Abazari, A., & Salehifar, M. (2022). Production of practical cake powder using quinoa flour and isomalt. Food Industry Research, 32(1), 1–12. (In Persian)
Ajila, C. M., Aalami, M., Leelavathi, K., & Prasada Rao, U. J. S. (2010). Mango peel powder: A potential source of antioxidant and dietary fiber in macaroni preparations. Innovative Food Science and Emerging Technologies, 11(1), 219–224.
American Association of Cereal Chemists (AACC). (1999a). 08-01.01 Ash—Basic Method. In Approved Methods of Analysis (11th ed.).
American Association of Cereal Chemists (AACC). (1999b). 10-90.01 Baking Quality of Cake Flour. In Approved Methods of Analysis (11th ed.).
Ariana, M. (2016). Investigating the production of gluten-free, low-calorie and beneficial cake using apple pomace powder and xanthan gum [Master's thesis, Azad University of Quds]. (In Persian)
Aslam, H. K. W., Ur Raheem, M. I., Ramzan, R., Shakeel, A., Shoaib, M., & Arbab Sakandar, H. (2014). Utilization of mango waste material (peel, kernel) to enhance dietary fiber content and antioxidant properties of biscuit. Journal of Global Innovations in Agricultural and Social Sciences, 2(2), 76–81.
Delfan Azari, F., & Grossi, N. (2015). Enrichment of oil cake with potential probiotic bacilli (Bacillus coagulans). In National Conference of New Achievements in Food Industry and Healthy Nutrition (16[54]), 12–18. (In Persian)
Demirkesen, I., Mert, B., Sumnu, G., & Sahin, S. (2011). Rheological properties of gluten-free bread formulation. Journal of Food Engineering, 96, 295–303.
Ghasemizadeh, S., Nashi, B., & Naushad, M. (2016). Optimizing the formula of gluten-free bread made from quinoa, corn, and rice flour. Journal of Nutrition Sciences and Food Industries of Iran, 12(1), 59–68. (In Persian)
Gómez, M., Ronda, F., Caballero, P. A., Blanco, C. A., & Rosell, C. M. (2007). Functionality of different hydrocolloids on the quality and shelf-life of yellow layer cakes. Food Hydrocolloids, 21(2), 167–173.
Granato, D., Branco, G., & Nazzaro, F. (2010). Functional foods and nondairy probiotic food development: Trends, concepts, and products. Comprehensive Reviews in Food Science and Food Safety, 9(3), 292–302.
Haghayegh, G., & Ataye Salehi, S. (2017). Enrichment of gluten-free cookie by quinoa, amaranth and buckwheat flour as semi cereal. Iranian Journal of Food Science and Technology, 14(70). (In Persian)
Hosseininejad, M., Anuri, H., Zhiyani, M., & Abedfar, A. (2016). Investigating the effect of using the prebiotic combination of inulin on the sensory evaluation and quality characteristics of Tufton bread. Journal of Research and Innovation in Food Science and Industry, 185–198. (In Persian)
Houben, A., Höchstötter, A., & Becker, T. (2012). Possibilities to increase the quality in gluten-free bread production: An overview. European Food Research and Technology, 235(2), 195–208.
Institute of Standards and Industrial Research of Iran. (1988). Cake: The method of measuring the fat of cereals and its products (National Standard No. 2862). (In Persian)
Institute of Standards and Industrial Research of Iran. (1989). Cake: The method of measuring raw fiber of cereals and its products (National Standard No. 3105). (In Persian)
Institute of Standards and Industrial Research of Iran. (1994). Cake: The method of measuring the crude protein of cereals and its products (National Standard No. 2863). (In Persian)
Institute of Standards and Industrial Research of Iran. (1995). Cake: The method of measuring the moisture content of grain and its products (National Standard No. 2705). (In Persian)
Institute of Standards and Industrial Research of Iran. (2006). Cake: Characteristics and test methods (National Standard No. 2553). (In Persian)
Jafari, M. (2013). Production of cake enriched with apple and potato fibers and evaluation of its physical and chemical properties [Research report, Research Institute of Information Science and Technology of Iran]. (In Persian)
Jaldani, S., Nashi, B., Barzegar, H., & Sephond, N. A. (2016). Investigating the effect of adding whole quinoa flour and xanthan gum on the chemical and sensory characteristics of Berberi bread using the response surface method. Iranian Journal of Food Science and Industry, 14(70), 79–89. (In Persian)
Javaheripour, N., Shahsoni, Y., Mahdikhani, Sh., & Inanlu, Y. (2021). The effect of adding quinoa flour and sprouted wheat flour on the physicochemical, microbial and sensory characteristics of sponge cake. Iranian Journal of Food Science and Industry, 18(119), 375–392. (In Persian)
Kaur, M., & Singh Sandhu, K. (2010). Functional, thermal and pasting characteristics of flours from different lentil (Lens culinaris) cultivars. Journal of Food Science and Technology-Mysore, 47(3), 273–278.
Khaledi, S., Movahed, S., & Shakuri, M. (2018). The effect of adding mango fiber on the quality properties of sponge cake. Iran Food Science and Industry, 16(89), 165–175. (In Persian)
Konuray, G., & Erginkaya, Z. (2018). Potential use of Bacillus coagulans in the food industry. Foods, 7(6), 92.
Lu, T. M., Lee, C. C., Mau, J. L., & Lin, S. D. (2010). Quality and antioxidant property of green tea sponge cake. Food Chemistry, 119(3), 1090–1095.
Lundberg, B. (2005). Using highly expanded citrus fiber to improve the quality and nutritional properties of food. Cereal Foods World, 50(5), 248–252.
Masoodi, F. A., Sharma, B., & Chauhan, G. S. (2002). Use of apple pomace as a source of dietary fiber in cakes. Plant Foods for Human Nutrition, 57(2), 121–128.
Milani, E., Pourazarang, H., & Mortazavi, S. A. (2009). Effect of rice bran addition on dough rheology and textural properties of Barbary bread. Journal of Food Science and Technology, 1(1), 23–31.
Mozni, M., Zarin Qalami, S., & Ganjlo, A. (2017). The effect of enriching Berber dough with whole quinoa flour on farinographic characteristics and bread quality. Food Industry Research (Agricultural Knowledge), 28(4), 103–112. (In Persian)
Nematollahi, A., Sohrab Vandi, S., Mortazavian Farsani, S., & Brarenjadbariki, A. (2013). The use of fruits and vegetables as a base medium for the production of non-dairy probiotic drinks. Journal of Nutrition Sciences and Food Industries of Iran, 7(Suppl. 4), 73–81. (In Persian)
Onoja, U., Akubor, P., Ivoke, N., Atama, C., Onyishi, G., Ekeh, F., & Ejere, V. (2014). Nutritional composition, functional properties and sensory evaluation of breads based on blends of orarudi (Vigna sp.) and wheat flour. Scientific Research and Essays, 9(24), 1119–1126.
Parsa, A. (2019). Investigating the effect of oak flour and oak sap on the physicochemical, antioxidant, textural and sensory properties of probiotic sponge cake (Master’s thesis, Urmia University, Faculty of Agriculture). (In Persian)
Pouresmail, N. (2009). Formulation and production of gluten-free bread using transaminase enzymes and hydrocolloid from guar and xanthan (Master’s thesis, Tarbiat Modares University, Department of Food Industry). (In Persian)
Rahmani Bilandi, R., Moslem, A., Rahmani Bilandi, M., & Askari, F. (2009). The effect of food intake during labor on maternal outcomes: A randomized controlled trial. Ofogh-e-Danesh, 15(2), 17–23.
Rajiv, J., Soumya, C., Indrani, D., & Venkateswara Rao, G. (2011). Effect of replacement of wheat flour with finger millet flour (Eleusine coracana) on the batter microscopy, rheology and quality characteristics of muffins. Journal of Texture Studies, 42(6), 478–489.
Rayes, N., Seehofer, D., & Neuhaus, P. (2009). Prebiotics, probiotics, synbiotics in surgery: Are they only trendy, truly effective or even dangerous? Langenbeck's Archives of Surgery, 394, 547–555.
Risi, J., & Galwey, N. W. (1984). The Chenopodium grains of the Andes: Inca crops for modern agriculture. Advances in Applied Biology, 10, 145–216.
Rizzello, C. G., Lorusso, A., Montemurro, M., & Gobbetti, M. (2016). Use of sourdough made with quinoa (Chenopodium quinoa) flour and autochthonous selected lactic acid bacteria for enhancing the nutritional, textural and sensory features of white bread. Food Microbiology.
Roberfroid, M. F. (2002). Functional food concept and its application to prebiotics. Digestive and Liver Disease, 34(Suppl. 2), S105–S110.
Romero-Lopez, M. R., Osorio-Diaz, P., Bello-Perez, L. A., Tovar, J., & Bernardino-Nicanor, A. (2011). Fiber concentrate from orange (Citrus sinensis L.) bagasse: Characterization and application as bakery product ingredient. International Journal of Molecular Sciences, 12, 2174–2186.
Sabanis, D., Lebesi, D., & Tzia, C. (2009). Effect of dietary fibre enrichment on selected properties of gluten-free bread. LWT - Food Science and Technology, 42(8), 1380–1389.
Salehi, F., Kashaninejad, M., & Alipour, N. (2015). Investigating the physicochemical, sensory and texture characteristics of sponge cake enriched with apple powder. New Technologies in the Food Industry, 3(11), 39–47. (In Persian)
Shaker, V., Ghayashi Tarzi, B., & Qavami, M. (2013). The effects of adding wheat germ on the chemical, sensory, cooking and microbial characteristics of pasta. Iranian Journal of Nutrition Sciences and Food Industries, 7(3), 89–100. (In Persian)
Tayibi, M., & Ghorbanpour, A. (2014). Prebiotic cake. In Proceedings of the First National Snack Conference. (In Persian)
Tavakoli Fadiheh, M. (2016).
Formulation of gluten-free bread using quinoa flour and sorghum flour replacement. International Conference of Agricultural Sciences, Medicinal Plants and Traditional Medicine, Mashhad.
https://civilica.com/doc/740089 (In Persian)
Verbeken, D., Dierckx, S., & Dewettinck, K. (2003). Exudate gums: Occurrence, production, and applications. Applied Microbiology and Biotechnology, 63, 10–21.
Vivas, B. M. (2013). Development of gluten-free bread (PhD thesis, Universitat Autònoma de Barcelona, Spain).
Vosooghipour, Z. (2014). Some physicochemical characteristics of gluten-free dough and cake enriched with carrot pomace powder (Master’s thesis, Shiraz International Campus University, Faculty of Agriculture). (In Persian)
Wongkaew, M., Chaimongkol, P., Leksawasdi, N., & Sommano, S. (2021).
Mango peel pectin: Recovery, functionality and sustainable uses. Polymers, 13(22), 3898.
https://doi.org/10.3390/polym13223898
Zannini, E., Miller-Jones, J., Renzetti, S., & Arendt, E. K. (2012). Functional replacements for gluten. Annual Review of Food Science and Technology, 3, 227–245