[1] Shahidi, F., and Chandrasekara, A. 2013. Millet grain phenolics and their role in disease risk reduction and health promotion: A review. Journal of Functional Foods, 5(2), 570-581.
[2] FAO. 2017. Food and Agriculture Organization. Sorghum and millets in human nutrition. Rome, Italy: FAO.
[3] Arendt, E., and Dal Bello, F. (Eds.). 2011. Gluten-free cereal products and beverages. Elsevier.
[4] Ushakumari, S. R., Latha, S., and Malleshi, N. G. 2004. The functional properties of popped, flaked, extruded and roller‐dried foxtail millet (Setaria italica). International journal of food science and technology, 39(9), 907-915.
[5] Saleh, A. S., Zhang, Q., Chen, J., and Shen, Q. 2013. Millet grains: nutritional quality, processing, and potential health benefits. Comprehensive Reviews in Food Science and Food Safety, 12(3), 281-295.
[6] Fasano, A., Catassi, C. (2008). Celiac disease. New England Journal of Medicine, 367(25), 2419-2426.
[7] Chandrasekara, A., Naczk, M., and Shahidi, F. 2012. Effect of processing on the antioxidant activity of millet grains. Food Chemistry, 133(1), 1-9.
[8] Jaybhaye, R. V., Pardeshi, I. L., Vengaiah, P. C., and Srivastav, P. P. 2014. Processing and technology for millet based food products: a review. Journal of ready to eat food, 1(2), 32-48.
[9] Taylor, J., & Awika, J. (Eds.). (2017). Gluten-free Ancient Grains: Cereals, Pseudocereals, and Legumes: Sustainable, Nutritious, and Health-promoting Foods for the 21st Century. Woodhead Publishing.
[10] Sehgal, A., and Kwatra, A. 2003. Processing and utilization of pearl millet for Nutrition Security. In Proceeding of national seminar on Recent Trend in Millet Processing and Utilization held at CCS HAU, Hissar, India (Vol. 16).
[11] Hadimani, N. A., and Malleshi, N. G. 1993. Studies on milling, physico-chemical properties, nutrient composition and dietary fibre content of millets. Journal of Food Science and Technology (India), 30(1), 17-20.
[12] Dykes, L., and Rooney, L. W. 2006. Sorghum and millet phenols and antioxidants. Journal of cereal science, 44(3), 236-251.
[13] Malleshi, N.G., Desikachar, H.S.R., 1986. Nutritive value of malted pearl millet flours.Plant Food.Hum. Nutr. 36, 191–196.
[14] Emmambux, M.N., Taylor, J.R.N., 2013. Morphology, physical, chemical and functional properties of starches from cereals, legumes and tubers cultivated in Africa: a review. Starch-Stärke 65. 715-729.
[15] Kumari, S.K., Thayumanavan, B., 1998. Characterization of starches of proso, foxtail, barnyard,kodo, and little millets. Plant Food. Hum. Nutr. 53, 47–56.
[16] Taylor, J.R.N., Belton, P.S., Beta, T., Duodu, K.G., 2014. Review: increasing the utilisation of sorghum, millets and pseudocereals: developments in the science of their phenolic phytochemicals, biofortification and protein functionality. J. Cereal Sci. 59, 257–275.
[17] Monteiro, P. V., Sudharshana, L., and Ramachandra, G. 1988. Japanese barnyard millet (Echinochloa frumentacea): protein content, quality and SDS–PAGE of protein fractions. Journal of the Science of Food and Agriculture, 43(1), 17-25.
[18] Geervani, P., and Eggum, B. O. 1989. Effect of heating and fortification with lysine on protein quality of minor millets. Plant Foods for Human Nutrition, 39(4), 349-357.
[19] Krishnan, R., Dharmaraj, U., Manohar, R. S., and Malleshi, N. G. 2011. Quality characteristics of biscuits prepared from finger millet seed coat based composite flour. Food chemistry, 129(2), 499-506.
[20] Antony, U., Sripriya, G., and Chandra, T. S. 1996. Effect of fermentation on the primary nutrients in finger millet (Eleusine coracana). Journal of Agricultural and Food Chemistry, 44(9), 2616-2618.
[21] Abdelrahman, A., Hoseney, R.C., Varriano-Marston, E., 1984. The proportions and chemical compositions of hand-dissected anatomical parts of pearl millet. J. Cereal Sci. 2, 127–133.
[22] Obilana, A.B., Manyasa, E., 2002. Millets. In: Belton, P.S., Taylor, J.R.N. (Eds.), Pseudocereals and Less Common Cereals: Grain Properties and Utilization Potential. Springer, Berlin, pp. 177–217.
[23] Sudharshana, L., Monteiro, P. V., and Ramachandra, G. 1988. Studies on the proteins of kodo millet (Paspalum scrobiculatum). Journal of the Science of Food and Agriculture, 42(4), 315-323.
[24] Ragaee, S., Abdel-Aal, E. S. M., and Noaman, M. 2006. Antioxidant activity and nutrient composition of selected cereals for food use. Food chemistry, 98(1), 32-38.
[25] Serna-Saldivar, S., Rooney, L.W., 1995. Structure and chemistry of sorghum and millets. In: Dendy, D.A.V. (Ed.), Sorghum and Millets: Chemistry and Technology. American Association of Cereal Chemists, St. Paul, MN, pp. 69–124.
[26] Antony, U., Chandra, T.S., 1998. Antinutrient reduction and enhancement in protein, starch, and mineral availability in fermented flour of finger millet (Eleusine coracana). J. Agri. Food Chem. 46, 2578–2582.
[27] Shukla, K., Srivastava, S., 2014. Evaluation of finger millet incorporated noodles for nutritive value and glycemic index. J. Food Sci. Technol. 51, 527–534.
[28] Chhavi, A., Sarita, S., 2012. Evaluation of composite millet breads for sensory and nutritional qualities and glycemic response. Malays. J. Nutr. 18, 89–101.
[29] Shobana, S., Usha Kumari, S. R., Malleshi, N. G., and Ali, S. Z. 2007. Glycemic response of rice, wheat and finger millet based diabetic food formulations in normoglycemic subjects. International journal of food sciences and nutrition, 58(5), 363-372.
[30] Srivastava, A.K., Sudha, M.L., Baskaran, V. and Leelavathi, K., 2007. Studies on heat stabilized wheat germ and its influence on rheological characteristics of dough. European Food Research and Technology, 224: 365-372.
[31] Devisetti, R., Ravi, R., and Bhattacharya, S. 2015. Effect of hydrocolloids on quality of proso millet cookie. Food and Bioprocess Technology, 8(11), 2298-2308.
[32] Lee, S.H., Chung, I.M., Cha, Y.S., Park, Y., 2010. Millet consumption decreased serum concentration of triglyceride and C-reactive protein but not oxidative status in hyperlipidemic rats. Nutrition Research. 30, 290–296.
[33] Shimanuki, S., Nagasawa, T., Nishizawa, N., 2006. Plasma HDL subfraction levels increase in rats fed proso-millet protein concentrate. Med. Sci. Monitor 12, BR221–BR226.
[34] Odusola, K. B., Ilesanmi, F. F., and Akinloye, O. A. 2013. Assessment of nutritional composition and antioxidant ability of pearl millet (Pennisetum glaucum). American Journal of Research Communication, 1(6), 262-272.
[35] Chandrasekara, A., Shahidi, F., 2012. Bioaccessibility and antioxidant potential of millet grain phenolics as affected by simulated in vitro digestion and microbial fermentation. J. Funct. Foods. 4, 226–237.
[36] Watanabe, M., 1999. Antioxidative phenolic compounds from Japanese barnyard millet (Echinochloa utilis) grains. J. Agri. Food Chem. 47, 4500–4505
[37] Pradeep, S.R., Guha, M., 2011. Effect of processing methods on the nutraceutical and antioxidant properties of little millet (Panicum sumatrense) extracts. Food Chem. 126, 1643–1647.
[38] Desikachar, H. S. R. 1977. Processing of maize, sorghum and millets for food uses. Journal of Science and Industrial Research, 34(4), 231-237.
[39] Akingbala, J. O. 1991. Effect of processing on flavonoids in millet (Pennisetum americanum) flour. Cereal chemistry (USA).
[40] Nehir El, S., and Simsek, S. 2012. Food technological applications for optimal nutrition: an overview of opportunities for the food industry. Comprehensive Reviews in Food Science and Food Safety, 11(1), 2-12.
[41] De Ruiz, A. C., and Bressani, R. 1990. Effect of germination on the chemical composition and nutritive value of amaranth grain. Cereal chemistry, 67(6), 519-522.
[42] Durairaj, M., Gurumurthy, G., Nachimuthu, V., Muniappan, K., & Balasubramanian, S. 2019. Dehulled small millets: The promising nutricereals for improving the nutrition of children. Maternal & child nutrition, 15, e12791.
[43] El Hag, M. E., El Tinay, A. H., & Yousif, N. E. 2002. Effect of fermentation and dehulling on starch, total polyphenols, phytic acid content and in vitro protein digestibility of pearl millet. Food Chemistry, 77(2), 193-196.
[44] Srivastava, S., and Singh, G. 2003. Processing of millet for value addition and development of health food. In Proceeding of National Seminar on Recent Trend in Millet Processing and Utilization, CCS HAU, Hissar, India (pp. 109-116).
[45] Sultana, B., Anwar, F., and Iqbal, S. 2008. Effect of different cooking methods on the antioxidant activity of some vegetables from Pakistan. International Journal of Food Science and Technology, 43(3), 560-567.
[46] Mohajer Khorasani, S. Alami, M. Kashaninegad, M. Shahiri Tabarestani, H. 2018. Increasing the shelf life of millet flour by using heat-moisture and microwave treatments. Journal of Food Science and Technology. 86(16), 83-93 [in Persian].
[47] Yadav, D. N., Patki, P. E., Sharma, G. K., and Bawa, A. S. 2008. Effect of microwave heating of wheat grains on the browning of dough and quality of chapattis. International Journal of Food Science and Technology, 43(7), 1217-1225.
[48] Arora, P., Sehgal, S. and Kawatra, A., 2002. The role of dry heat treatment in improving the shelf life of pearl millet flour. Nutrition and Health, 16: 331-336.
[49] Afify, A. E. M. M., El-BELTAGI, H. S., EL-SALAM, S. M. A., and Omran, A. A. 2012. Effect of soaking, cooking, germination and fermentation processing on proximate analysis and mineral content of three white sorghum varieties (Sorghum bicolor L. Moench). Notulae Botanicae Horti Agrobotanici Cluj-Napoca, 40(2), 92-98.
[50] Sangita, K., and Sarita, S. 2000. Nutritive value of malted flours of finger millet genotypes and their use in the preparation of burfi. Journal of Food Science and Technology (Mysore), 37(4), 419-422.
[51] Malekitabrizi, H. Alami, M. Ziaeifar, M. Effect of malted millet and xanthan gum on physical properties of gluten-free batter and cake. 1397. Journal of Food Science and Technology.15(83), 359-366 [in persian].
[52] Adebiyi, J. A., Obadina, A. O., Adebo, O. A., and Kayitesi, E. 2017. Comparison of nutritional quality and sensory acceptability of biscuits obtained from native, fermented, and malted pearl millet (Pennisetum glaucum) flour. Food chemistry, 232, 210-217.
[53] Adebiyi, J. A., Obadina, A. O., Mulaba-Bafubiandi, A. F., Adebo, O. A., and Kayitesi, E. 2016. Effect of fermentation and malting on the microstructure and selected physicochemical properties of pearl millet (Pennisetum glaucum) flour and biscuit. Journal of cereal science, 70, 132-139.
[54] Desai, A. D., Kulkarni, S. S., Sahoo, A. K., Ranveer, R. C., and Dandge, P. B. 2010. Effect of supplementation of malted ragi flour on the nutritional and sensorial quality characteristics of cake. Advance Journal of Food Science and Technology, 2(1), 67-71.
[55] Pelembe, L. A. M., Erasmus, C., and Taylor, J. R. N. 2002. Development of a protein-rich composite sorghum–cowpea instant porridge by extrusion cooking process. LWT-Food Science and Technology, 35(2), 120-127.
[56] Nirmala, M., Rao, M. S., and Muralikrishna, G. 2000. Carbohydrates and their degrading enzymes from native and malted finger millet (Ragi, Eleusine coracana, Indaf-15). Food Chemistry, 69(2), 175-180.
[57] Dahlin, K., and Lorenz, K. 1993. Protein digestibility of extruded cereal grains. Food Chemistry, 48(1), 13-18.
[58] Barazandeh, M. 2015. Effect of extrusion process on physicochemical properties of extruded expanded snacks based on corn and millet. Master thesis. Gorgan University of Agricultural Sciences and Natural Resources [in Persian].
[59] Saini, R., & Yadav, K. C. 2018. Development and quality evaluation of little millet (Panicum sumatrense) based extruded product. Journal of Pharmacognosy and Phytochemistry, 7(3), 3457-3463.
[60] Wadikar, D. D., Kangane, S. S., Parate, V., & Patki, P. E. 2014. Optimization of multi-millet ready-to-eat extruded snack with digestibility and nutritional perspective. Indian Journal of Nutrition, 1, 104.
[61] Balasubramanian, S., Singh, K. K., Patil, R. T., and Onkar, K. K. 2012. Quality evaluation of millet-soy blended extrudates formulated through linear programming. Journal of food science and technology, 49(4), 450-458.
[62] Sumathi, A., Ushakumari, S. R., and Malleshi, N. G. 2007. Physico-chemical characteristics, nutritional quality and shelf-life of pearl millet based extrusion cooked supplementary foods. International journal of food sciences and nutrition, 58(5), 350-362.
[63] Ushakumari, S. R., Rastogi, N. K., and Malleshi, N. G. 2007. Optimization of process variables for the preparation of expanded finger millet using response surface methodology. Journal of Food Engineering, 82(1), 35-42.
[64] Wadikar, D. D., Premavalli, K. S., Satyanarayanaswamy, Y. S., and Bawa, A. S. 2007. Lipid profile of finger millet (Eleusine coracana) varieties. JOURNAL OF FOOD SCIENCE AND TECHNOLOGY-MYSORE, 44(1), 79-81.
[65] Azarbad, H. Mazaheri tehrani, M. Rashidi, H. 2018. Determination of chemical, sensory and tissue properties of reduced gluten bread by mixing wheat flour and millet. Journal of Food Science and Technology. 26(1), 139-149 [in Persian].
[66] Mehrabanshandi, AS. 2012. Investigation of physicochemical properties of gluten free sponge cake and sponge cake. Master thesis. Gorgan University of Agricultural Sciences and Natural Resources [in persian].
[67] Fathi, B., Aalami, M., Kashaninejad, M. and Sadeghi Mahoonak, A., 2016. Utilization of Heat‐Moisture Treated Proso Millet Flour in Production of Gluten‐Free Pound Cake. Journal of Food Quality, 39: 611-619.
[68] karami, F. Ahami M, Sadeghi Mahoonak A, Shahiri tabarestani H. 2019. Effect of heat-moisture treatment of proso millet grain on physicochemical properties of flour and produced cookies. FSCT.; 16 (88) :185-200
[69] Mohajer Khorasani, S. 2018. Effect of heat-moisture and microwave treatments on Proso millet grain and evaluation of physicochemical and sensory properties of flour, batter and gluten free cake. Master thesis. Gorgan University of Agricultural Sciences and Natural Resources [in Persian].
[70] Jyotsna, R., Soumya, C., Swati, S., and Prabhasankar, P. 2016. Rheology, texture, quality characteristics and immunochemical validation of millet based gluten free muffins. Journal of Food Measurement and Characterization, 10(4), 762-772.
[71] Goswami, D., Gupta, R. K., Mridula, D., Sharma, M., and Tyagi, S. K. 2015. Barnyard millet based muffins: Physical, textural and sensory properties. LWT-Food Science and Technology, 64(1), 374-380.
[72] Rajiv, J., Soumya, C., Indrani, D., and Venkateswara Rao, G. 2011. Effect of replacement of wheat flour with finger millet flour (Eleusine corcana) on the batter microscopy, rheology and quality characteristics of muffins. Journal of Texture Studies, 42(6), 478-489.
[73] Kamaraddi, V., and Shanthakumar, G. 2003. Effect of incorporation of small millet flour to wheat flour on chemical, rheological and bread characteristics. Recent trends in millet processing and utilization. CCS Hisar Agricultural University, 74-81.