of the heat pipe operation. When the vapor is running in the opposite direction, the heat transfer efficiency of the loop heat pipe will be seriously affected, which will cause the gas accumulation in the liquid accumulator and the capillary seriously. The thin core leads to the failure of forward heat and mass transfer in the loop heat pipe.
\nIn order to prevent the reverse operation of vapor, an inner step stainless steel outer wall is designed for evaporator and liquid accumulator in order to reduce welding, and the capillary core is clamped in one direction, and a clasp structure is installed at the capillary core and step. There are three gaskets on the outer wall of the evaporator and liquid accumulator. Layer by layer protection reduces the reverse flow of heat vapor along the inner wall, improves the heat transfer energy of the return heat pipe, and simulates the failure of the heat pipe operation. Evaporator wall thickness as thin as possible to reduce thermal resistance to facilitate the capillary core to absorb external heat. At the vapor outlet, the capillary core is clamped by thread connection, and a plum flower gasket is installed between the bolt structure and the capillary core, and the vapor produced by the thermal reaction flows out of the pore between the pores of the plum flower gasket. This junction can be reused, just loosen the bolt structure to replace the capillary core. The specific size is obtained from the size of the capillary core. As shown in Figure 15.
\nIn the loop heat pipe system, the condenser is responsible for the rapid transfer of heat from the evaporator to the outside world. After heated vaporization of the working medium in the evaporator, the hot vapor enters the condenser through the gas pipeline, and the heat is exchanged with the outside in the condenser to dissipate heat towards the outside world, and the vapor moves towards the liquid storage device after the condenser becomes a liquid. Therefore, the condenser must have sufficient undercooling to ensure that the working fluid can be completely condensed into liquid. At present, the cooling methods of various equipment are water cooling or air cooling. It is found that the vapor in the evaporator is usually difficult to be condensed into liquid due to the lack of cooling power. So there are a lot of heat pipes in the loop. Adopt water cooling. In order to further improve the cooling temperature, alcohol is chosen as the cooling medium.
\nThe loop heat pipe condenser prepared in this paper is shown in Figure 16. The condenser adopts a cylindrical tube structure with an inlet and an outlet to circulate low temperature alcohol or cold water, and the cylinder pipe is a cooling pipe. Considering the overall size of the loop heat pipe, the length of the condenser is set to 200 mm. However, the heat transfer length of 200 mm is insufficient and the vapor in the condenser is cooled completely into a liquid. Faced with this situation, there are usually two solutions: one is to put fins on the outside of the pipe, the other is to make the pipe into a coil. After the experiment, it was found that the efficiency of the first scheme was also insufficient when the first scheme was running at high power. Therefore, the coiled tube alcohol cooling was used in the end. However, as the final cooling scheme, we should pay attention to the length of coil should not be too long, too long pipe length will lead to excessive resistance in operation of the working fluid, which will affect the forward operation of the loop heat pipe.
\nThe connection between evaporator and condenser in heat pipe is vapor pipeline and liquid pipeline. In order to reduce the flow resistance of the medium, the more smooth the inner, the better. In this paper, stainless steel tube is selected and the inner polishing is done. The vapor liquid phase change process is involved in the operation of the loop heat pipe, and the sealing property is very high. Therefore, stainless steel is used in all parts of the loop heat pipe, and the connection between each part is argon arc welding. All stainless steel components (including liquid accumulators and evaporators) should be cleaned according to the stainless steel cleaning method before final use to improve the performance of the loop heat pipe. The loop heat pipe also needs to be equipped with a new belt valve. The working fluid filling mouth of the door is filled and sealed with heat pipe working fluid. After welding the loop heat pipe, it is necessary to pick up the leakage of the system, inflate the system with air compressor from the filling port, and place the system in water. If there is no bubble, the system is sealed completely, and if there is air bubble, the leakage point of welding should be rewelded. In order to reduce the difficulty of welding and to facilitate the performance experiment in the future, the loop heat pipe is made into a rectangle, 1000 mm in length and 300 mm in width, in order to match the heat transfer test bed designed later.
\nThe structure and dimensions of the heat pipe are described in Figure 17 and Table 1.
\nLoop heat pipe component | \nDimension parameter(mm) | \n
---|---|
Evaporator (Dout/Din/L) | \n26/20/150 | \n
Reservoir (Dout/Din/L) | \n26/18/120 | \n
Capillary core (D/L) | \n20/100 | \n
Capillary vapor groove (L/W/H) | \n80/2/2 | \n
Capillary core liquid channel (Din/L) | \n8/80 | \n
Vapor line (Dout/Din/L) | \n6.35/3.89/1200 | \n
Liquid line (Dout/Din/L) | \n6.35/3.89/1200 | \n
Condenser pipeline (Dout/Din/L) | \n6.35/3.89/2000 | \n
Loop heat pipe appearance (L/W) | \n1000/300 | \n
Size diagram of loop heat pipe.
In addition to the capillary core properties, the internal working fluid perfusion of the loop heat pipe has the greatest influence on the performance of the loop heat pipe. There are two factors that influence the perfusion effect: one is the quality of perfusion, the other is the degree of vacuum during perfusion, that is, the purity of the injected working fluid. First of all, the heat pipe is filled with flux, when the charge is too small, it will cause the heat pipe to be burned out in the liquid storage device of the heat pipe evaporator, and the heat pipe will fail. When the charge is too much, there will be a lot of liquid working fluid in the condenser, which will cause excessive resistance along the path and hinder the forward operation of the heat pipe. It is inevitable to mix air and other non-condensable gases when pouring working fluid into the loop heat pipe. The research of Beihang [84DIAN85] finds Danghuan when there are non-condensable gases such as nitrogen in the heat pipe, it will lead to the difficulty of starting the loop heat pipe, the high temperature of the evaporator and the decrease of the heat transfer efficiency. It is also found that the non-condensable gas will greatly reduce the service life of the loop heat pipe. Therefore, it is necessary to maintain a vacuum environment during perfusion. We should pay attention to the leakage of the loop heat pipe and the leakage of the working fluid during the simulation of the perfusion according to the way mentioned in this paper.
\nLoop heat pipe perfusion is divided into two important steps: first, vacuum, and secondly, perfusion. Therefore, a loop heat pipe perfusion platform integrating vacuum pumping and perfusion is established in this paper. Based on dual functions, the pipeline must have two routes. The first is the perfusion pipeline, which is used to introduce liquid ammonia into the loop heat pipe. The perfusion line is shown in Figure 18 above.
\nThe pipeline is designed from top to bottom, the top is a liquid ammonia bottle, and the bottom is connected with a loop heat pipe. The loop heat pipe outlet is a pressure reducing valve to monitor the liquid ammonia outlet and the pressure in the pipeline. Then there are two condensing units to try to prevent liquid ammonia from liquefaction. Ensure the accuracy of subsequent flowmeter measurements and prevent too much gas in the pipeline from fluctuating the flow rate. The flowmeter is used to detect the amount of heat in the heat pipe. Continue after a one-way valve to prevent working fluid backflow. One-way valve is a flow valve. The pressure reducing valve can control the flow velocity of the working fluid in the pipeline to control the filling speed. The flow valve is followed by the valve and the loop heat pipe.
\nThe exhaust line also consists of two parts, one is the air in the perfusion line and the other is the air in the heat pipe of the loop, as shown in Figure 19. The design scheme of the main line of the heat pipe pumping vacuum perfusion test rig is shown in Figure 22. The valve which combines the pouring pipe and the vacuum pumping pipe to control the pipe passage condition is designed as shown in Figure 20.
\nThe designed pipe is placed vertically, the aluminum alloy frame is arranged, and the flowmeter display device is designed to monitor the quality of the working fluid that has been poured in the heat pipe. During perfusion, the heat pipe accumulator should be placed in a lower temperature environment than the perfusion tube condenser. This is because it is difficult for liquid ammonia to flow into a loop heat pipe simply because of the gravity effect, so that the temperature in the heat pipe is lowered so that the pressure inside the loop heat pipe remains relatively low all the time. The flow of liquid ammonia in the pipeline is promoted by the pressure of different positions in the pipeline. The vacuum pumping system designed in this paper uses Edward molecular pump to pump the vacuum in the pipeline. In the vacuum process, the pressure in the pipeline can be lowered by 6 × 10−2 Pa. The device diagram is shown in Figure 21.
\nIn this paper, the heat transfer test bench of loop heat pipe is built, including heating module, cooling module, temperature collecting module, etc. The performance of loop heat pipe is studied experimentally. The loop heat pipe test platform consists of three modules: heating module, cooling module and temperature collecting module. Heating module has two sets, one is controlled power heating, the other is constant temperature heating. The output power is controlled by puss power supply, and the loop heat pipe evaporator is heated by resistance wire. Constant temperature heating using cast copper heating block. There are grooves on the surface of cast copper heating block for heating loop heat pipe evaporator. The cast copper heating block is controlled by PID and the temperature is monitored by internal thermocouple. This heating method can only guarantee the outer wall temperature of the loop heat pipe evaporator without knowing the heating power of the loop heat pipe. According to the situation, these two heating methods should be used.
\nThe experimental platform needs a cooling module to condensate the loop heat pipe condenser. The condenser is connected to the DC20-20 type low temperature constant temperature tank, and the flow velocity of the constant temperature tank is 20 L/min. The lowest temperature can be −20°C, so this tank can be filled with alcohol as a cooling agent.
\nThe data acquisition module is used to collect the local temperature of the heat transfer experiment of the loop heat pipe, and the performance of the loop heat pipe is analyzed by the variation of each temperature. The data collector uses Fluke2638A to collect data, and Fluke2638A has three chucks, each of which has 20 channels, which can collect 60 temperature points at the same time. K-type Ω thermocouple is used to collect temperature transmission data to data collector. The thermocouple is made of TT-K-36 type Ω temperature measuring line, and MES thermocouple welding machine is used to weld the temperature measurement line. The temperature range of the thermocouple was −200–260°C, and the measurement error was ±0.5°C. In order to ensure the detection accuracy, each K thermocouple is connected to the data collector channel and the ice water is mixed to zero.
\nThe distribution of thermocouple is shown in Figure 22, (1) is the outlet temperature of liquid pipeline, (2) is the inlet temperature of the liquid reservoir, (3) is the inlet temperature of the evaporator, (4) is the temperature at the heating point, (5) is the inlet temperature of the vapor pipe, (6) is the intermediate temperature of the vapor pipe, (7) and (8) are the temperature at the inlet and outlet of the condenser, and (9) are the temperature in the middle of the liquid pipeline. In addition, the condenser inlet and outlet temperatures need to be measured.
\nThe startup of LHP can be divided into the following four processes: (1) after the evaporator is heated, the heat is transferred to the working fluid and vaporized. Because of the barrier of the capillary core sintering structure, the vapor can only enter into the vapor pipe through the vapor trough; (2) the vapor enters the condenser to cool through the vapor pipe, (3) after condensing into the liquid in the condenser, the liquid working fluid is pumped back into the liquid storage room because of the capillary force of the capillary core; (4) the working fluid of the reflux flows back into the evaporator through the permeability of the capillary core. In this paper, it is found that the minimum starting power of the loop heat pipe is 5 W.
\nFigure 23 shows the starting heat transfer characteristics of the loop heat pipe at 5 W startup. It can be seen from the diagram that the loop heat pipe operates steadily after a period of time (3500 s), and the temperature of each part remains constant. In the early stage of the experiment, the evaporator and vapor line begin to rise steadily, the internal working fluid of the loop heat pipe evaporator absorbs the external heat, the internal working fluid reaches the saturation temperature and begins to vaporize, and the vapor enters the vapor pipeline, which leads the internal temperature of the pipeline to increase. Vapor passes through the vapor line and enters the condenser, so the inlet temperature of the condenser jumps. Through the condenser enough gas refrigerants are condensed into the liquid line, so the liquid tube is filled with liquid. The line temperature is low. After that, the liquid working fluid is reflowing back to the liquid accumulator and evaporator under the action of the capillary core to complete the forward circulation of the loop heat pipe. At the initial stage of starting the loop heat pipe, there was a small fluctuation in the temperature at the evaporator. The temperature first decreased and then increased. This was caused by the liquid working fluid began to condensate and reflux, and it also marked the formal start of the loop heat pipe. The starting time of the loop heat pipe is 1000 s.
\nThe threshold value for the initial start-up of the loop heat pipe is 5 W. When the heating power of the loop heat pipe evaporator is increased, the temperature of each part of the loop heat pipe is different. In order to further understand the heat transfer performance of the loop heat pipe prepared in this paper, the heating power of the loop evaporator is gradually increased, and the relationship between the temperature of each part of the loop heat pipe and the heating power is discussed. In this paper, the heat transfer experiment of loop heat pipe with different heating power has been carried out from 5 to 1 W interval. The experimental scheme is carried out according to the above experimental scheme. The external cold source temperature is −5°C when the heat transfer is heated by the transverse power heating method. The temperature curve of heating power 8W and 10W with −5°C heat sink is as shown in Figures 24 and 25.
\nWith the increase of evaporator power, the loop heat pipe can continue to operate normally, and its operation law is similar to that of each part of the heat pipe heated at 5 W. The temperature inside the evaporator and vapor line rises first and then remains stable. The inlet temperature of the condenser is also stable after rising sharply at the beginning, and the temperature difference between the inlet of the condenser and the inlet of the condenser has been maintained, indicating that the loop heat pipe has been in a positive operating state. The experimental results show that the liquid line temperature of the loop heat pipe is approximately the same under different heating power, which indicates that the working fluid can be condensed completely into liquid through the condenser when the loop heat pipe is running, and is lower than the saturation temperature under the current pressure. The temperature curve and thermal resistance of different heating power are shown in Figures 26 and 27.
\nThe temperature variation of loop heat pipe is different with different heating power. As is shown that the higher the heating power, the higher the temperature of the evaporator, the higher the internal pressure, and the faster the temperature of the evaporator increases with the increase of heating power, so the heating power of the loop heat pipe should not be too large. Prevent the internal pressure from exceeding the pressure limit of the loop heat pipe. With the increase of the evaporator temperature, the temperature of the vapor pipeline entering the gaseous medium also becomes higher, which leads to the continuous increase of the vapor pipeline temperature to the inlet temperature of the condenser. In this paper, the low temperature alcohol is used as the external heat sink in the experiment, and the loop heat pipe is condensed. The working fluid in the condenser can be condensed completely, so even though the external heating conditions are different, the outlet temperature of the condenser remains basically unchanged at about 0°C. The experimental results show that the temperature of the loop heat pipe liquid accumulator increases rapidly with the increase of heating power, which is due to the fact that the evaporator tube wall and the liquid storage tube wall are made from the same stainless steel jacket. The heat from the outer wall of the evaporator is transferred to the outer wall of the liquid storage device by heat conduction, which results in the increase of the temperature of the external wall of the liquid storage device. The increase of external wall temperature may lead to excessive internal temperature and high pressure, which may hinder the forward operation of the loop heat pipe. So in subsequent studies, How to reduce the heat leakage from evaporator to liquid accumulator will be an important and difficult problem.
\nThe heat transfer efficiency of loop heat pipe is usually measured by its overall thermal resistance. The total thermal resistance (
The experimental results show that the thermal resistance of the loop heat pipe becomes smaller and the overall heat transfer performance of the loop heat pipe becomes more and more excellent when the heating power is increasing, that is to say, the thermal conductivity of the loop heat pipe is getting better and better. However, the heat resistance of the loop heat pipe has a minimum value. The heat transfer efficiency of the loop heat pipe is the highest when the loop heat pipe works under this condition, but at the same time the temperature inside the evaporator is also very high, and the heat transfer limit of the loop heat pipe reaches its heat transfer limit.
\nThe experimental results show that when the external condensation temperature is insufficient, the heat absorbed by the loop heat pipe evaporator cannot be transferred out, which leads to the high pressure inside the loop heat pipe. The capillary force provided by the capillary core cannot overcome the resistance in the loop heat pipe normally and the suction of the working fluid leads to the failure of the loop heat pipe operation. However, when the condenser and the external heat exchange is sufficient, the evaporator can transfer the heat completely, and the different undercooling degree has no great influence on the steady state of the loop heat pipe. As is shown in curves of heat sink temperature of −10°C at −15°C under heating power of 10 W of the loop heat pipe. It can be seen that the temperature distribution of loop heat pipe evaporator, liquid accumulator, vapor line and liquid line are basically the same at different external heat sink temperatures. The temperature at the outlet of the condenser is affected by the external heat sink of the condenser. The lower the external heat sink temperature, the lower the temperature of the condenser, and the difference of the temperature at the outlet of the condenser is exactly the difference of the external heat sink. The external heat sink temperature also affects the time required for the loop heat pipe to reach stable operation. It can be seen from the diagram that the lower the external heat sink temperature, the longer the loop heat pipe operation will be stable. The temperature curve of different heat sink (–10°C and –15°C) are shown in Figures 28 and 29.
\n\n
With the increase of mass of NaCl, the suction speed and total suction mass increase, it can be concluded that the pore-forming agent (NaCl) will significantly improve capillary core performance, which is crucial for the loop heat pipe.
In select range, the cold forming pressure has little influence on the performance of the capillary cores.
The loop heat pipe which uses the novel capillary cores can start up successfully on 5 W. Besides the heat sink will influence the time that the LHP operate stably. The lower the temperature of the external heat sink, the longer the loop heat pipe will run stably.
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\n'}]},successStories:{items:[]},authorsAndEditors:{filterParams:{},profiles:[{id:"396",title:"Dr.",name:"Vedran",middleName:null,surname:"Kordic",slug:"vedran-kordic",fullName:"Vedran Kordic",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/396/images/7281_n.png",biography:"After obtaining his Master's degree in Mechanical Engineering he continued his education at the Vienna University of Technology where he obtained his PhD degree in 2004. He worked as a researcher at the Automation and Control Institute, Faculty of Electrical Engineering, Vienna University of Technology until 2008. His studies in robotics lead him not only to a PhD degree but also inspired him to co-found and build the International Journal of Advanced Robotic Systems - world's first Open Access journal in the field of robotics.",institutionString:null,institution:{name:"TU Wien",country:{name:"Austria"}}},{id:"441",title:"Ph.D.",name:"Jaekyu",middleName:null,surname:"Park",slug:"jaekyu-park",fullName:"Jaekyu Park",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/441/images/1881_n.jpg",biography:null,institutionString:null,institution:{name:"LG Corporation (South Korea)",country:{name:"Korea, South"}}},{id:"465",title:"Dr",name:"Christian",middleName:null,surname:"Martens",slug:"christian-martens",fullName:"Christian Martens",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:null},{id:"479",title:"Dr.",name:"Valentina",middleName:null,surname:"Colla",slug:"valentina-colla",fullName:"Valentina Colla",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/479/images/358_n.jpg",biography:null,institutionString:null,institution:{name:"Sant'Anna School of Advanced Studies",country:{name:"Italy"}}},{id:"494",title:"PhD",name:"Loris",middleName:null,surname:"Nanni",slug:"loris-nanni",fullName:"Loris Nanni",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/494/images/system/494.jpg",biography:"Loris Nanni received his Master Degree cum laude on June-2002 from the University of Bologna, and the April 26th 2006 he received his Ph.D. in Computer Engineering at DEIS, University of Bologna. On September, 29th 2006 he has won a post PhD fellowship from the university of Bologna (from October 2006 to October 2008), at the competitive examination he was ranked first in the industrial engineering area. He extensively served as referee for several international journals. He is author/coauthor of more than 100 research papers. He has been involved in some projects supported by MURST and European Community. His research interests include pattern recognition, bioinformatics, and biometric systems (fingerprint classification and recognition, signature verification, face recognition).",institutionString:null,institution:null},{id:"496",title:"Dr.",name:"Carlos",middleName:null,surname:"Leon",slug:"carlos-leon",fullName:"Carlos Leon",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"University of Seville",country:{name:"Spain"}}},{id:"512",title:"Dr.",name:"Dayang",middleName:null,surname:"Jawawi",slug:"dayang-jawawi",fullName:"Dayang Jawawi",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"University of Technology Malaysia",country:{name:"Malaysia"}}},{id:"528",title:"Dr.",name:"Kresimir",middleName:null,surname:"Delac",slug:"kresimir-delac",fullName:"Kresimir Delac",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/528/images/system/528.jpg",biography:"K. Delac received his B.Sc.E.E. degree in 2003 and is currentlypursuing a Ph.D. degree at the University of Zagreb, Faculty of Electrical Engineering andComputing. His current research interests are digital image analysis, pattern recognition andbiometrics.",institutionString:null,institution:{name:"University of Zagreb",country:{name:"Croatia"}}},{id:"557",title:"Dr.",name:"Andon",middleName:"Venelinov",surname:"Topalov",slug:"andon-topalov",fullName:"Andon Topalov",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/557/images/1927_n.jpg",biography:"Dr. Andon V. Topalov received the MSc degree in Control Engineering from the Faculty of Information Systems, Technologies, and Automation at Moscow State University of Civil Engineering (MGGU) in 1979. He then received his PhD degree in Control Engineering from the Department of Automation and Remote Control at Moscow State Mining University (MGSU), Moscow, in 1984. From 1985 to 1986, he was a Research Fellow in the Research Institute for Electronic Equipment, ZZU AD, Plovdiv, Bulgaria. In 1986, he joined the Department of Control Systems, Technical University of Sofia at the Plovdiv campus, where he is presently a Full Professor. He has held long-term visiting Professor/Scholar positions at various institutions in South Korea, Turkey, Mexico, Greece, Belgium, UK, and Germany. And he has coauthored one book and authored or coauthored more than 80 research papers in conference proceedings and journals. His current research interests are in the fields of intelligent control and robotics.",institutionString:null,institution:{name:"Technical University of Sofia",country:{name:"Bulgaria"}}},{id:"585",title:"Prof.",name:"Munir",middleName:null,surname:"Merdan",slug:"munir-merdan",fullName:"Munir Merdan",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/585/images/system/585.jpg",biography:"Munir Merdan received the M.Sc. degree in mechanical engineering from the Technical University of Sarajevo, Bosnia and Herzegovina, in 2001, and the Ph.D. degree in electrical engineering from the Vienna University of Technology, Vienna, Austria, in 2009.Since 2005, he has been at the Automation and Control Institute, Vienna University of Technology, where he is currently a Senior Researcher. His research interests include the application of agent technology for achieving agile control in the manufacturing environment.",institutionString:null,institution:null},{id:"605",title:"Prof",name:"Dil",middleName:null,surname:"Hussain",slug:"dil-hussain",fullName:"Dil Hussain",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/605/images/system/605.jpg",biography:"Dr. Dil Muhammad Akbar Hussain is a professor of Electronics Engineering & Computer Science at the Department of Energy Technology, Aalborg University Denmark. Professor Akbar has a Master degree in Digital Electronics from Govt. College University, Lahore Pakistan and a P-hD degree in Control Engineering from the School of Engineering and Applied Sciences, University of Sussex United Kingdom. Aalborg University has Two Satellite Campuses, one in Copenhagen (Aalborg University Copenhagen) and the other in Esbjerg (Aalborg University Esbjerg).\n· He is a member of prestigious IEEE (Institute of Electrical and Electronics Engineers), and IAENG (International Association of Engineers) organizations. \n· He is the chief Editor of the Journal of Software Engineering.\n· He is the member of the Editorial Board of International Journal of Computer Science and Software Technology (IJCSST) and International Journal of Computer Engineering and Information Technology. \n· He is also the Editor of Communication in Computer and Information Science CCIS-20 by Springer.\n· Reviewer For Many Conferences\nHe is the lead person in making collaboration agreements between Aalborg University and many universities of Pakistan, for which the MOU’s (Memorandum of Understanding) have been signed.\nProfessor Akbar is working in Academia since 1990, he started his career as a Lab demonstrator/TA at the University of Sussex. After finishing his P. hD degree in 1992, he served in the Industry as a Scientific Officer and continued his academic career as a visiting scholar for a number of educational institutions. In 1996 he joined National University of Science & Technology Pakistan (NUST) as an Associate Professor; NUST is one of the top few universities in Pakistan. In 1999 he joined an International Company Lineo Inc, Canada as Manager Compiler Group, where he headed the group for developing Compiler Tool Chain and Porting of Operating Systems for the BLACKfin processor. The processor development was a joint venture by Intel and Analog Devices. In 2002 Lineo Inc., was taken over by another company, so he joined Aalborg University Denmark as an Assistant Professor.\nProfessor Akbar has truly a multi-disciplined career and he continued his legacy and making progress in many areas of his interests both in teaching and research. He has contributed in stochastic estimation of control area especially, in the Multiple Target Tracking and Interactive Multiple Model (IMM) research, Ball & Beam Control Problem, Robotics, Levitation Control. He has contributed in developing Algorithms for Fingerprint Matching, Computer Vision and Face Recognition. He has been supervising Pattern Recognition, Formal Languages and Distributed Processing projects for several years. He has reviewed many books on Management, Computer Science. Currently, he is an active and permanent reviewer for many international conferences and symposia and the program committee member for many international conferences.\nIn teaching he has taught the core computer science subjects like, Digital Design, Real Time Embedded System Programming, Operating Systems, Software Engineering, Data Structures, Databases, Compiler Construction. 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It has been argued that platforms provide reef-like habitat that increases the growth and survival rates of fishes by increasing prey availability and affording shelter for protection from predators, provide additional spawning substrate, and by acting as a visual attractant for organisms not otherwise dependent upon hard bottom. Platforms differ from most natural habitats, and from traditional artificial reefs, in that their vertical profile extends upward through the water column into the photic zone and the sea surface. Increased habitat quality on, or immediately around, oil and gas platforms are thought to be derived from increased in situ food production associated with encrustation by fouling organisms. In this chapter, we address the issue of how to evaluate the role of artificial reefs by first establishing levels of evaluation for individual fish species found on oil and gas platforms in the GOM. The levels of evaluation relate to the amount and adequacy of the available information, which was populated with an extensive literature and data search. Three levels of assessment are established, analogous to the levels of analysis established National Oceanographic and Atmospheric Administration (NOAA) Fisheries for identification of Essential Fish Habitat. More than 1300 documents, including reports, stock assessments, other gray literature, and papers published in the primary literature, were used to complete this chapter. When available, published literature was the preferred source of information.",book:{id:"5210",slug:"fisheries-and-aquaculture-in-the-modern-world",title:"Fisheries and Aquaculture in the Modern World",fullTitle:"Fisheries and Aquaculture in the Modern World"},signatures:"James H. Cowan and Kenneth A. Rose",authors:[{id:"139993",title:"Dr.",name:"James",middleName:"Howard",surname:"Cowan, Jr.",slug:"james-cowan-jr.",fullName:"James Cowan, Jr."}]},{id:"50363",doi:"10.5772/62876",title:"The Brown Seaweeds Fishery in Chile",slug:"the-brown-seaweeds-fishery-in-chile",totalDownloads:1731,totalCrossrefCites:4,totalDimensionsCites:10,abstract:"Chilean fishery of brown algae includes species belonging to the genus Lessonia, Durvillaea, and Macrocystis, which can be found along the coast, ranging latitudes from 18° to 55°S. The exploitation of these seaweeds is done mainly in the Northern coast because the environmental conditions of this region decrease initial production costs. Brown algae are exploited from natural populations and exported to international markets as row material, source of alginates, widely utilized in diverse manufacturing processes and industries. International demand for Chilean kelps has produced sustained increase in harvest during the last decade, reaching more than 390,000 dry tons/year. This chapter approaches the most relevant aspects of the brown seaweed fishery in Chile which covers a wide range of the Southeast Pacific coast, considering the number of commercial species, its abundance and distribution, knowledge achieved on their ecology and biology regarding management, and conservation of these resources, and finally, provides tools for stakeholders and policy makers directed to sustainable management of natural kelp beds occurring in the cold temperate seas.",book:{id:"5210",slug:"fisheries-and-aquaculture-in-the-modern-world",title:"Fisheries and Aquaculture in the Modern World",fullTitle:"Fisheries and Aquaculture in the Modern World"},signatures:"Julio A. Vásquez",authors:[{id:"180745",title:"Dr.",name:"Julio",middleName:null,surname:"Vásquez",slug:"julio-vasquez",fullName:"Julio Vásquez"}]},{id:"55984",doi:"10.5772/intechopen.69471",title:"Deep-Water Sharks, Rays, and Chimaeras of Brazil",slug:"deep-water-sharks-rays-and-chimaeras-of-brazil",totalDownloads:1594,totalCrossrefCites:2,totalDimensionsCites:9,abstract:"The deep-water fishery in Brazil is currently in expansion due to depletion of most neritic economic species. This increasing deep-water effort brings concern on the bycatch impact, its specific composition, the need for capture’s evaluation and development of bycatch reduction devices. The impact is particularly aggressive on deep-water elasmobranchs, which have an extreme ecological k-strategy due to their reproductive constraints (lower fecundity and late first maturity age). Scientific deep-water surveys and intensive research programs (REVIZEE) along the past decade indicate that Brazilian elasmobranch diversity is higher than previously imagined. However, the deep-water fishery threatens this poorly known community of sharks and rays on the Brazilian continental slope as they become bycatch of a fast-growing and uncontrolled fishery. The recent study case of the monkfish (Lophius gastrophysus) fishery dynamics, well presented and discussed by the Brazilian scientific community, provided evidence of the need of bycatch-specific monitoring programs and fast-response fishery regulations. The present work discusses the Brazilian deep-water elasmobranch bycatch problem under the light of its biological diversity and completely unknown population status. Suggestions and management considerations are presented in order to coordinate and manage the establishment and growth of this deep-water fishery in Brazil.",book:{id:"5895",slug:"chondrichthyes-multidisciplinary-approach",title:"Chondrichthyes",fullTitle:"Chondrichthyes - Multidisciplinary Approach"},signatures:"Getulio Rincon, Rodrigo Cordeiro Mazzoleni, Ana Rita Onodera\nPalmeira and Rosangela Lessa",authors:[{id:"205621",title:"Dr.",name:"Getulio",middleName:null,surname:"Rincon",slug:"getulio-rincon",fullName:"Getulio Rincon"},{id:"206465",title:"MSc.",name:"Rodrigo",middleName:null,surname:"Mazzoleni",slug:"rodrigo-mazzoleni",fullName:"Rodrigo Mazzoleni"},{id:"206466",title:"MSc.",name:"Ana Rita",middleName:null,surname:"Palmeira",slug:"ana-rita-palmeira",fullName:"Ana Rita Palmeira"},{id:"206467",title:"Dr.",name:"Rosangela",middleName:null,surname:"Lessa",slug:"rosangela-lessa",fullName:"Rosangela Lessa"}]},{id:"56228",doi:"10.5772/intechopen.70028",title:"A Review of the Mitogenomic Phylogeny of the Chondrichthyes",slug:"a-review-of-the-mitogenomic-phylogeny-of-the-chondrichthyes",totalDownloads:1468,totalCrossrefCites:6,totalDimensionsCites:9,abstract:"The phylogenetic analysis of the Chondrichthyes has been the subject of intense debate over the past two decades. The principal relationships within the group based on the analysis of morphological traits are inconsistent with the available molecular topologies, and the phylogeny of these animals is highly controversial, at all levels, ranging from superorders to families and even the genera within families. With the recent development of new generation sequencing (NGS), many phylogenies are now being inferred based on the complete genome of the species. In 2015 and 2016 alone, around 21 new elasmobranch genomes were made available in GenBank. In this context, the principal objective of the present study was to infer the phylogeny of the sharks and rays based on the complete mitochondrial genomes available in the literature. A total of 73 mitogenomes of chondrichthyan species were analyzed. The phylogenetic trees generated rejected the “Hypnosqualea” hypothesis and confirmed the monophyly of the Neoselachii and Batoidea as sister groups of the sharks. These mitogenomic analyses provided ampler and more complete insights into the relationships between the sharks and rays, in particular, the topologies obtained by the analyses revealed a number of incongruities in certain groups of sharks and rays, and the interrelationships between them.",book:{id:"5895",slug:"chondrichthyes-multidisciplinary-approach",title:"Chondrichthyes",fullTitle:"Chondrichthyes - Multidisciplinary Approach"},signatures:"Divino Bruno da Cunha, Luis Fernando da Silva Rodrigues‐Filho and\nJoão Bráullio de Luna Sales",authors:[{id:"104512",title:"Dr.",name:"Luis Fernando",middleName:null,surname:"Rodrigues-Filho",slug:"luis-fernando-rodrigues-filho",fullName:"Luis Fernando Rodrigues-Filho"},{id:"205219",title:"Dr.",name:"Divino Bruno",middleName:null,surname:"Da Cunha",slug:"divino-bruno-da-cunha",fullName:"Divino Bruno Da Cunha"},{id:"205690",title:"Dr.",name:"João Bráullio De",middleName:null,surname:"Luna Sales",slug:"joao-braullio-de-luna-sales",fullName:"João Bráullio De Luna Sales"}]},{id:"52331",doi:"10.5772/64252",title:"Setting Up Traceability Tools for the Indonesian Blue Swimming Crab Fishery: A Case Study in Southeast Sulawesi",slug:"setting-up-traceability-tools-for-the-indonesian-blue-swimming-crab-fishery-a-case-study-in-southeas",totalDownloads:1675,totalCrossrefCites:2,totalDimensionsCites:5,abstract:"The Indonesian blue swimming crab fishery developed rapidly during the 1990s to become an important source of income for coastal communities. The blue swimming crab (BSC) in 2015 is the third highest export commodity in Indonesia, primarily to USA markets. Southeast (SE) Sulawesi is a relatively minor area for blue swimming crab production (approximately 1200–2000 mt per annum), in which only a subset of Asosiasi Pengelolaan Rajungan Indonesia (APRI) members are active, and it may be a conducive region in which to conduct a pilot activity to form a fisheries management structure that demonstrates the benefits that can be achieved via collaboration. The control document (CD) is a traceability and documentation process to be implemented by all of the segments of the supply chain (collectors/cooking stations, miniplants, and processors) in order to promote compliance to new Ministry and Marine Affair (MMAF) regulations and generate the records and documents of the supply chain application and verification of the new regulations. The self-recorded logbook by the fishermen and miniplant, as the point in the supply chain, could help with a meaningful and long-term solution to the fishery management in Southeast Sulawesi. This is the first trial of CD in Indonesia and could be a good model for BSC fishery in other region in Indonesia.",book:{id:"5210",slug:"fisheries-and-aquaculture-in-the-modern-world",title:"Fisheries and Aquaculture in the Modern World",fullTitle:"Fisheries and Aquaculture in the Modern World"},signatures:"Hawis Madduppa, Zairion, Siti Nuraini, Kuncoro Nugroho and\nBambang Arif Nugraha",authors:[{id:"180161",title:"Dr.",name:"Hawis",middleName:null,surname:"Madduppa",slug:"hawis-madduppa",fullName:"Hawis Madduppa"},{id:"185944",title:"Dr.",name:"Zairion",middleName:null,surname:"Zairion",slug:"zairion-zairion",fullName:"Zairion Zairion"},{id:"185945",title:"Mrs.",name:"Siti",middleName:null,surname:"Nuraini",slug:"siti-nuraini",fullName:"Siti Nuraini"},{id:"185946",title:"Mr.",name:"Bambang Arif",middleName:null,surname:"Nugraha",slug:"bambang-arif-nugraha",fullName:"Bambang Arif Nugraha"},{id:"185947",title:"Mr.",name:"Kuncoro Catur",middleName:null,surname:"Nugroho",slug:"kuncoro-catur-nugroho",fullName:"Kuncoro Catur Nugroho"}]}],mostDownloadedChaptersLast30Days:[{id:"50289",title:"Effect of Special Fish Feed Prepared Using Food Industrial Waste on Labeo rohita",slug:"effect-of-special-fish-feed-prepared-using-food-industrial-waste-on-labeo-rohita",totalDownloads:2276,totalCrossrefCites:0,totalDimensionsCites:0,abstract:"All food processing industries generate wastes of varying nature in significant quantities. Managing these wastes so as to minimize the impact on the environment is the prime concern. The concept of waste has undergone much change in recent times, with the focus being on utilizing the waste materials as inputs for generation of new or reusable products. Vegetable and fruit wastes are generated in significant quantities and are easily available at minimal charge. The comparative utilization of these wastes as a dietary ingredient was assessed employing the Labeo rohita fingerlings as the test species. The study was conducted over a period of 60 days. Orange peels and potato peels are characterized, and then, formulation of orange peel feed (OPF) and potato peel feed (PPF) was carried out. Market common fish feed (CFF) was taken as a control. The three test diets were designated as CFF, OPF and PPF. Feeding was done once daily. The water quality parameters such as dissolved oxygen, water temperature pH, total alkalinity, total hardness; calcium hardness and magnesium hardness as well as growth response were monitored at fortnightly intervals. The quality of water was maintained by periodic partial replenishment over the period of study. On termination of the trial, higher growth response was recorded in the PPF treatment. The initial and final weight and length of fishes was recorded. The results shows significant growth in PPF and OPF showed brighter body scales than other two feed. Fishes were very healthy and normal throughout the study period indicating no adverse effect on their health. No infection whatsoever was noted during 60 days of experimental period.",book:{id:"5210",slug:"fisheries-and-aquaculture-in-the-modern-world",title:"Fisheries and Aquaculture in the Modern World",fullTitle:"Fisheries and Aquaculture in the Modern World"},signatures:"Sanyogita R. Verma and Shanta Satyanarayan",authors:[{id:"183699",title:"Dr.",name:"Verma",middleName:"Rajroop",surname:"Sanyogita",slug:"verma-sanyogita",fullName:"Verma Sanyogita"},{id:"185353",title:"Dr.",name:"Shanta",middleName:null,surname:"Satyanarayan",slug:"shanta-satyanarayan",fullName:"Shanta Satyanarayan"}]},{id:"51124",title:"Fishery Status and Taxonomy of the Carangids (Pisces) in the Northern Arabian Sea Coast of Pakistan",slug:"fishery-status-and-taxonomy-of-the-carangids-pisces-in-the-northern-arabian-sea-coast-of-pakistan",totalDownloads:1950,totalCrossrefCites:1,totalDimensionsCites:1,abstract:"The objectives of this study were i) to evaluate number of existing members of the family Carangidae in the area ii) to establish a distinguishable and lucid key based on the taxonomic characteristics, meristic count and otolith description. In this study, thirty-six species were collected from the main fish landing facilities between 2012~2015. Fish body colour, taxonomic characteristics, fin rays and otolith shape description were used to identify each species. Otolith description comprises of shape of ostium, sulcus and margins of anterior and posterior surface along with distinct definite shape possess by each species make it easier for identification.",book:{id:"5210",slug:"fisheries-and-aquaculture-in-the-modern-world",title:"Fisheries and Aquaculture in the Modern World",fullTitle:"Fisheries and Aquaculture in the Modern World"},signatures:"Nazia Qamar, Sher Khan Panhwar and Ghazala Siddiqui",authors:[{id:"182414",title:"Dr.",name:"Sher Khan",middleName:null,surname:"Panhwar",slug:"sher-khan-panhwar",fullName:"Sher Khan Panhwar"},{id:"184264",title:"Dr.",name:"Nazia",middleName:null,surname:"Qamar",slug:"nazia-qamar",fullName:"Nazia Qamar"},{id:"184265",title:"Prof.",name:"Ghazala",middleName:null,surname:"Siddiqui",slug:"ghazala-siddiqui",fullName:"Ghazala Siddiqui"}]},{id:"50583",title:"Trawl Selectivity in the Barents Sea Demersal Fishery",slug:"trawl-selectivity-in-the-barents-sea-demersal-fishery",totalDownloads:1693,totalCrossrefCites:1,totalDimensionsCites:1,abstract:"This chapter provides a general overview of the Barents Sea demersal trawl fishery. First, it reviews historical catch levels and current biomass status of four commercially important demersal species (cod, haddock, Greenland halibut, and redfish) and includes an overview of their management plan that has been carried out by the Joint Norwegian–Russian commission. Then, it presents the evolution of the technical regulations for improving size selectivity in this fishery and describes current challenges in gear selectivity. Later, this chapter describes the concept of size selectivity, introduces the selective parameters that define a selection curve, and progressively introduces different parametric models that describe the selection process. The most common experimental methods and gear used to collect selectivity data are described, and their advantages and disadvantages are discussed. Finally, this chapter describes an alternative, or a complementary method, to the conventional estimation of trawl selectivity—the FISHSELECT method. This method is based on morphology measurements and fish penetration models to estimate the selective properties of different mesh shapes and sizes at different mesh openings, which are later used to provide simulation-based prediction of size selectivity. FISHSELECT has already been applied to four important species of the Barents Sea Demersal Fishery, and the results have in all cases showed to be coherent with the results obtained from sea trial results.",book:{id:"5210",slug:"fisheries-and-aquaculture-in-the-modern-world",title:"Fisheries and Aquaculture in the Modern World",fullTitle:"Fisheries and Aquaculture in the Modern World"},signatures:"Eduardo Grimaldo, Manu Sistiaga, Bent Herrmann and Roger B.\nLarsen",authors:[{id:"107079",title:"Dr.",name:"Eduardo",middleName:null,surname:"Grimaldo",slug:"eduardo-grimaldo",fullName:"Eduardo Grimaldo"},{id:"185311",title:"Dr.",name:"Manu",middleName:null,surname:"Sistiaga",slug:"manu-sistiaga",fullName:"Manu Sistiaga"},{id:"185312",title:"Dr.",name:"Bent",middleName:null,surname:"Herrmann",slug:"bent-herrmann",fullName:"Bent Herrmann"},{id:"185313",title:"Prof.",name:"Roger B.",middleName:null,surname:"Larsen",slug:"roger-b.-larsen",fullName:"Roger B. Larsen"}]},{id:"50363",title:"The Brown Seaweeds Fishery in Chile",slug:"the-brown-seaweeds-fishery-in-chile",totalDownloads:1731,totalCrossrefCites:4,totalDimensionsCites:10,abstract:"Chilean fishery of brown algae includes species belonging to the genus Lessonia, Durvillaea, and Macrocystis, which can be found along the coast, ranging latitudes from 18° to 55°S. The exploitation of these seaweeds is done mainly in the Northern coast because the environmental conditions of this region decrease initial production costs. Brown algae are exploited from natural populations and exported to international markets as row material, source of alginates, widely utilized in diverse manufacturing processes and industries. International demand for Chilean kelps has produced sustained increase in harvest during the last decade, reaching more than 390,000 dry tons/year. This chapter approaches the most relevant aspects of the brown seaweed fishery in Chile which covers a wide range of the Southeast Pacific coast, considering the number of commercial species, its abundance and distribution, knowledge achieved on their ecology and biology regarding management, and conservation of these resources, and finally, provides tools for stakeholders and policy makers directed to sustainable management of natural kelp beds occurring in the cold temperate seas.",book:{id:"5210",slug:"fisheries-and-aquaculture-in-the-modern-world",title:"Fisheries and Aquaculture in the Modern World",fullTitle:"Fisheries and Aquaculture in the Modern World"},signatures:"Julio A. Vásquez",authors:[{id:"180745",title:"Dr.",name:"Julio",middleName:null,surname:"Vásquez",slug:"julio-vasquez",fullName:"Julio Vásquez"}]},{id:"50462",title:"Direction of Fisheries (SUISAN) Education from a Historical Perspective in Japan",slug:"direction-of-fisheries-suisan-education-from-a-historical-perspective-in-japan",totalDownloads:1424,totalCrossrefCites:0,totalDimensionsCites:0,abstract:"Fishing, aquaculture, and food processing is collectively referred to as “SUISAN”, and the term was translated to “fisheries” in the Meiji period. Fisheries education in Japan was at its dawn. Fisheries education was necessary for improvement of local fisheries subsistence. Fisheries education was performed, centering on nurturing of mid-career engineers for deep-sea fishing after 1950s. However, when the Heisei period in the 1990s started, “participatory = citizen involvement type fisheries education” was promoted extensively. Future establishment of a Japanese version of Sea Grants is desired to promote citizen involvement in fisheries education with systematized involvement of universities, research institutions, aquaria, and local people.",book:{id:"5210",slug:"fisheries-and-aquaculture-in-the-modern-world",title:"Fisheries and Aquaculture in the Modern World",fullTitle:"Fisheries and Aquaculture in the Modern World"},signatures:"Tsuyoshi Sasaki",authors:[{id:"180712",title:"Dr.",name:"Tsuyoshi",middleName:null,surname:"Sasaki",slug:"tsuyoshi-sasaki",fullName:"Tsuyoshi Sasaki"}]}],onlineFirstChaptersFilter:{topicId:"40",limit:6,offset:0},onlineFirstChaptersCollection:[],onlineFirstChaptersTotal:0},preDownload:{success:null,errors:{}},subscriptionForm:{success:null,errors:{}},aboutIntechopen:{},privacyPolicy:{},peerReviewing:{},howOpenAccessPublishingWithIntechopenWorks:{},sponsorshipBooks:{sponsorshipBooks:[],offset:0,limit:8,total:null},allSeries:{pteSeriesList:[{id:"14",title:"Artificial Intelligence",numberOfPublishedBooks:9,numberOfPublishedChapters:89,numberOfOpenTopics:6,numberOfUpcomingTopics:0,issn:"2633-1403",doi:"10.5772/intechopen.79920",isOpenForSubmission:!0},{id:"7",title:"Biomedical Engineering",numberOfPublishedBooks:12,numberOfPublishedChapters:104,numberOfOpenTopics:3,numberOfUpcomingTopics:0,issn:"2631-5343",doi:"10.5772/intechopen.71985",isOpenForSubmission:!0}],lsSeriesList:[{id:"11",title:"Biochemistry",numberOfPublishedBooks:32,numberOfPublishedChapters:318,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2632-0983",doi:"10.5772/intechopen.72877",isOpenForSubmission:!0},{id:"25",title:"Environmental Sciences",numberOfPublishedBooks:1,numberOfPublishedChapters:12,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2754-6713",doi:"10.5772/intechopen.100362",isOpenForSubmission:!0},{id:"10",title:"Physiology",numberOfPublishedBooks:11,numberOfPublishedChapters:141,numberOfOpenTopics:4,numberOfUpcomingTopics:0,issn:"2631-8261",doi:"10.5772/intechopen.72796",isOpenForSubmission:!0}],hsSeriesList:[{id:"3",title:"Dentistry",numberOfPublishedBooks:8,numberOfPublishedChapters:129,numberOfOpenTopics:2,numberOfUpcomingTopics:0,issn:"2631-6218",doi:"10.5772/intechopen.71199",isOpenForSubmission:!0},{id:"6",title:"Infectious Diseases",numberOfPublishedBooks:13,numberOfPublishedChapters:113,numberOfOpenTopics:3,numberOfUpcomingTopics:1,issn:"2631-6188",doi:"10.5772/intechopen.71852",isOpenForSubmission:!0},{id:"13",title:"Veterinary Medicine and Science",numberOfPublishedBooks:11,numberOfPublishedChapters:106,numberOfOpenTopics:3,numberOfUpcomingTopics:0,issn:"2632-0517",doi:"10.5772/intechopen.73681",isOpenForSubmission:!0}],sshSeriesList:[{id:"22",title:"Business, Management and Economics",numberOfPublishedBooks:1,numberOfPublishedChapters:19,numberOfOpenTopics:3,numberOfUpcomingTopics:0,issn:"2753-894X",doi:"10.5772/intechopen.100359",isOpenForSubmission:!0},{id:"23",title:"Education and Human Development",numberOfPublishedBooks:0,numberOfPublishedChapters:5,numberOfOpenTopics:1,numberOfUpcomingTopics:1,issn:null,doi:"10.5772/intechopen.100360",isOpenForSubmission:!0},{id:"24",title:"Sustainable Development",numberOfPublishedBooks:0,numberOfPublishedChapters:15,numberOfOpenTopics:5,numberOfUpcomingTopics:0,issn:null,doi:"10.5772/intechopen.100361",isOpenForSubmission:!0}],testimonialsList:[{id:"13",text:"The collaboration with and support of the technical staff of IntechOpen is fantastic. 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Topics will include general overviews of infections, immunopathology, diagnosis, treatment, epidemiology, etiology, and current clinical recommendations for managing infectious diseases. Ongoing issues, recent advances, and future diagnostic approaches and therapeutic strategies will also be discussed. This book series will focus on various aspects and properties of infectious diseases whose deep understanding is essential for safeguarding the human race from losing resources and economies due to pathogens.",coverUrl:"https://cdn.intechopen.com/series/covers/6.jpg",latestPublicationDate:"June 25th, 2022",hasOnlineFirst:!0,numberOfPublishedBooks:13,editor:{id:"131400",title:"Prof.",name:"Alfonso J.",middleName:null,surname:"Rodriguez-Morales",slug:"alfonso-j.-rodriguez-morales",fullName:"Alfonso J. 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He is an External Professor, Master in Research on Tropical Medicine and International Health, Universitat de Barcelona, Spain. He is also a professor at the Master in Clinical Epidemiology and Biostatistics, Universidad Científica del Sur, Lima, Peru. In 2021 he has been awarded the “Raul Isturiz Award” Medal of the API. Also, in 2021, he was awarded with the “Jose Felix Patiño” Asclepius Staff Medal of the Colombian Medical College, due to his scientific contributions to COVID-19 during the pandemic. He is currently the Editor in Chief of the journal Travel Medicine and Infectious Diseases. 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Completed the Course Medical Mycology, the Centraalbureau voor Schimmelcultures (CBS), Fungal Biodiversity Centre, Netherlands (2006). International Union of Microbiological Societies (IUMS) Fellow, and International Emerging Infectious Diseases (IEID) Fellow, Centers for Diseases Control and Prevention (CDC), Atlanta, USA. Diploma of Dermatological Scientist, Japanese Society for Investigative Dermatology. Ph.D. of Juntendo University, Japan. Bachelor’s and Master’s degree, Medicine, West China University of Medical Sciences. Chair of Sichuan Medical Association Dermatology Committee. General Secretary of The 19th Annual Meeting of Chinese Society of Dermatology and the Asia Pacific Society for Medical Mycology (2013). In charge of the Annual Medical Mycology Course over 20-years authorized by National Continue Medical Education Committee of China. Member of the board of directors of the Asia-Pacific Society for Medical Mycology (APSMM). Associate editor of Mycopathologia. Vice-chief of the editorial board of Chinses Journal of Mycology, China. Board Member and Chair of Mycology Group of Chinese Society of Dermatology.",institutionString:null,institution:{name:"Sichuan University",institutionURL:null,country:{name:"China"}}},editorTwo:null,editorThree:null},{id:"5",title:"Parasitic Infectious Diseases",coverUrl:"https://cdn.intechopen.com/series_topics/covers/5.jpg",isOpenForSubmission:!0,editor:{id:"67907",title:"Dr.",name:"Amidou",middleName:null,surname:"Samie",slug:"amidou-samie",fullName:"Amidou Samie",profilePictureURL:"https://mts.intechopen.com/storage/users/67907/images/system/67907.jpg",biography:"Dr. Amidou Samie is an Associate Professor of Microbiology at the University of Venda, in South Africa, where he graduated for his PhD in May 2008. He joined the Department of Microbiology the same year and has been giving lectures on topics covering parasitology, immunology, molecular biology and industrial microbiology. He is currently a rated researcher by the National Research Foundation of South Africa at category C2. He has published widely in the field of infectious diseases and has overseen several MSc’s and PhDs. His research activities mostly cover topics on infectious diseases from epidemiology to control. His particular interest lies in the study of intestinal protozoan parasites and opportunistic infections among HIV patients as well as the potential impact of childhood diarrhoea on growth and child development. He also conducts research on water-borne diseases and water quality and is involved in the evaluation of point-of-use water treatment technologies using silver and copper nanoparticles in collaboration with the University of Virginia, USA. He also studies the use of medicinal plants for the control of infectious diseases as well as antimicrobial drug resistance.",institutionString:null,institution:{name:"University of Venda",institutionURL:null,country:{name:"South Africa"}}},editorTwo:null,editorThree:null},{id:"6",title:"Viral Infectious Diseases",coverUrl:"https://cdn.intechopen.com/series_topics/covers/6.jpg",isOpenForSubmission:!0,editor:{id:"158026",title:"Prof.",name:"Shailendra K.",middleName:null,surname:"Saxena",slug:"shailendra-k.-saxena",fullName:"Shailendra K. Saxena",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRET3QAO/Profile_Picture_2022-05-10T10:10:26.jpeg",biography:"Professor Dr. Shailendra K. Saxena is a vice dean and professor at King George's Medical University, Lucknow, India. His research interests involve understanding the molecular mechanisms of host defense during human viral infections and developing new predictive, preventive, and therapeutic strategies for them using Japanese encephalitis virus (JEV), HIV, and emerging viruses as a model via stem cell and cell culture technologies. His research work has been published in various high-impact factor journals (Science, PNAS, Nature Medicine) with a high number of citations. He has received many awards and honors in India and abroad including various Young Scientist Awards, BBSRC India Partnering Award, and Dr. JC Bose National Award of Department of Biotechnology, Min. of Science and Technology, Govt. of India. Dr. Saxena is a fellow of various international societies/academies including the Royal College of Pathologists, United Kingdom; Royal Society of Medicine, London; Royal Society of Biology, United Kingdom; Royal Society of Chemistry, London; and Academy of Translational Medicine Professionals, Austria. He was named a Global Leader in Science by The Scientist. He is also an international opinion leader/expert in vaccination for Japanese encephalitis by IPIC (UK).",institutionString:"King George's Medical University",institution:{name:"King George's Medical University",institutionURL:null,country:{name:"India"}}},editorTwo:null,editorThree:null}]},overviewPageOFChapters:{paginationCount:10,paginationItems:[{id:"82380",title:"Evolution of Parasitism and Pathogenic Adaptations in Certain Medically Important Fungi",doi:"10.5772/intechopen.105206",signatures:"Gokul Shankar Sabesan, Ranjit Singh AJA, Ranjith Mehenderkar and Basanta Kumar Mohanty",slug:"evolution-of-parasitism-and-pathogenic-adaptations-in-certain-medically-important-fungi",totalDownloads:4,totalCrossrefCites:0,totalDimensionsCites:0,authors:null,book:{title:"Fungal Infectious Diseases - Annual Volume 2022",coverURL:"https://cdn.intechopen.com/books/images_new/11400.jpg",subseries:{id:"4",title:"Fungal Infectious Diseases"}}},{id:"82367",title:"Spatial Variation and Factors Associated with Unsuppressed HIV Viral Load among Women in an HIV Hyperendemic Area of KwaZulu-Natal, South Africa",doi:"10.5772/intechopen.105547",signatures:"Adenike O. 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He has received many awards and honors in India and abroad including various Young Scientist Awards, BBSRC India Partnering Award, and Dr. JC Bose National Award of Department of Biotechnology, Min. of Science and Technology, Govt. of India. Dr. Saxena is a fellow of various international societies/academies including the Royal College of Pathologists, United Kingdom; Royal Society of Medicine, London; Royal Society of Biology, United Kingdom; Royal Society of Chemistry, London; and Academy of Translational Medicine Professionals, Austria. He was named a Global Leader in Science by The Scientist. He is also an international opinion leader/expert in vaccination for Japanese encephalitis by IPIC (UK).",institutionString:"King George's Medical University",institution:{name:"King George's Medical University",institutionURL:null,country:{name:"India"}}}]},{type:"book",id:"7064",title:"Current Perspectives in Human Papillomavirus",subtitle:null,coverURL:"https://cdn.intechopen.com/books/images_new/7064.jpg",slug:"current-perspectives-in-human-papillomavirus",publishedDate:"May 2nd 2019",editedByType:"Edited by",bookSignature:"Shailendra K. Saxena",hash:"d92a4085627bab25ddc7942fbf44cf05",volumeInSeries:2,fullTitle:"Current Perspectives in Human Papillomavirus",editors:[{id:"158026",title:"Prof.",name:"Shailendra K.",middleName:null,surname:"Saxena",slug:"shailendra-k.-saxena",fullName:"Shailendra K. Saxena",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRET3QAO/Profile_Picture_2022-05-10T10:10:26.jpeg",biography:"Professor Dr. Shailendra K. Saxena is a vice dean and professor at King George's Medical University, Lucknow, India. His research interests involve understanding the molecular mechanisms of host defense during human viral infections and developing new predictive, preventive, and therapeutic strategies for them using Japanese encephalitis virus (JEV), HIV, and emerging viruses as a model via stem cell and cell culture technologies. His research work has been published in various high-impact factor journals (Science, PNAS, Nature Medicine) with a high number of citations. He has received many awards and honors in India and abroad including various Young Scientist Awards, BBSRC India Partnering Award, and Dr. JC Bose National Award of Department of Biotechnology, Min. of Science and Technology, Govt. of India. Dr. Saxena is a fellow of various international societies/academies including the Royal College of Pathologists, United Kingdom; Royal Society of Medicine, London; Royal Society of Biology, United Kingdom; Royal Society of Chemistry, London; and Academy of Translational Medicine Professionals, Austria. He was named a Global Leader in Science by The Scientist. He is also an international opinion leader/expert in vaccination for Japanese encephalitis by IPIC (UK).",institutionString:"King George's Medical University",institution:{name:"King George's Medical University",institutionURL:null,country:{name:"India"}}}]},{type:"book",id:"7123",title:"Current Topics in Neglected Tropical Diseases",subtitle:null,coverURL:"https://cdn.intechopen.com/books/images_new/7123.jpg",slug:"current-topics-in-neglected-tropical-diseases",publishedDate:"December 4th 2019",editedByType:"Edited by",bookSignature:"Alfonso J. 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In addition, he is also a Collaborating Professor in several Postgraduate programs at different universities all over the world.",institutionString:null,institution:{name:"Universidad Católica San Antonio de Murcia",country:{name:"Spain"}}},{id:"342152",title:"Dr.",name:"Santo",middleName:null,surname:"Grace Umesh",slug:"santo-grace-umesh",fullName:"Santo Grace Umesh",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/342152/images/16311_n.jpg",biography:null,institutionString:null,institution:{name:"SRM Dental College",country:{name:"India"}}},{id:"333647",title:"Dr.",name:"Shreya",middleName:null,surname:"Kishore",slug:"shreya-kishore",fullName:"Shreya Kishore",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/333647/images/14701_n.jpg",biography:"Dr. Shreya Kishore completed her Bachelor in Dental Surgery in Chettinad Dental College and Research Institute, Chennai, and her Master of Dental Surgery (Orthodontics) in Saveetha Dental College, Chennai. She is also Invisalign certified. She’s working as a Senior Lecturer in the Department of Orthodontics, SRM Dental College since November 2019. She is actively involved in teaching orthodontics to the undergraduates and the postgraduates. Her clinical research topics include new orthodontic brackets, fixed appliances and TADs. She’s published 4 articles in well renowned indexed journals and has a published patency of her own. Her private practice is currently limited to orthodontics and works as a consultant in various clinics.",institutionString:null,institution:{name:"SRM Dental College",country:{name:"India"}}},{id:"323731",title:"Prof.",name:"Deepak M.",middleName:"Macchindra",surname:"Vikhe",slug:"deepak-m.-vikhe",fullName:"Deepak M. Vikhe",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/323731/images/13613_n.jpg",biography:"Dr Deepak M.Vikhe .\n\n\t\n\tDr Deepak M.Vikhe , completed his Masters & PhD in Prosthodontics from Rural Dental College, Loni securing third rank in the Pravara Institute of Medical Sciences Deemed University. He was awarded Dr.G.C.DAS Memorial Award for Research on Implants at 39th IPS conference Dubai (U A E).He has two patents under his name. He has received Dr.Saraswati medal award for best research for implant study in 2017.He has received Fully funded scholarship to Spain ,university of Santiago de Compostela. He has completed fellowship in Implantlogy from Noble Biocare. \nHe has attended various conferences and CDE programmes and has national publications to his credit. His field of interest is in Implant supported prosthesis. Presently he is working as a associate professor in the Dept of Prosthodontics, Rural Dental College, Loni and maintains a successful private practice specialising in Implantology at Rahata.\n\nEmail: drdeepak_mvikhe@yahoo.com..................",institutionString:null,institution:{name:"Pravara Institute of Medical Sciences",country:{name:"India"}}},{id:"204110",title:"Dr.",name:"Ahmed A.",middleName:null,surname:"Madfa",slug:"ahmed-a.-madfa",fullName:"Ahmed A. Madfa",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/204110/images/system/204110.jpg",biography:"Dr. Madfa is currently Associate Professor of Endodontics at Thamar University and a visiting lecturer at Sana'a University and University of Sciences and Technology. He has more than 6 years of experience in teaching. His research interests include root canal morphology, functionally graded concept, dental biomaterials, epidemiology and dental education, biomimetic restoration, finite element analysis and endodontic regeneration. Dr. Madfa has numerous international publications, full articles, two patents, a book and a book chapter. Furthermore, he won 14 international scientific awards. Furthermore, he is involved in many academic activities ranging from editorial board member, reviewer for many international journals and postgraduate students' supervisor. Besides, I deliver many courses and training workshops at various scientific events. Dr. Madfa also regularly attends international conferences and holds administrative positions (Deputy Dean of the Faculty for Students’ & Academic Affairs and Deputy Head of Research Unit).",institutionString:"Thamar University",institution:null},{id:"210472",title:"Dr.",name:"Nermin",middleName:"Mohammed Ahmed",surname:"Yussif",slug:"nermin-yussif",fullName:"Nermin Yussif",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/210472/images/system/210472.jpg",biography:"Dr. Nermin Mohammed Ahmed Yussif is working at the Faculty of dentistry, University for October university for modern sciences and arts (MSA). Her areas of expertise include: periodontology, dental laserology, oral implantology, periodontal plastic surgeries, oral mesotherapy, nutrition, dental pharmacology. She is an editor and reviewer in numerous international journals.",institutionString:"MSA University",institution:null},{id:"204606",title:"Dr.",name:"Serdar",middleName:null,surname:"Gözler",slug:"serdar-gozler",fullName:"Serdar Gözler",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/204606/images/system/204606.jpeg",biography:"Dr. Serdar Gözler has completed his undergraduate studies at the Marmara University Faculty of Dentistry in 1978, followed by an assistantship in the Prosthesis Department of Dicle University Faculty of Dentistry. Starting his PhD work on non-resilient overdentures with Assoc. Prof. Hüsnü Yavuzyılmaz, he continued his studies with Prof. Dr. Gürbüz Öztürk of Istanbul University Faculty of Dentistry Department of Prosthodontics, this time on Gnatology. He attended training programs on occlusion, neurology, neurophysiology, EMG, radiology and biostatistics. In 1982, he presented his PhD thesis \\Gerber and Lauritzen Occlusion Analysis Techniques: Diagnosis Values,\\ at Istanbul University School of Dentistry, Department of Prosthodontics. As he was also working with Prof. Senih Çalıkkocaoğlu on The Physiology of Chewing at the same time, Gözler has written a chapter in Çalıkkocaoğlu\\'s book \\Complete Prostheses\\ entitled \\The Place of Neuromuscular Mechanism in Prosthetic Dentistry.\\ The book was published five times since by the Istanbul University Publications. Having presented in various conferences about occlusion analysis until 1998, Dr. Gözler has also decided to use the T-Scan II occlusion analysis method. Having been personally trained by Dr. Robert Kerstein on this method, Dr. Gözler has been lecturing on the T-Scan Occlusion Analysis Method in conferences both in Turkey and abroad. Dr. Gözler has various articles and presentations on Digital Occlusion Analysis methods. He is now Head of the TMD Clinic at Prosthodontic Department of Faculty of Dentistry , Istanbul Aydın University , Turkey.",institutionString:"Istanbul Aydin University",institution:{name:"Istanbul Aydın University",country:{name:"Turkey"}}},{id:"240870",title:"Ph.D.",name:"Alaa Eddin Omar",middleName:null,surname:"Al Ostwani",slug:"alaa-eddin-omar-al-ostwani",fullName:"Alaa Eddin Omar Al Ostwani",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/240870/images/system/240870.jpeg",biography:"Dr. Al Ostwani Alaa Eddin Omar received his Master in dentistry from Damascus University in 2010, and his Ph.D. in Pediatric Dentistry from Damascus University in 2014. Dr. Al Ostwani is an assistant professor and faculty member at IUST University since 2014. \nDuring his academic experience, he has received several awards including the scientific research award from the Union of Arab Universities, the Syrian gold medal and the international gold medal for invention and creativity. Dr. Al Ostwani is a Member of the International Association of Dental Traumatology and the Syrian Society for Research and Preventive Dentistry since 2017. He is also a Member of the Reviewer Board of International Journal of Dental Medicine (IJDM), and the Indian Journal of Conservative and Endodontics since 2016.",institutionString:"International University for Science and Technology.",institution:{name:"Islamic University of Science and Technology",country:{name:"India"}}},{id:"42847",title:"Dr.",name:"Belma",middleName:null,surname:"Işik Aslan",slug:"belma-isik-aslan",fullName:"Belma Işik Aslan",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/42847/images/system/42847.jpg",biography:"Dr. Belma IşIk Aslan was born in 1976 in Ankara-TURKEY. After graduating from TED Ankara College in 1994, she attended to Gazi University, Faculty of Dentistry in Ankara. She completed her PhD in orthodontic education at Gazi University between 1999-2005. Dr. Işık Aslan stayed at the Providence Hospital Craniofacial Institude and Reconstructive Surgery in Michigan, USA for three months as an observer. She worked as a specialist doctor at Gazi University, Dentistry Faculty, Department of Orthodontics between 2005-2014. She was appointed as associate professor in January, 2014 and as professor in 2021. Dr. Işık Aslan still works as an instructor at the same faculty. She has published a total of 35 articles, 10 book chapters, 39 conference proceedings both internationally and nationally. Also she was the academic editor of the international book 'Current Advances in Orthodontics'. She is a member of the Turkish Orthodontic Society and Turkish Cleft Lip and Palate Society. She is married and has 2 children. Her knowledge of English is at an advanced level.",institutionString:"Gazi University Dentistry Faculty Department of Orthodontics",institution:null},{id:"178412",title:"Associate Prof.",name:"Guhan",middleName:null,surname:"Dergin",slug:"guhan-dergin",fullName:"Guhan Dergin",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/178412/images/6954_n.jpg",biography:"Assoc. Prof. Dr. Gühan Dergin was born in 1973 in Izmit. He graduated from Marmara University Faculty of Dentistry in 1999. He completed his specialty of OMFS surgery in Marmara University Faculty of Dentistry and obtained his PhD degree in 2006. In 2005, he was invited as a visiting doctor in the Oral and Maxillofacial Surgery Department of the University of North Carolina, USA, where he went on a scholarship. Dr. Dergin still continues his academic career as an associate professor in Marmara University Faculty of Dentistry. He has many articles in international and national scientific journals and chapters in books.",institutionString:null,institution:{name:"Marmara University",country:{name:"Turkey"}}},{id:"178414",title:"Prof.",name:"Yusuf",middleName:null,surname:"Emes",slug:"yusuf-emes",fullName:"Yusuf Emes",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/178414/images/6953_n.jpg",biography:"Born in Istanbul in 1974, Dr. Emes graduated from Istanbul University Faculty of Dentistry in 1997 and completed his PhD degree in Istanbul University faculty of Dentistry Department of Oral and Maxillofacial Surgery in 2005. He has papers published in international and national scientific journals, including research articles on implantology, oroantral fistulas, odontogenic cysts, and temporomandibular disorders. Dr. Emes is currently working as a full-time academic staff in Istanbul University faculty of Dentistry Department of Oral and Maxillofacial Surgery.",institutionString:null,institution:{name:"Istanbul University",country:{name:"Turkey"}}},{id:"192229",title:"Ph.D.",name:"Ana Luiza",middleName:null,surname:"De Carvalho Felippini",slug:"ana-luiza-de-carvalho-felippini",fullName:"Ana Luiza De Carvalho Felippini",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/192229/images/system/192229.jpg",biography:null,institutionString:"University of São Paulo",institution:{name:"University of Sao Paulo",country:{name:"Brazil"}}},{id:"256851",title:"Prof.",name:"Ayşe",middleName:null,surname:"Gülşen",slug:"ayse-gulsen",fullName:"Ayşe Gülşen",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/256851/images/9696_n.jpg",biography:"Dr. Ayşe Gülşen graduated in 1990 from Faculty of Dentistry, University of Ankara and did a postgraduate program at University of Gazi. \nShe worked as an observer and research assistant in Craniofacial Surgery Departments in New York, Providence Hospital in Michigan and Chang Gung Memorial Hospital in Taiwan. \nShe works as Craniofacial Orthodontist in Department of Aesthetic, Plastic and Reconstructive Surgery, Faculty of Medicine, University of Gazi, Ankara Turkey since 2004.",institutionString:"Univeristy of Gazi",institution:null},{id:"255366",title:"Prof.",name:"Tosun",middleName:null,surname:"Tosun",slug:"tosun-tosun",fullName:"Tosun Tosun",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/255366/images/7347_n.jpg",biography:"Graduated at the Faculty of Dentistry, University of Istanbul, Turkey in 1989;\nVisitor Assistant at the University of Padua, Italy and Branemark Osseointegration Center of Treviso, Italy between 1993-94;\nPhD thesis on oral implantology in University of Istanbul and was awarded the academic title “Dr.med.dent.”, 1997;\nHe was awarded the academic title “Doç.Dr.” (Associated Professor) in 2003;\nProficiency in Botulinum Toxin Applications, Reading-UK in 2009;\nMastership, RWTH Certificate in Laser Therapy in Dentistry, AALZ-Aachen University, Germany 2009-11;\nMaster of Science (MSc) in Laser Dentistry, University of Genoa, Italy 2013-14.\n\nDr.Tosun worked as Research Assistant in the Department of Oral Implantology, Faculty of Dentistry, University of Istanbul between 1990-2002. \nHe worked part-time as Consultant surgeon in Harvard Medical International Hospitals and John Hopkins Medicine, Istanbul between years 2007-09.\u2028He was contract Professor in the Department of Surgical and Diagnostic Sciences (DI.S.C.), Medical School, University of Genova, Italy between years 2011-16. \nSince 2015 he is visiting Professor at Medical School, University of Plovdiv, Bulgaria. \nCurrently he is Associated Prof.Dr. at the Dental School, Oral Surgery Dept., Istanbul Aydin University and since 2003 he works in his own private clinic in Istanbul, Turkey.\u2028\nDr.Tosun is reviewer in journal ‘Laser in Medical Sciences’, reviewer in journal ‘Folia Medica\\', a Fellow of the International Team for Implantology, Clinical Lecturer of DGZI German Association of Oral Implantology, Expert Lecturer of Laser&Health Academy, Country Representative of World Federation for Laser Dentistry, member of European Federation of Periodontology, member of Academy of Laser Dentistry. Dr.Tosun presents papers in international and national congresses and has scientific publications in international and national journals. He speaks english, spanish, italian and french.",institutionString:null,institution:{name:"Istanbul Aydın University",country:{name:"Turkey"}}},{id:"171887",title:"Prof.",name:"Zühre",middleName:null,surname:"Akarslan",slug:"zuhre-akarslan",fullName:"Zühre Akarslan",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/171887/images/system/171887.jpg",biography:"Zühre Akarslan was born in 1977 in Cyprus. She graduated from Gazi University Faculty of Dentistry, Ankara, Turkey in 2000. \r\nLater she received her Ph.D. degree from the Oral Diagnosis and Radiology Department; which was recently renamed as Oral and Dentomaxillofacial Radiology, from the same university. \r\nShe is working as a full-time Associate Professor and is a lecturer and an academic researcher. \r\nHer expertise areas are dental caries, cancer, dental fear and anxiety, gag reflex in dentistry, oral medicine, and dentomaxillofacial radiology.",institutionString:"Gazi University",institution:{name:"Gazi University",country:{name:"Turkey"}}},{id:"256417",title:"Associate Prof.",name:"Sanaz",middleName:null,surname:"Sadry",slug:"sanaz-sadry",fullName:"Sanaz Sadry",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/256417/images/8106_n.jpg",biography:null,institutionString:null,institution:null},{id:"272237",title:"Dr.",name:"Pinar",middleName:"Kiymet",surname:"Karataban",slug:"pinar-karataban",fullName:"Pinar Karataban",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/272237/images/8911_n.png",biography:"Assist.Prof.Dr.Pınar Kıymet Karataban, DDS PhD \n\nDr.Pınar Kıymet Karataban was born in Istanbul in 1975. After her graduation from Marmara University Faculty of Dentistry in 1998 she started her PhD in Paediatric Dentistry focused on children with special needs; mainly children with Cerebral Palsy. She finished her pHD thesis entitled \\'Investigation of occlusion via cast analysis and evaluation of dental caries prevalance, periodontal status and muscle dysfunctions in children with cerebral palsy” in 2008. She got her Assist. Proffessor degree in Istanbul Aydın University Paediatric Dentistry Department in 2015-2018. ın 2019 she started her new career in Bahcesehir University, Istanbul as Head of Department of Pediatric Dentistry. In 2020 she was accepted to BAU International University, Batumi as Professor of Pediatric Dentistry. She’s a lecturer in the same university meanwhile working part-time in private practice in Ege Dental Studio (https://www.egedisklinigi.com/) a multidisciplinary dental clinic in Istanbul. Her main interests are paleodontology, ancient and contemporary dentistry, oral microbiology, cerebral palsy and special care dentistry. She has national and international publications, scientific reports and is a member of IAPO (International Association for Paleodontology), IADH (International Association of Disability and Oral Health) and EAPD (European Association of Pediatric Dentistry).",institutionString:null,institution:null},{id:"202198",title:"Dr.",name:"Buket",middleName:null,surname:"Aybar",slug:"buket-aybar",fullName:"Buket Aybar",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/202198/images/6955_n.jpg",biography:"Buket Aybar, DDS, PhD, was born in 1971. She graduated from Istanbul University, Faculty of Dentistry, in 1992 and completed her PhD degree on Oral and Maxillofacial Surgery in Istanbul University in 1997.\nDr. Aybar is currently a full-time professor in Istanbul University, Faculty of Dentistry Department of Oral and Maxillofacial Surgery. She has teaching responsibilities in graduate and postgraduate programs. Her clinical practice includes mainly dentoalveolar surgery.\nHer topics of interest are biomaterials science and cell culture studies. She has many articles in international and national scientific journals and chapters in books; she also has participated in several scientific projects supported by Istanbul University Research fund.",institutionString:null,institution:null},{id:"260116",title:"Dr.",name:"Mehmet",middleName:null,surname:"Yaltirik",slug:"mehmet-yaltirik",fullName:"Mehmet Yaltirik",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/260116/images/7413_n.jpg",biography:"Birth Date 25.09.1965\r\nBirth Place Adana- Turkey\r\nSex Male\r\nMarrial Status Bachelor\r\nDriving License Acquired\r\nMother Tongue Turkish\r\n\r\nAddress:\r\nWork:University of Istanbul,Faculty of Dentistry, Department of Oral Surgery and Oral Medicine 34093 Capa,Istanbul- TURKIYE",institutionString:null,institution:null},{id:"172009",title:"Dr.",name:"Fatma Deniz",middleName:null,surname:"Uzuner",slug:"fatma-deniz-uzuner",fullName:"Fatma Deniz Uzuner",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/172009/images/7122_n.jpg",biography:"Dr. Deniz Uzuner was born in 1969 in Kocaeli-TURKEY. After graduating from TED Ankara College in 1986, she attended the Hacettepe University, Faculty of Dentistry in Ankara. \nIn 1993 she attended the Gazi University, Faculty of Dentistry, Department of Orthodontics for her PhD education. After finishing the PhD education, she worked as orthodontist in Ankara Dental Hospital under the Turkish Government, Ministry of Health and in a special Orthodontic Clinic till 2011. Between 2011 and 2016, Dr. Deniz Uzuner worked as a specialist in the Department of Orthodontics, Faculty of Dentistry, Gazi University in Ankara/Turkey. In 2016, she was appointed associate professor. Dr. Deniz Uzuner has authored 23 Journal Papers, 3 Book Chapters and has had 39 oral/poster presentations. She is a member of the Turkish Orthodontic Society. Her knowledge of English is at an advanced level.",institutionString:null,institution:null},{id:"332914",title:"Dr.",name:"Muhammad Saad",middleName:null,surname:"Shaikh",slug:"muhammad-saad-shaikh",fullName:"Muhammad Saad Shaikh",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Jinnah Sindh Medical University",country:{name:"Pakistan"}}},{id:"315775",title:"Dr.",name:"Feng",middleName:null,surname:"Luo",slug:"feng-luo",fullName:"Feng Luo",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Sichuan University",country:{name:"China"}}},{id:"423519",title:"Dr.",name:"Sizakele",middleName:null,surname:"Ngwenya",slug:"sizakele-ngwenya",fullName:"Sizakele Ngwenya",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"University of the Witwatersrand",country:{name:"South Africa"}}},{id:"419270",title:"Dr.",name:"Ann",middleName:null,surname:"Chianchitlert",slug:"ann-chianchitlert",fullName:"Ann Chianchitlert",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Walailak University",country:{name:"Thailand"}}},{id:"419271",title:"Dr.",name:"Diane",middleName:null,surname:"Selvido",slug:"diane-selvido",fullName:"Diane Selvido",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Walailak University",country:{name:"Thailand"}}},{id:"419272",title:"Dr.",name:"Irin",middleName:null,surname:"Sirisoontorn",slug:"irin-sirisoontorn",fullName:"Irin Sirisoontorn",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Walailak University",country:{name:"Thailand"}}},{id:"355660",title:"Dr.",name:"Anitha",middleName:null,surname:"Mani",slug:"anitha-mani",fullName:"Anitha Mani",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"SRM Dental College",country:{name:"India"}}},{id:"355612",title:"Dr.",name:"Janani",middleName:null,surname:"Karthikeyan",slug:"janani-karthikeyan",fullName:"Janani Karthikeyan",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"SRM Dental College",country:{name:"India"}}},{id:"334400",title:"Dr.",name:"Suvetha",middleName:null,surname:"Siva",slug:"suvetha-siva",fullName:"Suvetha Siva",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"SRM Dental College",country:{name:"India"}}}]}},subseries:{item:{id:"1",type:"subseries",title:"Oral Health",keywords:"Oral health, Dental care, Diagnosis, Diagnostic imaging, Early diagnosis, Oral cancer, Conservative treatment, Epidemiology, Comprehensive dental care, Complementary therapies, Holistic health",scope:"\r\n This topic aims to provide a comprehensive overview of the latest trends in Oral Health based on recent scientific evidence. Subjects will include an overview of oral diseases and infections, systemic diseases affecting the oral cavity, prevention, diagnosis, treatment, epidemiology, as well as current clinical recommendations for the management of oral, dental, and periodontal diseases.
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Her qualifications are: a specialist in Dental Imaging and Radiology, Master in Dentistry (Periodontics) from the University of São Paulo (FORP-USP, Ribeirão Preto, SP), and Doctor (Ph.D.) in Dentistry (Stomatology Clinic) from Hospital São Lucas of the Pontifical Catholic University of Rio Grande do Sul (HSL-PUCRS, Porto Alegre, RS). She held a postdoctoral internship at the Federal University from Jequitinhonha and Mucuri Valleys (UFVJM, Diamantina, MG). She is currently a member of the Brazilian Society for Dental Research (SBPqO) and the Brazilian Society of Stomatology and Pathology (SOBEP). Dr. Marinho's experience in Dentistry mainly covers the following subjects: oral diagnosis, oral radiology; oral medicine; lesions and oral infections; oral pathology, laser therapy and epidemiological studies.",institutionString:null,institution:{name:"State University of Paraíba",institutionURL:null,country:{name:"Brazil"}}},editorTwo:null,editorThree:null,series:{id:"3",title:"Dentistry",doi:"10.5772/intechopen.71199",issn:"2631-6218"},editorialBoard:[{id:"267724",title:"Dr.",name:"Febronia",middleName:null,surname:"Kahabuka",slug:"febronia-kahabuka",fullName:"Febronia Kahabuka",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRZpJQAW/Profile_Picture_2022-06-27T12:00:42.JPG",institutionString:null,institution:null}]},onlineFirstChapters:{paginationCount:1,paginationItems:[{id:"81756",title:"Alteration of Cytokines Level and Oxidative Stress Parameters in COVID-19",doi:"10.5772/intechopen.104950",signatures:"Marija Petrusevska, Emilija Atanasovska, 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