Academic literature on the topic 'Rice Nutrition'
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Journal articles on the topic "Rice Nutrition"
Peng, Bo, Qing-Xi Zhang, Xia-Yu Tian, Yan-Fang Sun, Xin-Hua Huang, Rui-Hua Pang, Quan-Xiu Wang, et al. "Influencing Factors of Grain Nutritional Quality and its Genetic Improvement Strategy in Rice." Journal of Biotechnology Research, no. 71 (November 19, 2020): 1–11. http://dx.doi.org/10.32861/jbr.71.1.11.
Full textFUKAGAWA, Naomi K., and Lewis H. ZISKA. "Rice: Importance for Global Nutrition." Journal of Nutritional Science and Vitaminology 65, Supplement (October 11, 2019): S2—S3. http://dx.doi.org/10.3177/jnsv.65.s2.
Full textFageria, N. K., A. B. dos Santos, and T. Cobucci. "Zinc Nutrition of Lowland Rice." Communications in Soil Science and Plant Analysis 42, no. 14 (August 2011): 1719–27. http://dx.doi.org/10.1080/00103624.2011.584591.
Full textShanthi, Rebba Phileshia, Prof Dr Virginia Paul, Prof Dr Ranu Prasad, and Dr Alka Gupta. "Utilization of Cereals and Millets for Nutritious Rich Food Products." International Journal For Multidisciplinary Research 04, no. 04 (2022): 56–67. http://dx.doi.org/10.36948/ijfmr.2022.v04i04.005.
Full textKarkee, S. S. "Speciality Rice Varieties and Landraces." Journal of Agriculture and Environment 22 (June 30, 2021): 105–20. http://dx.doi.org/10.3126/aej.v22i0.46809.
Full textStephanie, E., S. Widowati, and Mardiah. "Effect of Cooking Methods on The Physicochemical and Organoleptic Properties of Inpari IR Nutrizinc and Inpari 45 Rice Varieties." IOP Conference Series: Earth and Environmental Science 1024, no. 1 (May 1, 2022): 012041. http://dx.doi.org/10.1088/1755-1315/1024/1/012041.
Full textSulistyowati, Etik, Achmad Rudijanto, Setyawati Soeharto, and Dian Handayani. "The Identification of Characteristic Macro- and Micronutrients and the Bioactive Components of Indonesian Local Brown Rice as a Functional Feed in Obesity Nutrition Therapy." Current Nutrition & Food Science 16, no. 4 (July 13, 2020): 494–500. http://dx.doi.org/10.2174/1573401315666190328223626.
Full textS, Vijayakumar, Dinesh Kumar, Kulasekaran Ramesh, Prabhu Govindasam, Dinesh Jinger, Rubina Khanam, Saravanane P, et al. "Potassium nutrition in rice: A review." Oryza-An International Journal on Rice 58, no. 3 (September 30, 2021): 341–53. http://dx.doi.org/10.35709/ory.2021.58.3.1.
Full textDescalsota-Empleo, Gwen Iris, Abd Aziz Shamsudin Noraziyah, Ian Paul Navea, Chongtae Chung, Maria Stefanie Dwiyanti, Reuben Jacob Dicen Labios, Asmuni Mohd Ikmal, et al. "Genetic Dissection of Grain Nutritional Traits and Leaf Blight Resistance in Rice." Genes 10, no. 1 (January 8, 2019): 30. http://dx.doi.org/10.3390/genes10010030.
Full textYilun, Zhou, Feng Xiaoguang, Chen Xiangning, and Zhao Fushi. "Optimization of the preparation process of rice quinoa gel by response surface methodology." E3S Web of Conferences 245 (2021): 03010. http://dx.doi.org/10.1051/e3sconf/202124503010.
Full textDissertations / Theses on the topic "Rice Nutrition"
Lou-Hing, Daniel Edward. "Arsenic in rice : the role of phosphate in sensitivity and the genetics behind shoot arsenic." Thesis, University of Aberdeen, 2010. http://digitool.abdn.ac.uk:80/webclient/DeliveryManager?pid=159212.
Full textRamesh, Sunita. "Molecular mechanism of zinc uptake and regulation in cereals." Title page, table of contents and abstract only, 2002. http://web4.library.adelaide.edu.au/theses/09PH/09phr1724.pdf.
Full textShahnaseri, Mahnaz. "The effect of cooking method upon iron and zinc bioavailability in rice /." View thesis, 2001. http://library.uws.edu.au/adt-NUWS/public/adt-NUWS20031120.102309/index.html.
Full textA thesis submitted in fulfilment of the requirements for the degree of Doctor of Philosophy, Faculty of Science, Technology and Environment, University of Western Sydney, Hawkesbury Campus, 2001. Bibliography : leaves 205-244.
Alli, Zaman. "The assembly of hepatitis B virus core particles in transgenic tobacco, carrot and rice plants." Thesis, University of Ottawa (Canada), 2004. http://hdl.handle.net/10393/29072.
Full textCriscioni, Ferreira Patricia Fabiola. "Application of an open circuit indirect calorimetry system for gaseous exchange measurements in small ruminant nutrition." Doctoral thesis, Universitat Politècnica de València, 2016. http://hdl.handle.net/10251/64069.
Full text[ES] El objetivo principal de esta tesis fue estudiar el metabolismo energético en pequeños rumiantes bajo diferentes escenarios de nutrición. Como metodología se utilizó la calorimetría indirecta en vez de calorimetría directa o pruebas de alimentación. Dentro de la calorimetría indirecta trabajamos con un sistema portátil de circuito abierto de intercambio de gases con una "urna" (Heat hood). Este sistema de circuito abierto de respiración nos permitió completar todo el balance energético y evaluar la eficiencia de la utilización de la energía de la dieta para diferentes estados fisiológicos como producción de leche en cabras u oveja en mantenimiento. Además fue posible cuantificar en cada ensayo algunas perdidas relacionadas con la contaminación ambiental como emisiones de CH4 y la excreción de nitrógeno en heces y orina. En esta tesis se diseñaron tres experimentos, dos en cabras en lactación y otro en ovejas como describimos a continuación. En el primer experimento se han determinado, digestibilidad, balance energético, balance carbono nitrógeno, producción de leche, parámetros ruminales, ácidos grasos y metabolitos en leche. Jaulas metabólicas y un sistema de circuito abierto de calorimetría indirecta fue el método aplicado. Los tratamientos consistieron en dos dietas mixtas con alfalfa como forraje y dentro del concentrado el grano de avena fue reemplazado por cilindro de arroz. No se encontraron diferencias significativas en la energía metabolizable ingerida (MEI) de 1254 kJ/kg PV0.75 en promedio y una producción de calor (HP) de 640 kJ/kg PV0.75 en promedio. La producción de leche no presentó diferencias significativas entre las dos dietas, (2,2 kg/den promedio), la grasa de la leche fue mayor en la dieta de cilindro de arroz (6,9% vs. 5,3% para cilindro de arroz y avena respectivamente). El balance energético fue positivo y correlacionado a los metabolitos en leche determinados. En cuanto a las emisiones de CH4, determinadas en vivo mediante el intercambio de gases por calorimetría indirecta, las cabras alimentadas con el subproducto redujeron significativamente la producción de metano (23,2 g / d vs 30,1 g / d.). En el segundo experimento, también utilizamos dos tipos de dietas, pero en este caso sustituimos los forrajes y mantuvimos el mismo pienso; en una de las dietas se utilizó como forraje una gramínea (Maralfafa [Pennisetum sp.] - dieta M) y en el otro una leguminosa de uso extendido (Alfalfa [Medicago sativa] - dieta A). Los métodos de análisis y análisis fueron los mismos que los utilizados en el Experimento 1, y se incluyeron además análisis de metabolitos en orina y plasma. La materia seca ingerida fue mayor para dieta A (1,8 vs 1,6 kg/d, respectivamente), los coeficientes de digestibilidad fueron mayores para la dieta M. Sin embargo, no se encontraron diferencias significativas en MEI (1089 kJ/kg PV0.75, en promedio) y HP 639 kJ/kg PV0.75, en promedio). La producción de leche fue mayor en la dieta A que la dieta M, (1,8 vs. 1,7 kg/d, respectively) y los metabolitos en orina, plasma y leche indican un mejor aprovechamiento de la dieta A. No se presentaron diferencias en la composición de la leche (5% de grasa and 4.3% de proteína). La producción de metano fue mayor para la dieta A (28,5 g/d) que para la dieta M (25,9 g/d), aunque estas diferencias no fueron estadísticamente significativas. En el tercer experimento se compararon la partición energética en dos razas de ovejas (Manchega vs. Guirra) en mantenimiento. Fueron alimentadas con dietas mixtas en jaulas metabólicas, calorimetría indirecta, balance carbono nitrógeno y cálculos integrales fueron las herramientas utilizadas para un aproximación de la partición energética. Se realizó una aproximación de división de producción de calor. El ME para mantenimiento se estimó en 354 kJ/kg PV0.75/ día, en promedio para las dos razas. Las diferencias en la tasa metabólica basal entre las razas fu
[CAT] El principal objectiu d'aquesta tesi va ser estudiar el metabolism energètic en xicotets ruminants baix diferents escenaris de nutrició. Com a metodologia es va utilitzar la calorimetria indirecta en compte de calorimetria directa o proves d'alimentació. Dins de la calorimetria indirecta treballarem amb un sistema portatil de circuit obert d'intercanvi de gasos amb "urna" (Heat hood). Aquest sistema de respiració de circuit obert ens va permetre completar tot el balanç energètic i avaluar l'eficiència de la utilització de l'energia de la dieta per a diferents circumstàncies fisiològiques com produccion de llet en cabres o manteniment en ovelles. A més va ser possible quantificar en cada assaig algunes perdues relacionades amb la contaminacion ambiental com a emissions de CH4 i l'excreció de nitrogen en femta i orina. En aquesta tesi es van dissenyar tres experiments, dos en cabres en lactación i un altre en ovelles com vam descriure a continuació. En el primer experiment s'han determinat,digestibilidad, balanç energètic, balanç carboni nitrogen, producció de llet, paràmetres ruminales, àcids grassos i metabòlits en llet. Gàbies metabòliques i un sistema de circuit obert de calorimetria indirecta va ser el mètode aplicat. Els tractaments van consistir en dues dietes mixtes amb alfals com a farratge i dins del concentrat el gra de civada va ser reemplaçat per cilindre d'arròs. No es van trobar diferències significatives en l'energia metabolizable ingerida (MEI) de 1254 kJ/kg PV0.75 en mitjana i una producció de calor (HP) de 640 kJ/kg PV0.75 en mitjana. La producció de llet no va presentar diferències significatives entre les dues dietes, (2.2 kg/donen mitjana), el greix de la llet va ser major en la dieta de cilindre d'arròs (6.9% vs. 5.3% per a cilindre d'arròs i civada respectivament). El balanç energètic va ser positiu i correlacionat als metabòlits en llet determinats. Quant a les emissions de CH4, determinades en viu mitjançant l'intercanvi de gasos per calorimetria indirecta, les cabres alimentades amb el subproducte van reduir significativament la producció de metà (23.2 g / d vs 30.1 g / d.).En el segon experiment, també utilitzem dos tipus de dietes, però en aquest cas substituïm els farratges i vam mantenir el mateix pinso; en una de les dietes es va utilitzar com a farratge una gramínea (Maralfafa [Pennisetum sp.] - dieta M) i en l'altre una **leguminosa d'ús estès (Alfals [Medicago sativa] - dieta A). Els mètodes d'anàlisis i anàlisis van ser els mateixos que els utilitzats en l'Experiment 1, i es van incloure a més anàlisi de metabòlits en orina i plasma. La matèria seca ingerida va ser major per a dieta A (1,8 vs 1,6 kg/d, respectivament), els coeficients de digestibilidad van ser majors per a la dieta M. No obstant açò no es van trobar diferències significatives en MEI (1089 kJ/kg PV0.75, en mitjana) i HP 639 kJ/kg PV0.75, en mitjana). La producció de llet va ser major en la dieta Al fet que la dieta M, (1,8 vs. 1,7 kg/d, respectively) i els metabòlits en orina, plasma i llet indiquen un millor aprofitament de la dieta A. No es van presentar diferències en la composició de la llet (5% de greix i 4.3% de proteïna). La producció de metà va ser major per a la dieta A (28,5 g/d) que per a la dieta M (25,9 g/d), encara que aquestes diferències no van anar estadísticament significatives. En el tercer experiment es van comparar la partició energètica en dues races d'ovelles (Manxega vs. Guirra) en manteniment. Van ser alimentades amb dietes mixtes en gàbies metabòliques, calorimetria indirecta, balanç carboni nitrogen i càlculs integrals van ser les eines utilitzades per a un aproximació de la partició energètica. Es va realitzar una aproximació de divisió de producció de calor. L'EM para manteniment es va estimar en 354 kJ/kg PV0.75 / dia, en mitjana per a les dues races. Les diferències en la taxa metabòlica basal entre les races va ser de 2
Criscioni Ferreira, PF. (2016). Application of an open circuit indirect calorimetry system for gaseous exchange measurements in small ruminant nutrition [Tesis doctoral no publicada]. Universitat Politècnica de València. https://doi.org/10.4995/Thesis/10251/64069
TESIS
Alkhuzaim, Faisal Kh. "“I Want Ketchup on my Rice”: The Role of Child Agency on Arab Migrant Families Food and Foodways." Scholar Commons, 2018. https://scholarcommons.usf.edu/etd/7258.
Full textScott, Victoria Elizabeth. "Stability of Whole Wheat Flour, Rolled Oats, and Brown Rice During Long-Term Storage and Preparation." BYU ScholarsArchive, 2015. https://scholarsarchive.byu.edu/etd/6169.
Full textHallinan, Robert Michael. "Increasing the Oral Bioaccessibility of Curcumin Using Oleogels Structured by Rice Bran Wax." The Ohio State University, 2020. http://rave.ohiolink.edu/etdc/view?acc_num=osu1578004597209035.
Full textVu, Duy Hoang [Verfasser], and Folkard [Akademischer Betreuer] Asch. "Effects of temperature and vapor pressure deficit on genotypic responses to nitrogen nutrition and weed competition in lowland rice / Duy Hoang Vu ; Betreuer: Folkard Asch." Hohenheim : Kommunikations-, Informations- und Medienzentrum der Universität Hohenheim, 2021. http://d-nb.info/1240761198/34.
Full textMoras, Benjamin. "Fractionnement de protéines végétales pour le développement d'ingrédients alimentaires infantiles hypoallergéniques et à teneur réduite en phytoestrogènes." Thesis, Toulouse, INPT, 2015. http://www.theses.fr/2015INPT0070.
Full textThe objectives of these works were to develop industrial processes for the production of four infant food ingredients with hypoallergenic properties and reduced levels of phytoestrogens. For this purpose, the nutritional properties of the rice and soy protein are promising. However, due to the presence of phytoestrogens (isoflavones) the consumption of soy protein isolates is a big concern for infant food security because the high exposure to these compounds, known to be endocrine disruptors. Consequently, it was first intended to develop a soy protein isolate with reduced content of isoflavones below 50 μg/g following the recommendations of French and European health authorities. Rice protein isolates are either non-existent on the market, or extremely rare. Therefore, the development of rice protein isolate with a minimum content of 90 % protein was another objective. For the sensitive population, such as infants, the aim of this work was also to develop soy and rice protein hydrolysates conferring hypoallergenic properties. To achieve this goal, the reduction of the size of proteins and the control of their molecular weight was studied. Two methods were used to achieve high extractions yields. A study of ethanol extraction ranging from small-scale optimization to industrial scale was used for a final product with a residual content in isoflavones below 50 μg/g. The second method was to retain isoflavones on adsorption resin from a soy protein hydrolysate. This was possible without preliminary extraction step by solvent. This method was also tested in the industrial scale. The chromatographic behavior of different isoflavones was also studied. The extraction of isoflavones with subcritical water and supercritical CO2 is also presented in this thesis even though these methods were not retained. These pressurized extractions showed the influence of the polarity of isoflavones and the protein content of soy products onto the isoflavone extraction. These works also identified a novel process for the production of rice protein isolate by the hydrolysis of polysaccharides with cellulolytic enzymes and amylases from concentrated protein byproducts from the glucose syrup industry. Studies on less processed materials such as rice bran and flour were also studied for protein isolation. The study of the hydrolysis by proteases of soy and rice proteins were monitored by various indicators such as pH, protein solubility, the degree of hydrolysis, the molecular weight profile by electrophoresis, and size exclusion chromatography. These processes are enabled for the production of four new ingredients that will be tested for their hypoallergenic characteristics before a large scale production
Books on the topic "Rice Nutrition"
Food and Agriculture Organization of the United Nations. and International Rice Research Institute, eds. Rice in human nutrition. Rome: Published with the cooperation of the International Rice Research Institute, Food and Agriculture Organization of the United Nations, 1993.
Find full textJinru, Gong, ed. Da mi bi yao hao: Hui chi da mi de ren bu shi mian, bu fa pang, bu de san gao : chi dui da mi bu chi yao. Nanchang Shi: Jiangxi ke xue ji shu chu ban she, 2014.
Find full textMartineau, Susan. Bread, rice and pasta. London: Franklin Watts, 2008.
Find full textMartineau, Susan. Bread, rice and pasta. London: Franklin Watts, 2006.
Find full textFlinn, J. C. Contributions of modern rice varieties to nutrition in Asia. Manila, Philippines: International Rice Research Institute, 1985.
Find full textF, Williams John. Rice nutrient management in California. Edited by Mutters Randall G, Greer Christopher A, Horwath William R, and University of California (System). Division of Agriculture and Natural Resources. Richmond, CA: University of California, Agriculture and Natural Resources, 2010.
Find full textNoij, Frank. Resident tenants at the Ahero irrigation scheme: Household economics and nutrition. Nairobi, Kenya: Food and Nutrition Planning Unit, Ministry of Planning and National Development, 1988.
Find full textHaigamai-dokuhon: Hakumai shinkō to Nihonjin. Tōkyō: Ronsōsha, 1988.
Find full textInternational Workshop on Natural Resource Management in Rice Systems: Technology Adaptation for Efficient Nutrient Use (1996 Bogor, Indonesia). Resource management in rice systems: Nutrients : papers presented at the International Workshop on Natural Resource Management in Rice Systems: Technology Adaptation for Efficient Nutrient Use, Bogor, Indonesia, 2-5 December 1996. Dordrecht: Kluwer Academic Publishers in cooperation with the International Rice Research Institute, 1999.
Find full textCommission, International Rice, Food and Agriculture Organization of the United Nations., and International Year of Rice (Program), eds. Rice is life: International Year of Rice 2004 and its implementation. Rome, Italy: International Rice Commission, 2005.
Find full textBook chapters on the topic "Rice Nutrition"
Kushwaha, U. K. S. "Nutrition Profiles of Black Rice." In Black Rice, 55–84. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-30153-2_4.
Full textDe Datta, S. K., and D. S. Mikkelsen. "Potassium Nutrition of Rice." In Potassium in Agriculture, 665–99. Madison, WI, USA: American Society of Agronomy, Crop Science Society of America, Soil Science Society of America, 2015. http://dx.doi.org/10.2134/1985.potassium.c30.
Full textCatling, David. "Gas Exchange and Nutrition." In Rice in Deep Water, 153–57. London: Palgrave Macmillan UK, 1992. http://dx.doi.org/10.1007/978-1-349-12309-4_14.
Full textMaeda, Hideo, Takuro Ishii, Shuichi Iida, and Hiroshi Nemoto. "New Rice Varieties to Control Rice Allergen." In Plant Nutrition — Molecular Biology and Genetics, 397–400. Dordrecht: Springer Netherlands, 1999. http://dx.doi.org/10.1007/978-94-017-2685-6_46.
Full textProm-u-thai, C., and B. Rerkasem. "Grain iron concentration in Thai rice germplasm." In Plant Nutrition, 350–51. Dordrecht: Springer Netherlands, 2001. http://dx.doi.org/10.1007/0-306-47624-x_169.
Full textAkanvou, R. K., M. Becker, M. J. Kropff, L. Bastiaans, and G. Dea. "Optimum rice yield under short-term cover crop fallow systems." In Plant Nutrition, 1000–1001. Dordrecht: Springer Netherlands, 2001. http://dx.doi.org/10.1007/0-306-47624-x_487.
Full textMori, S., H. Nakanishi, M. Takahashi, K. Higuchi, and N. K. Nishizawa. "Genetic engineering of transgenic rice with barley strategy-II genes." In Plant Nutrition, 14–15. Dordrecht: Springer Netherlands, 2001. http://dx.doi.org/10.1007/0-306-47624-x_5.
Full textFukuda, T., M. Osaki, T. Shinano, and J. Wasaki. "Cloning and characterization of two secreted acid phosphatases from rice calli." In Plant Nutrition, 34–35. Dordrecht: Springer Netherlands, 2001. http://dx.doi.org/10.1007/0-306-47624-x_15.
Full textFageria, N. K., R. J. Wright, and V. C. Baligar. "Iron tolerance of rice cultivars." In Genetic Aspects of Plant Mineral Nutrition, 259–62. Dordrecht: Springer Netherlands, 1990. http://dx.doi.org/10.1007/978-94-009-2053-8_40.
Full textChancy, R. L., P. G. Reeves, and J. S. Angle. "Rice plant nutritional and human nutritional characteristics role in human Cd toxicity." In Plant Nutrition, 288–89. Dordrecht: Springer Netherlands, 2001. http://dx.doi.org/10.1007/0-306-47624-x_138.
Full textConference papers on the topic "Rice Nutrition"
Rizal, Syamsul, Nor Kumalasari Caecar Pratiwi, Nur Ibrahim, Nathaniel Syalomta, Muhammad Ikhwan Khalid Nasution, Indah Mutiah Utami Mz, and Deva Aulia Putri Oktavia. "Classification Of Nutrition Deficiency In Rice Plant Using CNN." In 2022 1st International Conference on Information System & Information Technology (ICISIT). IEEE, 2022. http://dx.doi.org/10.1109/icisit54091.2022.9873082.
Full textKuleshova, L. A., A. S. Kasakova, and I. S. Tatyanchenko. "INFLUENCE OF PRECURSORS ON THE CONTENT OF MINERAL PHOSPHORUS FRACTIONS IN THE SOILS OF RICE FIELDS IN THE ROSTOV REGION." In STATE AND DEVELOPMENT PROSPECTS OF AGRIBUSINESS Volume 2. DSTU-Print, 2020. http://dx.doi.org/10.23947/interagro.2020.2.704-708.
Full textSheudzen, A. Kh, T. N. Bondareva, P. N. Khachmamuk, E. P. Maksimenko, and N. S. Galay. "REMOVAL OF MINERAL NUTRITION ELEMENTS BY THE RICE CROP DURING CROP SENIFICATION." In «Breeding, seed production, cultivation technology and processing of agricultural crops». Federal State Budgetary Scientific Institution Federal Scientific Rice Centre, 2021. http://dx.doi.org/10.33775/conf-2021-311-316.
Full textZhou, Qiong, Hongyun Yang, Jun Yang, Yuting Sun, Aizhen Sun, and Wenji Yang. "Research on Support Vector Machines Method Modeling for Rice Potassium Nutrition Diagnosis." In 2018 International Conference on Mathematics, Modelling, Simulation and Algorithms (MMSA 2018). Paris, France: Atlantis Press, 2018. http://dx.doi.org/10.2991/mmsa-18.2018.12.
Full textChizhikova, S. S., and K. K. Olkhovaya. "VARIABILITY OF NEW RICE VARIETIES VELES, EZHIK AND SIGNAL GROWN IN KRASNOARMEYSKY DISTRICT, KRASNODAR REGION BY TECHNOLOGICAL GRAIN QUALITY TRAITS." In STATE AND DEVELOPMENT PROSPECTS OF AGRIBUSINESS Volume 2. DSTU-Print, 2020. http://dx.doi.org/10.23947/interagro.2020.2.577-579.
Full textYuan, Yuan, Lei Chen, Miao Li, Na Wu, Li Wan, and Shimei Wang. "Diagnosis of nitrogen nutrition of rice based on image processing of visible light." In 2016 IEEE International Conference on Functional-Structural Plant Growth Modeling, Simulation, Visualization and Applications (FSPMA). IEEE, 2016. http://dx.doi.org/10.1109/fspma.2016.7818311.
Full textFernández, C., T. Romero, and M. Lachica. "Orange leaves and rice straw in the diet of lactating goats: effect on energy balance." In 6th EAAP International Symposium on Energy and Protein Metabolism and Nutrition. The Netherlands: Wageningen Academic Publishers, 2019. http://dx.doi.org/10.3920/978-90-8686-891-9_74.
Full textAl Anas, Muhsin, Lies Mira Yusiati, Cuk Tri Noviandi, and Ali Agus. "Crude Aflatoxin B1 Production Using Maize and Rice Substrates for Animal Research." In 6th International Seminar of Animal Nutrition and Feed Science (ISANFS 2021). Paris, France: Atlantis Press, 2022. http://dx.doi.org/10.2991/absr.k.220401.004.
Full textPapulova, E. Y., and K. K. Olkhovaya. "CHARACTERISTICS OF MILLING YIELD OF RICE VARIETIES OF RUSSIAN BREEDING GROWN IN VARIOUS CONDITIONS OF NITROGEN NUTRITION IN THE ABINSKIY DISTRICT OF THE KRASNODAR REGION." In STATE AND DEVELOPMENT PROSPECTS OF AGRIBUSINESS Volume 2. DSTU-Print, 2020. http://dx.doi.org/10.23947/interagro.2020.2.68-70.
Full textZhang, Jinheng. "Potential of continuum removed reflectance spectral features estimating nitrogen nutrition in rice canopy level." In 2010 2nd Workshop on Hyperspectral Image and Signal Processing: Evolution in Remote Sensing (WHISPERS). IEEE, 2010. http://dx.doi.org/10.1109/whispers.2010.5594837.
Full textReports on the topic "Rice Nutrition"
Assaye, Abebaw, and Dawit Alemu. Impact of COVID-19 on Food Systems and Rural Livelihoods in Fogera Plain, Ethiopia - Round 2 Report . Institute of Development Studies (IDS), December 2020. http://dx.doi.org/10.19088/apra.2020.021.
Full textAlemu, Dawit, and Abebaw Assaye. Impact of COVID-19 on Food Systems and Rural Livelihoods in Fogera Plain, Ethiopia – Round 1 Report. Institute of Development Studies (IDS), October 2020. http://dx.doi.org/10.19088/apra.2020.002.
Full textCarrión-Tavárez, Ángel. From NAP to SNAP: A Bridge to Economic Liberty for Residents of Puerto Rico. Puerto Rico Institute for Economic Liberty, 2022. http://dx.doi.org/10.53095/13584001.
Full textBean, Jessica. Reliance on supplemental nutrition assistance program continued to rise post-recession. University of New Hampshire Libraries, 2011. http://dx.doi.org/10.34051/p/2020.152.
Full textProvenza, Frederick, Avi Perevolotsky, and Nissim Silanikove. Consumption of Tannin-Rich Forage by Ruminants: From Mechanism to Improved Performance. United States Department of Agriculture, April 2000. http://dx.doi.org/10.32747/2000.7695840.bard.
Full textKanner, Joseph, Mark Richards, Ron Kohen, and Reed Jess. Improvement of quality and nutritional value of muscle foods. United States Department of Agriculture, December 2008. http://dx.doi.org/10.32747/2008.7591735.bard.
Full textDubcovsky, Jorge, Tzion Fahima, and Ann Blechl. Positional cloning of a gene responsible for high grain protein content in tetraploid wheat. United States Department of Agriculture, September 2003. http://dx.doi.org/10.32747/2003.7695875.bard.
Full textEshel, Amram, Jonathan P. Lynch, and Kathleen M. Brown. Physiological Regulation of Root System Architecture: The Role of Ethylene and Phosphorus. United States Department of Agriculture, December 2001. http://dx.doi.org/10.32747/2001.7585195.bard.
Full textSchwartz, Bertha, Vaclav Vetvicka, Ofer Danai, and Yitzhak Hadar. Increasing the value of mushrooms as functional foods: induction of alpha and beta glucan content via novel cultivation methods. United States Department of Agriculture, January 2015. http://dx.doi.org/10.32747/2015.7600033.bard.
Full text