The Effect of Cooking Method on the Nutritional Characteristics of “Dendeng Kariang” as a Traditional Minangkabau Food
How to cite (IJASEIT) :
Azima, F., Neswati., Syukri, D., Indrayenti D. Utilization of mixed oyek cassava, corn grits, brown rice, and soy grits in the production of snack extrusion. Research Journal of Pharmaceutical, Biological and Chemical Sciences.7, 1063-1069. 2016.
Azima, F., Novelina, Suryanti, I., Syukri, D. Production of an instant functional beverage made from ciplukan (Physalis angulata L.) with Cassia vera. Pakistan Journal of Nutrition. 17(7), 355-360. 2018.
Rosalina, E. Afridian, W.A., Anda, D.H. Strategi Pengembangan Makanan Unggulan Minangkabau Berdaya Saing Global. Jurnal Akuntansi & Manajemen.Vol 10 No. 2. Padang, Politeknik Negeri Padang.2015.
Suryati, T., Astawan, M., Lioe, H. N., & Wresdiyati, T. Curing ingredients, characteristics, total phenolic, and antioxidant activity of commercial Indonesian dried meat product (dendeng). Media Peternakan, 35(2), 111-116. 2012.
Sumiati. Pengaruh Pengolahan Terhadap Mutu Cerna Protein Ikan Mujair (Tilapia Mossambica). [Skripsi] Program Studi Gizi Masyarakat Dan Sumberdaya Keluarga. Fakultas Pertanian. Institut Pertanian Bogor. 2008
Gharibzahedi, S. M. T., Herní¡ndez-Ortega, C., Welti-Chanes, J., Putnik, P., Barba, F. J., Mallikarjunan, K. High pressure processing of food-grade emulsion systems: Antimicrobial activity and effect on the physicochemical properties. Food Hydrocolloids, 87, 307-320. 2019.
Horita, C. N., Baptista, R. C., Caturla, M.Y. R., Lorenzo, J. M., Barba, F.J., & Sant'Ana, A. S. Combining reformulation, active packaging, and non-thermal post- packaging decontamination technologies to increase the microbiological quality and safety of cooked ready-to-eat meat products. Trends in Food Science & Technology, 72, 45-61. 2018.
Kaur, L., Astruc, T., Ví©nien, A., Loison,O., Cui, J., Irastorza,M. High pressure processing of meat: Effects on ultrastructure and protein digestibility. Food Function, 7, 2389- 2397. 2016.
Kaur, L., Maudens, E., Haisman, D. R., Boland, M. J., & Singh, H. Microstructure, and protein digestibility of beef: The effect of cooking conditions as used in stews and curries. Lebensmittel-Wissenschaft und -Technologie- Food Science and Technology, 55, 612-620. 2014
Santí©-Lhoutellier, V., Astruc,T., Marinova,P., Greve,E., & Gatellier, P. Effect Of Meat Cooking On Physicochemical State And In Vitro Digestibility Of Myofibrillar Proteins. Journal of Agricultural and Food Chemistry, [56] 1488-1494. 2008.
Dalilah, E,. Evaluasi Nilai Gizi dan Karakteristik Protein Daging Sapi dan Hasil Olahannya. [Skripsi]. Bogor, Institut Pertanian Bogor. 2006.
Dueik, V. and Bouchon, P. Development of healthy low- fat snacks: understanding the mechanisms of quality changes during atmospheric vacuum frying. Food Reviews International 27: 408-432. 2011.
Andrí©s-Bello, A., García-Segovia, P., and J. MartínezMonzó, J. Vacuum frying process of gilthead sea bream (Sparus aurata) fillets. Innovative Food Science and Emerging Technologies 11: 630-633. 2010.
AOAC. Officialmethods of analysis of AOAC International (18th ed.) Maryland: AOAC International. 2005.
Bhat, Z.F., Morton, J.D., Mason, S.L., & Bekhit, A.E. A. Pulsed Electric Field Improved Protein Digestion of Beef During In-Vitro Gastrointestinal Simulation. LWT - Food Science and Technology. 102, 45-51. 2019.
Correa D.Z, Piedad M, C., and Raíºl J. M,. Effect of the Process Parameters on the Oil Extraction Yield During Supercritical Fluid Extraction from Grape Seed. Contemporary Engineering Sciences, 13, 611 - 617. 2018.
Budžaki, S., & Å eruga, B. Moisture loss and oil uptake during deep fat frying of “KroÅ¡tula” dough. European Food Research and Technology, 220(1), 90-95. 2005.
Gokoglu, N., Yerlikaya, P., & Cengiz, E. Effects of cooking methods on the proximate composition and mineral contents of rainbow trout (Oncorhynchus mykiss). Food Chemistry, 84, 19-22. 2004.
Oshibanjo. D.O, Olusola O. O., and Ogunwole O. A. Effect of Cooking Methods and Temperature on Proximate and Amino Acid Composition of Breakfast Sausage. European Journal of Nutrition & Food Safety. 9(4): 415-423. 2019.
Oz, F., Kaban G, Kaya M. Effects of cooking methods on the formation of heterocyclic aromatic amines of two different species trout. Food Chem. 104:67-72. 2007.
Fillion L, Henry C. Nutrient losses and gains during frying: a review. Int. J. Food Sci. Nutr. 1998; 49:157-168.
Wu,T., and Mao, L. Influences Of Hot Air Drying And Microwave Drying On Nutritional And Odorous Properties Of Grass Carp (Ctenopharyngodon Idellus) Fillets. Food Chemistry 110(3): 647-653. 2008.
Kmiecik, W., Słupski, J.and Lisiewska, Z. Comparison of Amino Acid Content and Protein Quality in Raw Broccoli and In Broccoli After Technological and Culinary Processing. Journal of Food Processing and Preservation. 34 (2): 639-652. 2010.
Lisiewska, Z., Kmiecik, W. and Korus, A. The Amino Acid Composition of Kale (Brassica Oleracea L. Var. Acephala), Fresh and After Culinary and Technological Processing. Food Chemistry 108 (2): 642-648. 2008.
Lisiewska,Z., Kmiecik,W. and Korus, A. The Amino Acid Composition of Kale (Brassica Oleracea L. Var. Acephala), Fresh and After Culinary and Technological Processing. Food Chemistry 108(2):642-648. 2008.
Korus, A. Effect of Technological Processing and Preservation Method on Amino Acid Content and Protein Quality in Kale (Brassica Oleracea L. Var. Acephala) Leaves. Journal of the Science of Food and Agriculture. 92(3): 618-625. 2012.
Bhat, Z F. Morton, J.D., Mason, S.L., & Bekhit, A.E. A. Pulsed Electric Field Improved Protein Digestion of Beef During In-Vitro Gastrointestinal Simulation. LWT - Food Science and Technology. 102 (2019) 45-51. 2019.
Folch, J., Lees, M., & Sloane Stanley, G. H. A simple method for the isolation and purification of total lipides from animal tissues. The Journal of Biological Chemistry, 226(1), 497-509. 1957.
Syukri, D., Thammawong, M., Naznin, H.A., Nakano, K. Role of Raffinose Family Oligosaccharides in Respiratory Metabolism During Soybean Seed Germinatio, Environmental Control in Biology, 57 (4), 107-112. 2019.

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