Research evidences showing utilization of rock phosphate with PSB strain in different crops. The comparison for the crops/cropping system is done with control and commercial phosphorus fertilizer, and summarized findings are mentioned.
\\n\\n
IntechOpen was founded by scientists, for scientists, in order to make book publishing accessible around the globe. Over the last two decades, this has driven Open Access (OA) book publishing whilst levelling the playing field for global academics. Through our innovative publishing model and the support of the research community, we have now published over 5,700 Open Access books and are visited online by over three million academics every month. These researchers are increasingly working in broad technology-based subjects, driving multidisciplinary academic endeavours into human health, environment, and technology.
\\n\\nBy listening to our community, and in order to serve these rapidly growing areas which lie at the core of IntechOpen's expertise, we are launching a portfolio of Open Science journals:
\\n\\nAll three journals will publish under an Open Access model and embrace Open Science policies to help support the changing needs of academics in these fast-moving research areas. There will be direct links to preprint servers and data repositories, allowing full reproducibility and rapid dissemination of published papers to help accelerate the pace of research. Each journal has renowned Editors in Chief who will work alongside a global Editorial Board, delivering robust single-blind peer review. Supported by our internal editorial teams, this will ensure our authors will receive a quick, user-friendly, and personalised publishing experience.
\\n\\n"By launching our journals portfolio we are introducing new, dedicated homes for interdisciplinary technology-focused researchers to publish their work, whilst embracing Open Science and creating a unique global home for academics to disseminate their work. We are taking a leap toward Open Science continuing and expanding our fundamental commitment to openly sharing scientific research across the world, making it available for the benefit of all." Dr. Sara Uhac, IntechOpen CEO
\\n\\n"Our aim is to promote and create better science for a better world by increasing access to information and the latest scientific developments to all scientists, innovators, entrepreneurs and students and give them the opportunity to learn, observe and contribute to knowledge creation. Open Science promotes a swifter path from research to innovation to produce new products and services." Alex Lazinica, IntechOpen founder
\\n\\nIn conclusion, Natalia Reinic Babic, Head of Journal Publishing and Open Science at IntechOpen adds:
\\n\\n“On behalf of the journal team I’d like to thank all our Editors in Chief, Editorial Boards, internal supporting teams, and our scientific community for their continuous support in making this portfolio a reality - we couldn’t have done it without you! With your support in place, we are confident these journals will become as impactful and successful as our book publishing program and bring us closer to a more open (science) future.”
\\n\\nWe invite you to visit the journals homepage and learn more about the journal’s Editorial Boards, scope and vision as all three journals are now open for submissions.
\\n\\nFeel free to share this news on social media and help us mark this memorable moment!
\\n\\n\\n"}]',published:!0,mainMedia:{caption:"",originalUrl:"/media/original/237"}},components:[{type:"htmlEditorComponent",content:'
After years of being acknowledged as the world's leading publisher of Open Access books, today, we are proud to announce we’ve successfully launched a portfolio of Open Science journals covering rapidly expanding areas of interdisciplinary research.
\n\n\n\nIntechOpen was founded by scientists, for scientists, in order to make book publishing accessible around the globe. Over the last two decades, this has driven Open Access (OA) book publishing whilst levelling the playing field for global academics. Through our innovative publishing model and the support of the research community, we have now published over 5,700 Open Access books and are visited online by over three million academics every month. These researchers are increasingly working in broad technology-based subjects, driving multidisciplinary academic endeavours into human health, environment, and technology.
\n\nBy listening to our community, and in order to serve these rapidly growing areas which lie at the core of IntechOpen's expertise, we are launching a portfolio of Open Science journals:
\n\nAll three journals will publish under an Open Access model and embrace Open Science policies to help support the changing needs of academics in these fast-moving research areas. There will be direct links to preprint servers and data repositories, allowing full reproducibility and rapid dissemination of published papers to help accelerate the pace of research. Each journal has renowned Editors in Chief who will work alongside a global Editorial Board, delivering robust single-blind peer review. Supported by our internal editorial teams, this will ensure our authors will receive a quick, user-friendly, and personalised publishing experience.
\n\n"By launching our journals portfolio we are introducing new, dedicated homes for interdisciplinary technology-focused researchers to publish their work, whilst embracing Open Science and creating a unique global home for academics to disseminate their work. We are taking a leap toward Open Science continuing and expanding our fundamental commitment to openly sharing scientific research across the world, making it available for the benefit of all." Dr. Sara Uhac, IntechOpen CEO
\n\n"Our aim is to promote and create better science for a better world by increasing access to information and the latest scientific developments to all scientists, innovators, entrepreneurs and students and give them the opportunity to learn, observe and contribute to knowledge creation. Open Science promotes a swifter path from research to innovation to produce new products and services." Alex Lazinica, IntechOpen founder
\n\nIn conclusion, Natalia Reinic Babic, Head of Journal Publishing and Open Science at IntechOpen adds:
\n\n“On behalf of the journal team I’d like to thank all our Editors in Chief, Editorial Boards, internal supporting teams, and our scientific community for their continuous support in making this portfolio a reality - we couldn’t have done it without you! With your support in place, we are confident these journals will become as impactful and successful as our book publishing program and bring us closer to a more open (science) future.”
\n\nWe invite you to visit the journals homepage and learn more about the journal’s Editorial Boards, scope and vision as all three journals are now open for submissions.
\n\nFeel free to share this news on social media and help us mark this memorable moment!
\n\n\n'}],latestNews:[{slug:"webinar-introduction-to-open-science-wednesday-18-may-1-pm-cest-20220518",title:"Webinar: Introduction to Open Science | Wednesday 18 May, 1 PM CEST"},{slug:"step-in-the-right-direction-intechopen-launches-a-portfolio-of-open-science-journals-20220414",title:"Step in the Right Direction: IntechOpen Launches a Portfolio of Open Science Journals"},{slug:"let-s-meet-at-london-book-fair-5-7-april-2022-olympia-london-20220321",title:"Let’s meet at London Book Fair, 5-7 April 2022, Olympia London"},{slug:"50-books-published-as-part-of-intechopen-and-knowledge-unlatched-ku-collaboration-20220316",title:"50 Books published as part of IntechOpen and Knowledge Unlatched (KU) Collaboration"},{slug:"intechopen-joins-the-united-nations-sustainable-development-goals-publishers-compact-20221702",title:"IntechOpen joins the United Nations Sustainable Development Goals Publishers Compact"},{slug:"intechopen-signs-exclusive-representation-agreement-with-lsr-libros-servicios-y-representaciones-s-a-de-c-v-20211123",title:"IntechOpen Signs Exclusive Representation Agreement with LSR Libros Servicios y Representaciones S.A. de C.V"},{slug:"intechopen-expands-partnership-with-research4life-20211110",title:"IntechOpen Expands Partnership with Research4Life"},{slug:"introducing-intechopen-book-series-a-new-publishing-format-for-oa-books-20210915",title:"Introducing IntechOpen Book Series - A New Publishing Format for OA Books"}]},book:{item:{type:"book",id:"2326",leadTitle:null,fullTitle:"Cellulose - Fundamental Aspects",title:"Cellulose",subtitle:"Fundamental Aspects",reviewType:"peer-reviewed",abstract:"Cellulose is destined to play a major role in the emerging bioeconomy. Awareness of the environment and a depletion of fossil fuels are some of the driving forces for looking at forest biomaterials for an alternative source of energy, chemicals and materials. The importance of cellulose is widely recognized world-wide and as such the field of cellulose science is expanding exponentially. Cellulose, the most abundant biopolymer on earth, has unique properties which makes it an ideal starting point for transforming it into useful materials. To achieve this, a solid knowledge of cellulose is essential. As such this book on cellulose, the first in a series of three, is very timely. It deals with fundamental aspect of cellulose, giving the reader a good appreciation of the richness of cellulose properties. Book Cellulose - Fundamental Aspects is a good introduction to books Cellulose - Medical, Pharmaceutical and Electronic Applications and Cellulose - Biomass Conversion , in which applications of cellulose and its conversion to other materials are treated.",isbn:null,printIsbn:"978-953-51-1183-2",pdfIsbn:"978-953-51-4242-3",doi:"10.5772/2705",price:139,priceEur:155,priceUsd:179,slug:"cellulose-fundamental-aspects",numberOfPages:378,isOpenForSubmission:!1,isInWos:1,isInBkci:!0,hash:"de85a5810169999b1c069d863593e56a",bookSignature:"Theo van de Ven and Louis Godbout",publishedDate:"August 28th 2013",coverURL:"https://cdn.intechopen.com/books/images_new/2326.jpg",numberOfDownloads:57597,numberOfWosCitations:345,numberOfCrossrefCitations:122,numberOfCrossrefCitationsByBook:12,numberOfDimensionsCitations:330,numberOfDimensionsCitationsByBook:18,hasAltmetrics:1,numberOfTotalCitations:797,isAvailableForWebshopOrdering:!0,dateEndFirstStepPublish:"December 5th 2011",dateEndSecondStepPublish:"January 9th 2012",dateEndThirdStepPublish:"April 14th 2012",dateEndFourthStepPublish:"July 13th 2012",dateEndFifthStepPublish:"August 12th 2012",currentStepOfPublishingProcess:5,indexedIn:"1,2,3,4,5,6,7,8",editedByType:"Edited by",kuFlag:!1,featuredMarkup:null,editors:[{id:"130492",title:"Dr.",name:"Theo G.M.",middleName:null,surname:"Van De Ven",slug:"theo-g.m.-van-de-ven",fullName:"Theo G.M. 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Moreover he is the Director of a FQRNT Centre for Self-Assembled Chemical Structures (CSACS) and the Director of the Pulp and Paper Research Centre at McGill. 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Elemental form of phosphorus was discovered by German Alchemist, Henning Brandt in 1669 [1, 2]. Phosphorus evolved from seventeenth century as philosopher‘s stone to medicinal phosphorus, flammable phosphorus, essential nutrient in crop production, element of war, cause of eutrophication to its emerging scarcity in recent twenty-first century [2]. Earlier it had been established that adding ground bone increases the crop yield and subsequently Lawes (1842) patented the process of phosphate solublization [3]. With the proposition of Criteria of Essentiality (1939) by Arnon and Stout, it had been established that the roles and functions of each essential nutrient are irreplaceable in plant system. Phosphorus is one of the essential nutrients for plant, which extends to animals also [2]. Around 80% of the world phosphorus is utilized in agriculture [1]. Rock phosphate is one of the basic raw materials for the synthesis of phosphatic fertilizers [4]; however, its nonrenewable nature increases the vulnerability in the long term.
Phosphorus in Indian soils occurs primarily in inorganic form contributing 54–84% of the total phosphorus and organic contributing 16–46% [5]. More than 90% districts in India are classified under low-to-moderate phosphorus availability [5, 6]. The phosphorus status of soil doesn’t necessarily reflects its availability to the crop plants, which is governed by the presence of calcium, iron, and aluminum phosphates; thus, only 30% of the soil phosphorus is utilized by the crop and rest remains in the soil [7]. Therefore, it demands the external application of phosphorus through fertilizers. India imports the high-grade rock phosphate for the synthesis of soluble phosphorus fertilizers. This import cost along with the decontrol of the phosphorus and potassium fertilizers in 1992 has led to the fertilizer application in favor of urea. The turmoil in the Former Soviet region in present times has also increased the vulnerability of the rock phosphate import in near future. Therefore, it is important to increase self-reliance in the field of phosphorus fertilizer application. It has been reported that indigenous rock phosphate if suitable is treated with solubilizing microorganisms or acidulates; there can be increased solublization and availability of phosphorus to the plants and consequent yields [8, 9]. Precipitation of struvite from the agriculture and livestock waste can prove another efficient alternative [10]. The major objectives of the following discussion in chapter are to find out in ways and means to enhance the dependability of phosphorus fertilizer on indigenous resources in general and on farm resources in particular.
Phosphorus constitutes 0.2% (0.1–0.5%) in the plant system. Most of the phosphorus is absorbed in the form of primary orthophosphate ions; however, it is also absorbed in the form of secondary orthophosphate. Phosphorus is not reduced like nitrates and sulfates and rather exists as inorganic phosphate or esterifies to carbon chain through hydroxyl group or attaches to another phosphate group through energy-rich pyrophosphate bonds [11].
The major functions of phosphorus are as structural element of nucleic acids; phospholipids of biomembrane forming bridge between triglyceride and other molecules; energy-rich phosphates and phosphate esters in metabolism; acts as regulator in glycolysis, photosynthesis, respiration, nitrogen assimilation, starch synthesis in chloroplast; detoxification of heavy metals by binding with phytates [11, 12]. Phosphorus control over photosynthesis involves ratio of Pi to triose phosphate; light activation of ribulose bisphosphate carboxylase; activation of fructose-1,6-bisphosphatase, sedoheptulose 1,7-bisphosphatase; ATP/ADP ratio; decreased regeneration of RuBP, and low sink strength under P-deficient conditions leading to reduced photosynthesis [12]. The stored inorganic phosphate in the plant varies according to its availability; however, phosphorus in metabolism remains stable with former acting as buffer [13]. Phosphorus supply is more critical in the early season as observed in various annual crops; however, later stage supplementation improves yield though plant is also able to remobilize the stored phosphates to the grains [13].
The similar role can be played by higher seed phosphorus content where it will supply early seedling growth P requirement leading to better root development and thus giving access to growth limiting water and mineral nutrients [14]. Phosphorus is required more for the nodule growth and nitrogenase activity in the N-fixing plants than for the whole plant growth [15, 16]. Phosphorus supply increases the root diameter and dry weight; however, increased root shoot diameter, root hair length and density, root branching, root hair are observed under P-deficient conditions to increase P acquisition [17, 18].
Before the utilization of phosphate rocks for commercial fertilizer production, bones, corpolites (fossilized animal dung), and guano were the main sources of phosphorus supplementation [3]. It is evident that various sources of phosphorus had been utilized including crop residues; human, animal, fish, and bird waste from Middle East to Japan [2].
The process of super phosphate production by solubilizing bones in sulfuric acid was separately patented by J B Lawes and James Murray in 1842 leading to the development of superphosphate and mixed fertilizer industry [3, 19]. Phosphorus consumption in the post-World War II era was not that much intensified; however, with introduction of Green Revolution after mid-twentieth century, there was increase in use of phosphorus fertilizer along with nitrogen and potassium owing to introduction of the fertilizer-responsive varieties. Both annual phosphate rock extraction and per capita production have seen consistent growth of 3–4% and 1.4%, respectively, with an increase of more than 300% phosphorus fertilizer consumption between 1961 and 2013, however, characterized by a decline post 1989 for a considerable period owing to disintegration of Soviet Union and decreased fertilizer demand in Western Europe and North America [19, 20]. More than 70% of the world phosphorus reserves are located in South Africa, Morocco and Western Sahara and United States [21] and Brazil and Peru in South America; China, Iraq, Israel, and Jordan in Asia; Australia in Oceania; Former Soviet Union in Europe are some major countries continent-wise [22]. The mineral resource extraction follows a mountain/ U-shaped curve where there is initial increase followed by the plateau and then decline in production with time [22]. Phosphorus reserve exploitation has been correlated with time, and it is considered to have “peak P” analogous to the “peak oil” by 2035, after which demand will outstrip supply [3, 23]. With current utilization rate, the phosphate rock reserves are expected to last for 50–400 years [24, 25].
In India, 90% of the rock phosphate required for soluble P fertilizer manufacturing is imported, out of which 80% is imported from Jordan, Morocco, and Egypt [26]. The nonrenewable nature along with its restricted availability to few countries in the world increases the vulnerability of its supplies in case of any untoward incident happens in these nations. The present fertilizer use is also characterized by the imbalance with N:P2O5: K2O use ratio for 2018–19 as 7.1:2.7:1 [27] in place of recommended ratio of 4:2:1. It can be partly attributed to the higher cost of import of phosphorus and potassic fertilizers. Fertilizer subsidy has seen increase of more than 200% since 2010–11 when it reached 1.34 lakh crores in 2020–21 [28]. This becomes more relevant in present times with the turmoil arising in Former Soviet Union region, which is dwindling the resources supply, and the rising protectionism approach of the nations. Therefore, it is important to seek alternate sources of P fertilization in India, which are more indigenous in nature. In addition to reducing the cost of farming, the concept will also support the
India has substantial reserves of low-grade phosphorus [29, 30], which can be utilized as nutrient source. Total resource of rock phosphate in India is estimated at 312.67 mT of which only 45.80 mT constitutes reserve [31]. Of the total resources, only 8% constitutes fertilizer grade and around 37% is classified under low-grade reserve [31]. However, direct application of rock phosphate is only suited for acidic soils, not for the neutral to alkaline soils where pH is more than 5.5–6.0, and is less reactive, of low grade, and has poor agronomic efficiency [32, 33, 34, 35, 36].
The acidulation of these rock phosphates either with the sulfur-based minerals or sulfur or organic matter holds promise to increase its availability in the soil. Addition of rock phosphate to compost or straw can be useful in increasing the phosphorus availability to the crop. The composting process leads to the mobilization of phosphorus in the rock phosphate, in addition to supplying secondary and micronutrients [37].
Partial acidulation of rock phosphate with locally sourced material such as farm residues, manure, and compost is cost-effective technique to make phosphorus available by the release of chelating action forming complexes and humic acid [38].
An important aspect of Rock phosphate solublization is addition of phosphate-solubilizing microorganisms where they release organic acids, chelation, and increase in phosphatase enzyme activity and ion exchange reactions and thus, increase the availability [35, 36, 38]. There are various species of phosphate-solubilizing bacteria including
Sr. No. | Crop | Modification of rock phosphate | Observations | References |
---|---|---|---|---|
1. | Potato-soybean | Rice straw enriched with Rock phosphate, mica and | Significantly higher yield over RDF and control up to 43.3 and 21.5%, respectively in potato and 27.6–46.9% increase in soybean grain yield. | [37] |
2. | Maize- Wheat | Rock phosphate treated with | Significantly higher yield for both inoculants in maize compared with DAP application and for wheat though highest with RP + inoculants, however, at par with DAP | [35] |
3. | Maize-Wheat | Rock phosphate treated with | Significantly higher yield for both maize and wheat compared with control and rock phosphate alone. | [33] |
4. | Soybean- Wheat | Half of recommended P by rock phosphate with | Significantly higher yield compared to control, highest in soybean (3.4% higher than when 100% is through SSP); and almost similar in wheat. | [40] |
5. | Rice-rapeseed-mungbean | Mussorie rock phosphate (MRP) inoculated with | In 3 year experiment, MRP @ 17.5 kg P ha−1 was found significantly superior to control in all 3 years and at par with DAP @ 17.5 kg P ha−1 in third year in terms of rice equivalent yields. | [29] |
6. | Mussorie rock phsophate (MRP) treated with PSB ( | Increase of 136% total biomass compared with absolute control and stevioside and rebaudioside-A recorded 291 and 575% increase, respectively. | [41] |
Research evidences showing utilization of rock phosphate with PSB strain in different crops. The comparison for the crops/cropping system is done with control and commercial phosphorus fertilizer, and summarized findings are mentioned.
Composting is common practice in India; however, it is characterized with lower nutrient concentration. Around 500 mT of crop residues is generated in India of which three-fourth is contributed by the cereals. Enrichment of compost with rock phosphate has twin benefits with enriched nutrient content and comparatively more solublization of phosphate mineral. Addition of rock phosphate is found to not only increase the nutrient content of rice straw compost but also reduce C:N ratio when added in combination of waste mica [42].
Addition of rock phosphate is reported to reduce total C content in composting mass due to dilution effect, increase in total nitrogen content due to net loss of dry matter, and significant increase in phosphate content with higher share of citrate soluble form than water-soluble as it contributed by the rock phosphate and favorable maturity index such as C/N ratio < 20 except for tree leaf compost due to higher cellulose, hemicelluloses, and lignin content; water-soluble carbon to organic nitrogen ratio < 0.5; nitrification index> 0.16 [43, 44, 45].
Higher reduction in C:N and C:P ratio and increase in water-soluble P were recorded in rock-phosphorus-enriched manure when inoculated with phosphate-solubilizing microorganisms [34] with citric, malic, oxalic, and formic acids with citric acid having maximum P-solubilizing efficiency [46]. Higher rate of nitrogen and sulfur mineralization has been observed with rock-phosphate-enriched compost along with 50% NPK after 120 days and significant improvement in available P with progress of incubation period indicating its availability for longer period of time compared with 100% NPK [45, 47].
In cropping systems, residual effect of enriched compost is found to significantly increase the total phosphorus, enhance grain and stover yield and P uptake and its use efficiency compared with similar P dose from phosphorus fertilizer [45, 48]. Rock-phosphate-enriched compost reported significantly highest grain yield and P uptake in cowpea when compared with other treatments including P fertilizer as sole source [49].
Application of rock-phosphate-enriched compost along with RDF sharing equal to the phosphorus dose in rice recorded significantly higher labile P and grain yield, only at par with treatment having total phosphorus dose from RDF [49]. Phosphorus-enriched manure has significant effect on the number of nodules, their fresh and dry weight in legume crop and yields at par with soluble fertilizer when these are combined with soluble fertilizer in equal proportion [50, 51]. Among all the phosphorus-enriched manures, highest pod and stover yield of mung bean has been reported with that inoculated with
Sr. No. | Crop | Particular of PEC | Observations | References |
---|---|---|---|---|
1. | Blackgram | PEC prepared with rock phosphate, mica, maize straw and FYM along with PSB inoculation. | Significant seed yield recorded upto 4 t ha−1 with 15.21% increase over control and at par with 6 t ha−1. | [53] |
2. | Cowpea | Rock phosphate was added to biowaste according to P2O5 requirement of cowpea | 83% yield gain over control and 55% gain over soluble P fertilizer | [54] |
3. | Chickpea and lentil | Rock phosphate was added to composting material consisting of fruit peels and vegetable waste | Nodules plant−1, fresh and dry weight of nodules was higher and 15% higher yields compared to control (P fertilizer). | [51] |
4. | Wheat-Greengram rotation | Rock phosphate was added to rice residue, mustard leaf residue and tree leaf separately | No significant difference with different composts on grain yields for both crops. Enriched compost of rice residue reported highest yields and residual effect on successive greengram. | [44] |
5. | Rice | Rock phosphate was added to rice straw and aerobic composting was done. | Enriched compost along with chemical fertilizer (50:50) reported numerically higher yield compared when P was supplied through fertilizer alone. | [49] |
Effect of phospho-enriched compost on various crops/cropping system. Source of organic matter in compost is indicated and yields as well as nodule growth are mentioned in comparison to control/soluble phosphatic fertilizers.
Rock phosphate is made to react with sulfuric acid for production of single super phosphate. Similarly, gypsum can also serve as source of partial acidulation of rock phosphate. Total reserve of gypsum in India stands at 36.6 mT with 80% of the total reserve under fertilizer grade and Rajasthan, Jammu & Kashmir, Tamil Nadu, and Gujarat as the major states [31]. Low-grade gypsum is utilized as soil amendment for the sodic soils.
It can also be utilized as an acidulate for the rock phosphate treatment. In addition to the extraction of phosphorus from rock phosphates, gypsum serves as source of calcium and sulfur to the crop plants. Among the various acidulates tested with rock phosphate in various
Acidulation of rock phosphate with gypsum in wheat crop reported highest though nonsignificant among all acidulates and more than the treatment having soluble P fertilizer source [56]. Gypsum along with PSB had significantly higher yield sweet pepper yield when applied with rock phosphate compared with its use without gypsum [57].
Struvite, a crystalline mineral having formula MgNH4PO4.6H2O, has equimolar concentration of phosphate, ammonium, and magnesium ions [58, 59] and thus can prove as an alternate source of phosphorus. Struvite can be crystallized from the wastewaters of agriculture, sewage effluents, industrial streams, animal waste, and urine [58]. It has various properties, which make it suitable for use in agriculture (Table 3).
Sr. No. | Parameter | Struvite characteristics |
---|---|---|
1. | Nutrient content | Rich in nitrogen, phosphorus, and magnesium |
2. | Pattern of release | Slow release |
3. | Influence of pH | Not soluble in alkaline soil and effective in neutral and acidic soils |
4. | Suitability | Suitable for crop requiring high Mg and P doses |
5. | Comparative advantages | Significantly higher dissolution rate compared with other P minerals such as fluorapatite and variscite due to weak H bonds; N leaching rates are significantly lower when compared with other N fertilizers |
The major characteristics of struvite as fertilizer in relation to crop production [60].
Around 85% of the mined phosphorus finds way in the water bodies through soil erosion, agriculture, and livestock waste, which promotes eutrophication; therefore, struvite precipitation can be useful to reduce this pollution [61]. Two major conditions for struvite crystallization are pH between 8.5 and 9.5 with maximum at 9.5, which reduces further, and the concentration of three ions in equimolar concentration and above struvite solubility limit (>0.2 gl−1) [58, 59, 60, 61, 62]. P content of the struvite remains in the range of 11–26% depending on the source, of which 1–2% is water-soluble and slow release in nature [60]. According to an estimate, taking stock of cow urine generated in India, 12000 tonnes of struvite can be produced daily and enlarged scope when considered for all the livestock population [61]. Similar potential exists for the industrial and domestic waste water in India. Globally, full-scale struvite recovery plants are functional in countries of Europe, North America, and Japan [61].
The extraction of struvite has been from the various sources. It is now utilized as the fertilizers or mixed with other fertilizers for value addition having good market and used in crops such as paddy, vegetables, and flowers and even reported to increase quality of paddy [63]. Performance of crops when applied with struvite when compared with chemical fertilizers is presented in Table 4.
Sr. No. | Source | Control fertilizer | Crop | Remarks | Reference |
---|---|---|---|---|---|
1. | Distillery waste water | DAP | 15% increase in dry weight, 3.2% increase in P uptake, 49% increase in chlorophyll content. | [64] | |
2. | Commercial | Mineral (KPO4H2) | Application of struvite more than 5 g plant−1 leads to higher yield than mineral fertilizer. | [59] | |
3. | Human urine | DAP | Seed yield and other yield attributing characteristics were significantly higher with DAP inoculated with Nitrogen fixing bacteria, however, similar inoculation of struvite reported significantly higher parameters than DAP alone. | [62] | |
4. | Livestock wastewater | Urea and Magnesium sulfate | It was superior to control fertilizer for all the vegetables. The increase in dosage was less inhibitory than control fertilizer. | [65] | |
5. | Manure | Mono Ammonium Phosphate (MAP) | At lower rates, the mean biomass yields were similar to control which decreased at higher rates; Quadratic response for P uptake for struvite with increase in dose whereas it was linear with MAP. | [66] | |
6. | Commercial | Struvite and MAP were mixed in different ratios in gradation. | Upto 50% struvite blending reported statistically similar biomass which decreased further and lowest with 100% struvite in maize and upto 25% for soybean, however, it was 50% for only root biomass for it. | [67] | |
7. | Cow urine | DAP | At higher rates struvite application reported significant increase in the leaf area, stem and root dry weight and total chlorophyll content. | [58] |
Performance of struvite as phosphorus source in various crops. Source of extraction is mentioned and commercial fertilizers are used as control. The effect of struvite on chlorophyll is also mentioned as it is source of magnesium.
Steel slag is the by-product of steel industry. In total, 150–180 kg steel slag is generated for 1 ton of steel production in India [68] and has been estimated at 39 mT for 2017–18 [69]. Per capita steel consumption is expected to increase more than double between 2018 and 2030–31. Thus, there exists a huge potential of generation of steel slag. In countries such as United States, Japan, and European countries, more than 80% of steel slag is recycled, whereas for countries such as China and India, it is less than 30% [70]. While slag is rich source of calcium, silicon, iron, it also reported to contain up to 4% phosphorus [71]. Application of slag is reported to increase the dry weight, yield, and phosphorus uptake in maize [72]. In addition to this, application of steel slag is advantageous in increasing the quality of the produce, source of silica to the crops, promotes immobilization of heavy metals, reduction of disease incidence in crops, and promoting carbon sequestration and reducing methane emission and can act as potential liming material [73, 74, 75, 76, 77, 78].
Phosphorus is a valuable element in relation to agriculture; however, its depleting reserve presents a potential challenge to nations across the world. India is at much vulnerable position as there is huge import dependency for its raw material. Keeping the situation in view, Government of India has introduced the action plan to make country
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Kerrigan"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"8450",title:"Beta Thalassemia",subtitle:null,isOpenForSubmission:!1,hash:"976f72013cd8e78d8f65bfb1f51f0146",slug:"beta-thalassemia",bookSignature:"Marwa Zakaria and Tamer Hassan",coverURL:"https://cdn.intechopen.com/books/images_new/8450.jpg",editedByType:"Edited by",editors:[{id:"187545",title:"Prof.",name:"Marwa",middleName:null,surname:"Zakaria",slug:"marwa-zakaria",fullName:"Marwa Zakaria"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"8316",title:"Normal and Malignant B-Cell",subtitle:null,isOpenForSubmission:!1,hash:"a12608fa8d5fdb33c956f967974a4ef1",slug:"normal-and-malignant-b-cell",bookSignature:"Mourad Aribi",coverURL:"https://cdn.intechopen.com/books/images_new/8316.jpg",editedByType:"Edited by",editors:[{id:"40046",title:"Prof.",name:"Mourad",middleName:null,surname:"Aribi",slug:"mourad-aribi",fullName:"Mourad Aribi"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"7181",title:"Erythrocyte",subtitle:null,isOpenForSubmission:!1,hash:"267d215004c995048557176978208b15",slug:"erythrocyte",bookSignature:"Anil Tombak",coverURL:"https://cdn.intechopen.com/books/images_new/7181.jpg",editedByType:"Edited by",editors:[{id:"202814",title:"Associate Prof.",name:"Anil",middleName:null,surname:"Tombak",slug:"anil-tombak",fullName:"Anil Tombak"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"7874",title:"Germ Line Mutations Associated Leukemia",subtitle:null,isOpenForSubmission:!1,hash:"cb407bb000c66ebe6172b9dc3d6f9fb4",slug:"germ-line-mutations-associated-leukemia",bookSignature:"Zhan He Wu",coverURL:"https://cdn.intechopen.com/books/images_new/7874.jpg",editedByType:"Edited by",editors:[{id:"226446",title:"Dr.",name:"Zhan He",middleName:null,surname:"Wu",slug:"zhan-he-wu",fullName:"Zhan He Wu"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"6905",title:"Blood Groups",subtitle:null,isOpenForSubmission:!1,hash:"545ab2a5b402edec6332c7d632eba398",slug:"blood-groups",bookSignature:"Anil Tombak",coverURL:"https://cdn.intechopen.com/books/images_new/6905.jpg",editedByType:"Edited by",editors:[{id:"202814",title:"Associate Prof.",name:"Anil",middleName:null,surname:"Tombak",slug:"anil-tombak",fullName:"Anil Tombak"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"7125",title:"Iron Deficiency Anemia",subtitle:null,isOpenForSubmission:!1,hash:"25d82a6ea6c9d80b195bb40aad06be49",slug:"iron-deficiency-anemia",bookSignature:"Luis Rodrigo",coverURL:"https://cdn.intechopen.com/books/images_new/7125.jpg",editedByType:"Edited by",editors:[{id:"73208",title:"Prof.",name:"Luis",middleName:null,surname:"Rodrigo",slug:"luis-rodrigo",fullName:"Luis Rodrigo"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}}],booksByTopicTotal:40,seriesByTopicCollection:[],seriesByTopicTotal:0,mostCitedChapters:[{id:"39123",doi:"10.5772/50698",title:"Measurement Techniques for Red Blood Cell Deformability: Recent Advances",slug:"measurement-techniques-for-red-blood-cell-deformability-recent-advances",totalDownloads:7139,totalCrossrefCites:24,totalDimensionsCites:67,abstract:null,book:{id:"2607",slug:"blood-cell-an-overview-of-studies-in-hematology",title:"Blood Cell",fullTitle:"Blood Cell - An Overview of Studies in Hematology"},signatures:"Youngchan Kim, Kyoohyun Kim and YongKeun Park",authors:[{id:"143622",title:"Prof.",name:"YongKeun",middleName:null,surname:"Park",slug:"yongkeun-park",fullName:"YongKeun Park"},{id:"143623",title:"Mr.",name:"Kyoohyun",middleName:null,surname:"Kim",slug:"kyoohyun-kim",fullName:"Kyoohyun Kim"},{id:"143624",title:"Mr.",name:"Sangyeon",middleName:null,surname:"Cho",slug:"sangyeon-cho",fullName:"Sangyeon Cho"}]},{id:"31178",doi:"10.5772/38961",title:"Physiological Factors in the Interpretation of Equine Hematological Profile",slug:"haematological-profile-of-the-horse-phisiological-factors-influencing-equine-haematology",totalDownloads:10747,totalCrossrefCites:15,totalDimensionsCites:35,abstract:null,book:{id:"1830",slug:"hematology-science-and-practice",title:"Hematology",fullTitle:"Hematology - Science and Practice"},signatures:"K. Satué, A. Hernández and A. Muñoz",authors:[{id:"125292",title:"Dr.",name:"Katy",middleName:null,surname:"Satué Ambrojo",slug:"katy-satue-ambrojo",fullName:"Katy Satué Ambrojo"}]},{id:"55356",doi:"10.5772/intechopen.68617",title:"Neutrophils in Rheumatoid Arthritis: A Target for Discovering New Therapies Based on Natural Products",slug:"neutrophils-in-rheumatoid-arthritis-a-target-for-discovering-new-therapies-based-on-natural-products",totalDownloads:2057,totalCrossrefCites:9,totalDimensionsCites:12,abstract:"Rheumatoid arthritis (RA) is a systemic autoimmune disorder with an important inflammatory component in joints. Neutrophils are the most abundant leukocytes in inflamed joints, and play an essential role in the initiation and progression of RA. Neutrophil effector mechanisms include the release of proinflammatory cytokines, reactive oxygen and nitrogen species (ROS and RNS), and granules containing degradative enzymes, which can cause further damage to the tissue and amplify the neutrophil response. Therefore, the modulation of neutrophil migration and functions is a potential target for pharmacological intervention in arthritis. The pharmacologic treatment options for RA are diverse. The current treatments are mostly symptomatic and have side effects, high costs, and an increased risk of malignancies. Because of these limitations, there is a growing interest in the use of natural products as therapies or adjunct therapies. Herbal products have attracted considerable interest over the past decade because of their multiple beneficial effects such as their antioxidant, anti-inflammatory, antiproliferative, and immunomodulatory properties. This chapter focuses on the role of neutrophils in the pathogenesis of arthritis and the action of substances from natural products as putative antirheumatic therapies.",book:{id:"5834",slug:"role-of-neutrophils-in-disease-pathogenesis",title:"Role of Neutrophils in Disease Pathogenesis",fullTitle:"Role of Neutrophils in Disease Pathogenesis"},signatures:"Elaine Cruz Rosas, Luana Barbosa Correa and Maria das Graças\nHenriques",authors:[{id:"64332",title:"Dr.",name:"Maria Das Graças",middleName:null,surname:"Henriques",slug:"maria-das-gracas-henriques",fullName:"Maria Das Graças Henriques"},{id:"197932",title:"Dr.",name:"Elaine",middleName:"Cruz",surname:"Rosas",slug:"elaine-rosas",fullName:"Elaine Rosas"},{id:"199677",title:"MSc.",name:"Luana",middleName:null,surname:"Correa",slug:"luana-correa",fullName:"Luana Correa"}]},{id:"46041",doi:"10.5772/57335",title:"An Insight into the Abnormal Fibrin Clots — Its Pathophysiological Roles",slug:"an-insight-into-the-abnormal-fibrin-clots-its-pathophysiological-roles",totalDownloads:3892,totalCrossrefCites:4,totalDimensionsCites:11,abstract:null,book:{id:"3836",slug:"fibrinolysis-and-thrombolysis",title:"Fibrinolysis and Thrombolysis",fullTitle:"Fibrinolysis and Thrombolysis"},signatures:"Payel Bhattacharjee and Debasish Bhattacharyya",authors:[{id:"88185",title:"Prof.",name:"Debasish",middleName:null,surname:"Bhattacharyya",slug:"debasish-bhattacharyya",fullName:"Debasish Bhattacharyya"},{id:"170045",title:"Ms.",name:"Payel",middleName:null,surname:"Bhattacharjee",slug:"payel-bhattacharjee",fullName:"Payel Bhattacharjee"}]},{id:"39110",doi:"10.5772/48250",title:"Laboratory Reference Intervals in Africa",slug:"laboratory-reference-intervals-in-africa",totalDownloads:4489,totalCrossrefCites:0,totalDimensionsCites:10,abstract:null,book:{id:"2607",slug:"blood-cell-an-overview-of-studies-in-hematology",title:"Blood Cell",fullTitle:"Blood Cell - An Overview of Studies in Hematology"},signatures:"Clement E. Zeh, Collins O. Odhiambo and Lisa A. Mills",authors:[{id:"141066",title:"Dr",name:"Clement",middleName:null,surname:"Zeh",slug:"clement-zeh",fullName:"Clement Zeh"}]}],mostDownloadedChaptersLast30Days:[{id:"66797",title:"Blood Transfusion Reactions",slug:"blood-transfusion-reactions",totalDownloads:2617,totalCrossrefCites:0,totalDimensionsCites:0,abstract:"Blood transfusion reaction/adverse transfusion reactions could be fatal/severe or mild, immediate or delayed, immunological or nonimmunological, and infectious or noninfectious, and attention is paid particularly to the incidence, possible causes and pathophysiology, clinical features, and management of each type with the aim of improving awareness and raising consciousness towards improving blood safety and judicious use of blood so as to forestall these blood transfusion reactions as much as possible. This chapter serves as a synopsis to adverse blood reactions, which are very common but apparently more often under-recognized and/or under-reported particularly in developing countries. This should sharpen the consciousness of all health practitioners involved in blood transfusion services towards taking measures at preventing transfusion reactions right from donor selection up to the infusion of blood into the recipients.",book:{id:"6905",slug:"blood-groups",title:"Blood Groups",fullTitle:"Blood Groups"},signatures:"John Ayodele Olaniyi",authors:[{id:"202764",title:"Dr.",name:"John",middleName:null,surname:"Olaniyi",slug:"john-olaniyi",fullName:"John Olaniyi"}]},{id:"49387",title:"Thalassemia — From Genotype to Phenotype",slug:"thalassemia-from-genotype-to-phenotype",totalDownloads:4877,totalCrossrefCites:2,totalDimensionsCites:3,abstract:"Thalassemia encompasses serious diseases with complex pathophysiology that is difficult to explain since it is considered a group of defects with similar clinical effects, still not a single disorder.",book:{id:"4729",slug:"inherited-hemoglobin-disorders",title:"Inherited Hemoglobin Disorders",fullTitle:"Inherited Hemoglobin Disorders"},signatures:"Ghada Y. El-Kamah and Khalda S. Amr",authors:[{id:"58735",title:"Prof.",name:"Ghada",middleName:null,surname:"El-Kamah",slug:"ghada-el-kamah",fullName:"Ghada El-Kamah"},{id:"176872",title:"Prof.",name:"Khalda",middleName:null,surname:"Amr",slug:"khalda-amr",fullName:"Khalda Amr"}]},{id:"51831",title:"Disorders Mimicking Myelodysplastic Syndrome and Difficulties in its Diagnosis",slug:"disorders-mimicking-myelodysplastic-syndrome-and-difficulties-in-its-diagnosis",totalDownloads:4511,totalCrossrefCites:1,totalDimensionsCites:6,abstract:"Myelodysplastic morphology of blood cells can be encountered not only in myelodysplastic syndrome (MDS) but also in nonclonal disorders like viral, bacterial, parasitic infections, juvenile rheumatoid arthritis, polyarteritis nodosa, immune thrombocytopenic purpura (ITP), iron deficiency anemia, megaloblastic anemia, dysgranulopoietic neutropenia, congenital neutropenia, cases with microdeletion 22q11.2, malignant lymphoma, after administration of granulocyte colony stimulating factor, chemotherapy, steroids, smoking, alcohol, posttransplantation, copper deficiency also, together with or without cytopenia. Absence of cytogenetic abnormality in 50–70% of cases with MDS, some overlapping morphological and/or pathophysiological features make it challenging to differentiate between MDS and other diseases/disorders like aplastic anemia, refractory ITP, copper deficiency. Transient genetic abnormalities including monosomy 7 in megaloblastic anemia; increased immature myeloid cells in bone marrow of cases with copper, vitamin B12, or folic acid deficiency in the setting of cytopenia and dysmorphism may also lead to the misdiagnosis of MDS. On the other hand, there are also cases of transient MDS. In this chapter, a literature is be presented to draw attention of the readers on the disorders that mimic MDS. Additionally, our personal experiences are also be shared. Awareness of disorders mimicking MDS may prevent over- or underdiagnosis of MDS.",book:{id:"5276",slug:"myelodysplastic-syndromes",title:"Myelodysplastic Syndromes",fullTitle:"Myelodysplastic Syndromes"},signatures:"Lale Olcay and Sevgi Yetgin",authors:[{id:"184156",title:"Prof.",name:"Lale",middleName:null,surname:"Olcay",slug:"lale-olcay",fullName:"Lale Olcay"}]},{id:"64871",title:"Diagnosis and Classification of Myelodysplastic Syndrome",slug:"diagnosis-and-classification-of-myelodysplastic-syndrome",totalDownloads:3212,totalCrossrefCites:0,totalDimensionsCites:1,abstract:"Myelodysplastic syndrome (MDS) is a clonal hematopoietic stem cell disorder characterized by morphological dysplastic changes in one or more of the major hematopoietic cell lines. MDS can present with varying degrees of single or multiple cytopenias including neutropenia, anemia and thrombocytopenia. Presentation of MDS can range from asymptomatic to life threatening. MDS diagnosis and classification present important challenges, particularly in the distinction from benign conditions. French-American-British (FAB) classification proposed a classification based on easily obtainable laboratory information and was recommended in early and as modified by guidelines of new classification of World Health Organization (WHO). The strategy of diagnostic laboratory in MDS depends on morphological changes and is based on existence of dysplastic changes in the peripheral blood and bone marrow including peripheral blood smear, bone marrow aspirate smear and bone marrow trephine biopsy. The correct morphological interpretation and the use of cytogenetics, immunophenotyping, immunohistochemistry and molecular analysis will give valuable information on diagnosis and prognosis.",book:{id:"7138",slug:"recent-developments-in-myelodysplastic-syndromes",title:"Recent Developments in Myelodysplastic Syndromes",fullTitle:"Recent Developments in Myelodysplastic Syndromes"},signatures:"Gamal Abdul Hamid, Abdul Wahab Al-Nehmi and Safa Shukry",authors:[{id:"36487",title:"Prof.",name:"Gamal",middleName:null,surname:"Abdul Hamid",slug:"gamal-abdul-hamid",fullName:"Gamal Abdul Hamid"},{id:"273724",title:"Dr.",name:"Safa",middleName:null,surname:"Shukry",slug:"safa-shukry",fullName:"Safa Shukry"},{id:"277511",title:"Dr.",name:"Abdulwahab",middleName:null,surname:"Al-Nehmi",slug:"abdulwahab-al-nehmi",fullName:"Abdulwahab Al-Nehmi"}]},{id:"70780",title:"Laboratory Diagnosis of β-Thalassemia and HbE",slug:"laboratory-diagnosis-of-thalassemia-and-hbe",totalDownloads:1400,totalCrossrefCites:1,totalDimensionsCites:2,abstract:"β-Thalassemia and HbE, each, is a syndrome resulted from quantitative and qualitative defects of β-globin chain, respectively. In addition to history retrieve and physical examination, diagnosis of these disorders requires laboratory information. Laboratory tests that are conventionally performed to diagnose the β-thalassemia and HbE are classified into two groups, based on the purposes, including the screening tests and confirmatory tests. The screening tests are aimed to screen for carriers of the β-thalassemia and HbE, while confirmatory tests are the tests performed to definitely diagnose these disorders. This chapter will explain all of these tests, the information of which will be useful for those who are working and interested in the β-thalassemia and HbE.",book:{id:"8450",slug:"beta-thalassemia",title:"Beta Thalassemia",fullTitle:"Beta Thalassemia"},signatures:"Thanusak Tatu",authors:null}],onlineFirstChaptersFilter:{topicId:"183",limit:6,offset:0},onlineFirstChaptersCollection:[{id:"82161",title:"Blood Groups More than Inheritance of Antigenic Substances: Susceptibility to Some Diseases",slug:"blood-groups-more-than-inheritance-of-antigenic-substances-susceptibility-to-some-diseases",totalDownloads:7,totalDimensionsCites:0,doi:"10.5772/intechopen.104593",abstract:"Blood group antigens represent polymorphic traits inherited among individuals and populations. The objective of this chapter is to review articles that have reported; the association between blood group antigens and susceptibility to some diseases. Findings showed that O blood group had a greater frequency of severe infections such as E coli, cholera and blood group A was associated with incidence of smallpox and some bacterial infections. These are principally based on presence or absence of “H-like” and “A and B-like” antigens markers. Antigens A, B and H are connected to N-glycans of vWF and reduces the half-life of the protein (10 hours) for group O while non-O groups, 25 hours. The loss of A, B, and H antigens as malignancy progresses was linked to potential metastasis. Similarly, some tumors have A or A-like antigens this explains the propensity of group A to develop tumors. Blood type incompatibility between mother and foetus sensitizes the mother to develop alloantibodies that could potentially cause death of the foetus in utero, a condition known hydrops. Reviewed articles have reported close link between blood group antigens and susceptibility diseases. More studies are required to rationalize the mechanism associated to this.",book:{id:"10728",title:"Blood Groups - More Than Inheritance of Antigenic Substances",coverURL:"https://cdn.intechopen.com/books/images_new/10728.jpg"},signatures:"Williams Bitty Azachi and Kuschak Mathias Dakop"},{id:"80344",title:"RH Groups",slug:"rh-groups",totalDownloads:25,totalDimensionsCites:0,doi:"10.5772/intechopen.102421",abstract:"In 1939, a mother gave birth to a stillborn baby and underwent blood transfusion with ABO-matched blood from her husband. This resulted in a hemolytic transfusion reaction (HTR). Levine and Stetson postulated that a novel antigen was present in the baby and father, which was absent in the mother. Therefore, the mother’s immune system recognized this antigen and produced antibodies against it. This condition has been known as the hemolytic disease of the newborn for a long period of time. Since the antenatal management of the fetus has been developed, the term has been modified to hemolytic disease of the fetus and newborn (HDFN). This case led to the discovery of the antibody against the first antigen of the RH blood group system, the D antigen. To date, 56 antigens have been recognized within the RH blood group system. The five main antigens are D, C, c, E, and e. As observed in the above-mentioned case, the antibodies against these antigens are implicated in HTR and HDFN.",book:{id:"10728",title:"Blood Groups - More Than Inheritance of Antigenic Substances",coverURL:"https://cdn.intechopen.com/books/images_new/10728.jpg"},signatures:"Amr J. Halawani"},{id:"80254",title:"Neutrophil-Specific Antigens: Immunobiology, Genetics and Roles in Clinical Disorders",slug:"neutrophil-specific-antigens-immunobiology-genetics-and-roles-in-clinical-disorders",totalDownloads:34,totalDimensionsCites:0,doi:"10.5772/intechopen.102431",abstract:"Neutrophils are the most abundant nucleated cells in blood circulation and play important roles in the innate and adaptive immune responses. Neutrophil-specific antigens, only expressed on neutrophils, are glycoproteins originally identified in studies on neonatal neutropenia due to fetal-maternal incompatibility and autoimmune neutropenia of infancy. The most investigated neutrophil–specific antigens are the NA and NB antigens that their incompatibilities also cause transfusion-induced febrile reactions and acute lung injury, a potentially fatal reaction, and in bone marrow transplantation, causing graft rejection. NA antigens are members of the immunoglobulin superfamily and are low-affinity Fc-receptors FcγRIIIb (CD16b). Fc receptors connect the F(ab), the antigen-binding fragment of the antibody molecules, to neutrophils and lead them to recognize and phagocytize the targeted antigens. The NB (CD177) antigen belongs to the urokinase-type Plasminogen Activator Receptor Superfamily (uPAR, CD59, Ly6), but its specific functions have not been fully determined. It is known, however, that NB antigen binds proteinase-3 (PR3 to the neutrophil membrane), a serine protease. In clinical studies, it was also demonstrated that NB expression is highly elevated in Polycythemia Vera and is unexpectedly expressed in some cancer tissues. Neutrophil-specific antigens are examples of antigens that have important biological and clinical activities beyond antigenicity.",book:{id:"10728",title:"Blood Groups - More Than Inheritance of Antigenic Substances",coverURL:"https://cdn.intechopen.com/books/images_new/10728.jpg"},signatures:"Parviz Lalezari and Behnaz Bayat"},{id:"80716",title:"The ABO Blood Group System and Plasmodium falciparum (Pf ) Infection in Three Ethnic Groups Living in the Stable and Seasonal Malaria Transmission Areas of Burkina Faso (BF)",slug:"the-abo-blood-group-system-and-plasmodium-falciparum-pf-infection-in-three-ethnic-groups-living-in-t",totalDownloads:92,totalDimensionsCites:0,doi:"10.5772/intechopen.102475",abstract:"Genetic factors, including red blood cell polymorphisms, influence the severity of disease due to infection with Plasmodium falciparum (Pf). Studies show that these genetic factors associated with malaria susceptibility or resistance vary geographically, ethnically, and racially. We performed cross-sectional surveys in population living in rural villages from three ethnic groups. The blood group (BG) was determined genetically using two polymorphisms (rs8176719 and rs8176746). Out of 548 participants, 29.7% were Mossi, 38.2% were Fulani, and 32.1% were Rimaibe. The distribution of BG was, respectively, A: 25.5%, B: 26.6%, AB: 7.3%, and O: 40.5%. BG O was not only the common blood type overall, but was higher in Fulani (52.6%) than others. Fulani was associated with a reduced risk of infection and lower parasite densities than sympatric populations. The subjects with non-O blood were less susceptible to malaria infection. An association between ethnicity and malaria infection during the high transmission season as well as an association between the non-O blood group and malaria infections according to ethnicity was found. This was also true when ethnic groups were considered separately. Our results have demonstrated that the Fulani are not only less susceptible to Pf malaria infection, but when infected have lower parasite densities. Individuals with non-O blood are at lower risk of infection.",book:{id:"10728",title:"Blood Groups - More Than Inheritance of Antigenic Substances",coverURL:"https://cdn.intechopen.com/books/images_new/10728.jpg"},signatures:"Edith Christiane Bougouma, Alphonse Ouedraogo and Sodiomon Bienvenu Sirima"},{id:"80474",title:"ABO Blood Group and Thromboembolic Diseases",slug:"abo-blood-group-and-thromboembolic-diseases",totalDownloads:40,totalDimensionsCites:0,doi:"10.5772/intechopen.102757",abstract:"Thromboembolic diseases are usually inherited in the family. The tendency to repeat in an individual is a phenomenon that allows it to be studied. The inheritance and recurrence of thromboembolic diseases, of course, have individual risk factors for this occurrence. In the past, the ABO blood group was only needed for transfusion and organ transplant therapy. Over time, scientists think that blood type is a risk factor for certain diseases, including thromboembolism. Many studies divide between type O and non-O blood groups, both of which are distinguished by the presence of antigens on the cell surface and antibodies in the plasma of individuals. Type O does not have A, B antigens but has antibodies against A, B antigens, and vice versa for the non-O type. Many studies have shown that the non-O blood group has a risk factor for thromboembolic diseases, commonly due to higher levels of von Willebrand factor (VWF) and factor VIII (FVIII). These thromboembolic events can occur in arteries or venous. Thromboembolic manifestations are often associated with cardiovascular diseases for arterial thrombosis; and deep vein thrombosis (DVT) and pulmonary embolism (PE) for venous thromboembolism (VTE).",book:{id:"10728",title:"Blood Groups - More Than Inheritance of Antigenic Substances",coverURL:"https://cdn.intechopen.com/books/images_new/10728.jpg"},signatures:"Yetti Hernaningsih"},{id:"78997",title:"ABO Blood Groups and Risk of Glioma",slug:"abo-blood-groups-and-risk-of-glioma",totalDownloads:59,totalDimensionsCites:0,doi:"10.5772/intechopen.100566",abstract:"Gliomas are one of the most common primary brain tumors and the etiology of gliomas remains unknown in most cases. The aim of this case–control study was to investigate possible association between incidence in relation to glioma and certain blood groups. This study included 100 histopathologically verified cases of glioma and 200 age and sex-matched controls without malignant diseases that were admitted to the same hospital. The results revealed that the patients with group AB were at 3.5-fold increased risk of developing glioma compared to the patients with other ABO blood groups. In this particular study, there was more male patients with glioma with the blood group AB. However, mechanisms that explain the relationship between the blood groups ABO and a cancer risk are unclear. Several hypotheses have been proposed, including the one with a modulatory role of blood group ABO antigens. In addition, the blood group ABO system regulates the level of circulating proinflammatory and adhesion molecules which play a significant role in the tumorigenesis process. Additionally, the recent discovery that includes the von Willebrand factor (vWF) as an important modulator of angiogenesis and apoptosis provides one plausible explanation as regards the role of the blood group ABO in the tumorigenesis process. To our knowledge, this is the first study that examined the relationship of blood group in patients diagnosed with glioma among the Serbian population. Moreover, for the first time our study results suggested that blood group AB increased the risk of glioma. The results of this study suggested that the blood group AB could be one of hereditary factors which had an influence on the occurrence of glioma. 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Currently, he is a professor of Orthodontics. He holds a Certificate of Advanced Study type A in Technology of Biomaterials used in Dentistry (1995); Certificate of Advanced Study type B in Dento-Facial Orthopaedics (1997) from the Faculty of Dental Surgery, University Denis Diderot-Paris VII, France; Diploma of Advanced Study (DESA) in Biocompatibility of Biomaterials from the Faculty of Medicine and Pharmacy of Casablanca (2002); Certificate of Clinical Occlusodontics from the Faculty of Dentistry of Casablanca (2004); University Diploma of Biostatistics and Perceptual Health Measurement from the Faculty of Medicine and Pharmacy of Casablanca (2011); and a University Diploma of Pedagogy of Odontological Sciences from the Faculty of Dentistry of Casablanca (2013). 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He also obtained an MSc in Molecular and Genetic Medicine, and a Ph.D. in Clinical Immunology and Human Genetics from the University of Sheffield, UK. He also completed a short-term fellowship in Pediatric Clinical Immunology and Bone Marrow Transplantation at Newcastle General Hospital, England. Dr. Rezaei is a Full Professor of Immunology and Vice Dean of International Affairs and Research, at the School of Medicine, Tehran University of Medical Sciences, and the co-founder and head of the Research Center for Immunodeficiencies. He is also the founding president of the Universal Scientific Education and Research Network (USERN). Dr. Rezaei has directed more than 100 research projects and has designed and participated in several international collaborative projects. He is an editor, editorial assistant, or editorial board member of more than forty international journals. He has edited more than 50 international books, presented more than 500 lectures/posters in congresses/meetings, and published more than 1,100 scientific papers in international journals.",institutionString:"Tehran University of Medical Sciences",institution:{name:"Tehran University of Medical Sciences",country:{name:"Iran"}}},{id:"180733",title:"Dr.",name:"Jean",middleName:null,surname:"Engohang-Ndong",slug:"jean-engohang-ndong",fullName:"Jean Engohang-Ndong",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/180733/images/system/180733.png",biography:"Dr. Jean Engohang-Ndong was born and raised in Gabon. After obtaining his Associate Degree of Science at the University of Science and Technology of Masuku, Gabon, he continued his education in France where he obtained his BS, MS, and Ph.D. in Medical Microbiology. He worked as a post-doctoral fellow at the Public Health Research Institute (PHRI), Newark, NJ for four years before accepting a three-year faculty position at Brigham Young University-Hawaii. Dr. Engohang-Ndong is a tenured faculty member with the academic rank of Full Professor at Kent State University, Ohio, where he teaches a wide range of biological science courses and pursues his research in medical and environmental microbiology. Recently, he expanded his research interest to epidemiology and biostatistics of chronic diseases in Gabon.",institutionString:"Kent State University",institution:{name:"Kent State University",country:{name:"United States of America"}}},{id:"188773",title:"Prof.",name:"Emmanuel",middleName:null,surname:"Drouet",slug:"emmanuel-drouet",fullName:"Emmanuel Drouet",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/188773/images/system/188773.png",biography:"Emmanuel Drouet, PharmD, is a Professor of Virology at the Faculty of Pharmacy, the University Grenoble-Alpes, France. As a head scientist at the Institute of Structural Biology in Grenoble, Dr. Drouet’s research investigates persisting viruses in humans (RNA and DNA viruses) and the balance with our host immune system. He focuses on these viruses’ effects on humans (both their impact on pathology and their symbiotic relationships in humans). He has an excellent track record in the herpesvirus field, and his group is engaged in clinical research in the field of Epstein-Barr virus diseases. He is the editor of the online Encyclopedia of Environment and he coordinates the Universal Health Coverage education program for the BioHealth Computing Schools of the European Institute of Science.",institutionString:null,institution:{name:"Grenoble Alpes University",country:{name:"France"}}},{id:"131400",title:"Prof.",name:"Alfonso J.",middleName:null,surname:"Rodriguez-Morales",slug:"alfonso-j.-rodriguez-morales",fullName:"Alfonso J. Rodriguez-Morales",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/131400/images/system/131400.png",biography:"Dr. Rodriguez-Morales is an expert in tropical and emerging diseases, particularly zoonotic and vector-borne diseases (especially arboviral diseases). He is the president of the Travel Medicine Committee of the Pan-American Infectious Diseases Association (API), as well as the president of the Colombian Association of Infectious Diseases (ACIN). He is a member of the Committee on Tropical Medicine, Zoonoses, and Travel Medicine of ACIN. He is a vice-president of the Latin American Society for Travel Medicine (SLAMVI) and a Member of the Council of the International Society for Infectious Diseases (ISID). Since 2014, he has been recognized as a Senior Researcher, at the Ministry of Science of Colombia. He is a professor at the Faculty of Medicine of the Fundacion Universitaria Autonoma de las Americas, in Pereira, Risaralda, Colombia. 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. His Scopus H index is 47 (Google Scholar H index, 68).",institutionString:"Institución Universitaria Visión de las Américas, Colombia",institution:null},{id:"332819",title:"Dr.",name:"Chukwudi Michael",middleName:"Michael",surname:"Egbuche",slug:"chukwudi-michael-egbuche",fullName:"Chukwudi Michael Egbuche",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/332819/images/14624_n.jpg",biography:"I an Dr. Chukwudi Michael Egbuche. I am a Senior Lecturer in the Department of Parasitology and Entomology, Nnamdi Azikiwe University, Awka.",institutionString:null,institution:{name:"Nnamdi Azikiwe University",country:{name:"Nigeria"}}},{id:"284232",title:"Mr.",name:"Nikunj",middleName:"U",surname:"Tandel",slug:"nikunj-tandel",fullName:"Nikunj Tandel",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/284232/images/8275_n.jpg",biography:'Mr. Nikunj Tandel has completed his Master\'s degree in Biotechnology from VIT University, India in the year of 2012. He is having 8 years of research experience especially in the field of malaria epidemiology, immunology, and nanoparticle-based drug delivery system against the infectious diseases, autoimmune disorders and cancer. He has worked for the NIH funded-International Center of Excellence in Malaria Research project "Center for the study of complex malaria in India (CSCMi)" in collaboration with New York University. The preliminary objectives of the study are to understand and develop the evidence-based tools and interventions for the control and prevention of malaria in different sites of the INDIA. Alongside, with the help of next-generation genomics study, the team has studied the antimalarial drug resistance in India. Further, he has extended his research in the development of Humanized mice for the study of liver-stage malaria and identification of molecular marker(s) for the Artemisinin resistance. At present, his research focuses on understanding the role of B cells in the activation of CD8+ T cells in malaria. Received the CSIR-SRF (Senior Research Fellow) award-2018, FIMSA (Federation of Immunological Societies of Asia-Oceania) Travel Bursary award to attend the IUIS-IIS-FIMSA Immunology course-2019',institutionString:"Nirma University",institution:{name:"Nirma University",country:{name:"India"}}},{id:"334383",title:"Ph.D.",name:"Simone",middleName:"Ulrich",surname:"Ulrich Picoli",slug:"simone-ulrich-picoli",fullName:"Simone Ulrich Picoli",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/334383/images/15919_n.jpg",biography:"Graduated in Pharmacy from Universidade Luterana do Brasil (1999), Master in Agricultural and Environmental Microbiology from Federal University of Rio Grande do Sul (2002), Specialization in Clinical Microbiology from Universidade de São Paulo, USP (2007) and PhD in Sciences in Gastroenterology and Hepatology (2012). She is currently an Adjunct Professor at Feevale University in Medicine and Biomedicine courses and a permanent professor of the Academic Master\\'s Degree in Virology. She has experience in the field of Microbiology, with an emphasis on Bacteriology, working mainly on the following topics: bacteriophages, bacterial resistance, clinical microbiology and food microbiology.",institutionString:null,institution:{name:"Universidade Feevale",country:{name:"Brazil"}}},{id:"229220",title:"Dr.",name:"Amjad",middleName:"Islam",surname:"Aqib",slug:"amjad-aqib",fullName:"Amjad Aqib",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/229220/images/system/229220.png",biography:"Dr. Amjad Islam Aqib obtained a DVM and MSc (Hons) from University of Agriculture Faisalabad (UAF), Pakistan, and a PhD from the University of Veterinary and Animal Sciences Lahore, Pakistan. Dr. Aqib joined the Department of Clinical Medicine and Surgery at UAF for one year as an assistant professor where he developed a research laboratory designated for pathogenic bacteria. Since 2018, he has been Assistant Professor/Officer in-charge, Department of Medicine, Manager Research Operations and Development-ORIC, and President One Health Club at Cholistan University of Veterinary and Animal Sciences, Bahawalpur, Pakistan. He has nearly 100 publications to his credit. His research interests include epidemiological patterns and molecular analysis of antimicrobial resistance and modulation and vaccine development against animal pathogens of public health concern.",institutionString:"Cholistan University of Veterinary and Animal Sciences",institution:null},{id:"62900",title:"Prof.",name:"Fethi",middleName:null,surname:"Derbel",slug:"fethi-derbel",fullName:"Fethi Derbel",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/62900/images/system/62900.jpeg",biography:"Professor Fethi Derbel was born in 1960 in Tunisia. He received his medical degree from the Sousse Faculty of Medicine at Sousse, University of Sousse, Tunisia. He completed his surgical residency in General Surgery at the University Hospital Farhat Hached of Sousse and was a member of the Unit of Liver Transplantation in the University of Rennes, France. He then worked in the Department of Surgery at the Sahloul University Hospital in Sousse. Professor Derbel is presently working at the Clinique les Oliviers, Sousse, Tunisia. His hospital activities are mostly concerned with laparoscopic, colorectal, pancreatic, hepatobiliary, and gastric surgery. He is also very interested in hernia surgery and performs ventral hernia repairs and inguinal hernia repairs. He has been a member of the GREPA and Tunisian Hernia Society (THS). During his residency, he managed patients suffering from diabetic foot, and he was very interested in this pathology. For this reason, he decided to coordinate a book project dealing with the diabetic foot. Professor Derbel has published many articles in journals and collaborates intensively with IntechOpen Access Publisher as an editor.",institutionString:"Clinique les Oliviers",institution:null},{id:"300144",title:"Dr.",name:"Meriem",middleName:null,surname:"Braiki",slug:"meriem-braiki",fullName:"Meriem Braiki",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/300144/images/system/300144.jpg",biography:"Dr. Meriem Braiki is a specialist in pediatric surgeon from Tunisia. She was born in 1985. She received her medical degree from the University of Medicine at Sousse, Tunisia. She achieved her surgical residency training periods in Pediatric Surgery departments at University Hospitals in Monastir, Tunis and France.\r\nShe is currently working at the Pediatric surgery department, Sidi Bouzid Hospital, Tunisia. Her hospital activities are mostly concerned with laparoscopic, parietal, urological and digestive surgery. She has published several articles in diffrent journals.",institutionString:"Sidi Bouzid Regional Hospital",institution:null},{id:"229481",title:"Dr.",name:"Erika M.",middleName:"Martins",surname:"de Carvalho",slug:"erika-m.-de-carvalho",fullName:"Erika M. de Carvalho",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/229481/images/6397_n.jpg",biography:null,institutionString:null,institution:{name:"Oswaldo Cruz Foundation",country:{name:"Brazil"}}},{id:"186537",title:"Prof.",name:"Tonay",middleName:null,surname:"Inceboz",slug:"tonay-inceboz",fullName:"Tonay Inceboz",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/186537/images/system/186537.jfif",biography:"I was graduated from Ege University of Medical Faculty (Turkey) in 1988 and completed his Med. PhD degree in Medical Parasitology at the same university. I became an Associate Professor in 2008 and Professor in 2014. I am currently working as a Professor at the Department of Medical Parasitology at Dokuz Eylul University, Izmir, Turkey.\n\nI have given many lectures, presentations in different academic meetings. I have more than 60 articles in peer-reviewed journals, 18 book chapters, 1 book editorship.\n\nMy research interests are Echinococcus granulosus, Echinococcus multilocularis (diagnosis, life cycle, in vitro and in vivo cultivation), and Trichomonas vaginalis (diagnosis, PCR, and in vitro cultivation).",institutionString:"Dokuz Eylül University",institution:{name:"Dokuz Eylül University",country:{name:"Turkey"}}},{id:"71812",title:"Prof.",name:"Hanem Fathy",middleName:"Fathy",surname:"Khater",slug:"hanem-fathy-khater",fullName:"Hanem Fathy Khater",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/71812/images/1167_n.jpg",biography:"Prof. Khater is a Professor of Parasitology at Benha University, Egypt. She studied for her doctoral degree, at the Department of Entomology, College of Agriculture, Food and Natural Resources, University of Missouri, Columbia, USA. She has completed her Ph.D. degrees in Parasitology in Egypt, from where she got the award for “the best scientific Ph.D. dissertation”. She worked at the School of Biological Sciences, Bristol, England, the UK in controlling insects of medical and veterinary importance as a grant from Newton Mosharafa, the British Council. Her research is focused on searching of pesticides against mosquitoes, house flies, lice, green bottle fly, camel nasal botfly, soft and hard ticks, mites, and the diamondback moth as well as control of several parasites using safe and natural materials to avoid drug resistances and environmental contamination.",institutionString:null,institution:{name:"Banha University",country:{name:"Egypt"}}},{id:"99780",title:"Prof.",name:"Omolade",middleName:"Olayinka",surname:"Okwa",slug:"omolade-okwa",fullName:"Omolade Okwa",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/99780/images/system/99780.jpg",biography:"Omolade Olayinka Okwa is presently a Professor of Parasitology at Lagos State University, Nigeria. She has a PhD in Parasitology (1997), an MSc in Cellular Parasitology (1992), and a BSc (Hons) Zoology (1990) all from the University of Ibadan, Nigeria. She teaches parasitology at the undergraduate and postgraduate levels. She was a recipient of a Commonwealth fellowship supported by British Council tenable at the Centre for Entomology and Parasitology (CAEP), Keele University, United Kingdom between 2004 and 2005. She was awarded an Honorary Visiting Research Fellow at the same university from 2005 to 2007. \nShe has been an external examiner to the Department of Veterinary Microbiology and Parasitology, University of Ibadan, MSc programme between 2010 and 2012. She is a member of the Nigerian Society of Experimental Biology (NISEB), Parasitology and Public Health Society of Nigeria (PPSN), Science Association of Nigeria (SAN), Zoological Society of Nigeria (ZSN), and is Vice Chairperson of the Organisation of Women in Science (OWSG), LASU chapter. She served as Head of Department of Zoology and Environmental Biology, Lagos State University from 2007 to 2010 and 2014 to 2016. She is a reviewer for several local and international journals such as Unilag Journal of Science, Libyan Journal of Medicine, Journal of Medicine and Medical Sciences, and Annual Research and Review in Science. \nShe has authored 45 scientific research publications in local and international journals, 8 scientific reviews, 4 books, and 3 book chapters, which includes the books “Malaria Parasites” and “Malaria” which are IntechOpen access publications.",institutionString:"Lagos State University",institution:{name:"Lagos State University",country:{name:"Nigeria"}}},{id:"273100",title:"Dr.",name:"Vijay",middleName:null,surname:"Gayam",slug:"vijay-gayam",fullName:"Vijay Gayam",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/273100/images/system/273100.jpeg",biography:"Dr. Vijay Bhaskar Reddy Gayam is currently practicing as an internist at Interfaith Medical Center in Brooklyn, New York, USA. 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Through the application of epidemiological skill, classical and molecular virological skills, he investigates viruses of economic and public health importance for the mitigation of the negative impact on people, animal and the environment in the context of Onehealth. \r\nDr. Meseko’s field experience on animal and zoonotic diseases and pathogen dynamics at the human-animal interface over the years shaped his carrier in research and scientific inquiries. He has been part of the investigation of Highly Pathogenic Avian Influenza incursions in sub Saharan Africa and monitors swine Influenza (Pandemic influenza Virus) agro-ecology and potential for interspecies transmission. 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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",country:{name:"India"}}},{id:"94928",title:"Dr.",name:"Takuo",middleName:null,surname:"Mizukami",slug:"takuo-mizukami",fullName:"Takuo Mizukami",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/94928/images/6402_n.jpg",biography:null,institutionString:null,institution:{name:"National Institute of Infectious Diseases",country:{name:"Japan"}}},{id:"233433",title:"Dr.",name:"Yulia",middleName:null,surname:"Desheva",slug:"yulia-desheva",fullName:"Yulia Desheva",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/233433/images/system/233433.png",biography:"Dr. Yulia Desheva is a leading researcher at the Institute of Experimental Medicine, St. Petersburg, Russia. 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His research lines are biometrics, biomedical signals and images, data mining, classification system, signal and image processing, machine learning, and environmental intelligence. He has researched in 52 international and Spanish research projects, some of them as head researcher. He is co-author of 4 books, co-editor of 27 proceedings books, guest editor for 8 JCR-ISI international journals, and up to 24 book chapters. He has over 450 papers published in international journals and conferences (81 of them indexed on JCR – ISI - Web of Science). He has published seven patents in the Spanish Patent and Trademark Office. He has been a supervisor on 8 Ph.D. theses (11 more are under supervision), and 130 master theses. He is the founder of The IEEE IWOBI conference series and the president of its Steering Committee, as well as the founder of both the InnoEducaTIC and APPIS conference series. He is an evaluator of project proposals for the European Union (H2020), Medical Research Council (MRC, UK), Spanish Government (ANECA, Spain), Research National Agency (ANR, France), DAAD (Germany), Argentinian Government, and the Colombian Institutions. He has been a reviewer in different indexed international journals (<70) and conferences (<250) since 2001. He has been a member of the IASTED Technical Committee on Image Processing from 2007 and a member of the IASTED Technical Committee on Artificial Intelligence and Expert Systems from 2011. \n\nHe has held the general chair position for the following: ACM-APPIS (2020, 2021), IEEE-IWOBI (2019, 2020 and 2020), A PPIS (2018, 2019), IEEE-IWOBI (2014, 2015, 2017, 2018), InnoEducaTIC (2014, 2017), IEEE-INES (2013), NoLISP (2011), JRBP (2012), and IEEE-ICCST (2005)\n\nHe is an associate editor of the Computational Intelligence and Neuroscience Journal (Hindawi – Q2 JCR-ISI). He was vice dean from 2004 to 2010 in the Higher Technical School of Telecommunication Engineers at ULPGC and the vice dean of Graduate and Postgraduate Studies from March 2013 to November 2017. 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