Ultrasound pretreatment for improving the quality and protein digestibility of stir-frying chicken gizzards.
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Qian Liu | Qian Chen | B. Kong | Xiufang Xia | Fangda Sun | Haotian Liu | Haijing Li
[1] Xiufang Xia,et al. Evaluation of effects of ultrasound-assisted saucing on the quality of chicken gizzards , 2022, Ultrasonics sonochemistry.
[2] Qian Liu,et al. Mechanisms of Change in Emulsifying Capacity Induced by Protein Denaturation and Aggregation in Quick-Frozen Pork Patties with Different Fat Levels and Freeze–Thaw Cycles , 2021, Foods.
[3] Yuzhu Luo,et al. Effects of ultrasound pretreatment on the quality, nutrients and volatile compounds of dry-cured yak meat , 2021, Ultrasonics sonochemistry.
[4] Chunbao Li,et al. Ultrasound treatment can increase digestibility of myofibrillar protein of pork with modified atmosphere packaging , 2021, Food Chemistry.
[5] Qian Liu,et al. Application of ultrasound treatment in chicken gizzards tenderization: Effects on muscle fiber and connective tissue , 2021, Ultrasonics sonochemistry.
[6] Jinfeng Xing,et al. Focusing on intramuscular connective tissue: Effect of cooking time and temperature on physical, textual, and structural properties of yak meat. , 2021, Meat science.
[7] Xin Du,et al. Effectiveness of ice structuring protein on the myofibrillar protein from mirror carp (Cyprinus carpio L.) during cryopreservation: reduction of aggregation and improvement of emulsifying properties , 2021, International Journal of Refrigeration.
[8] Rongxin Wen,et al. Characterisation of flavour profile of beef jerky inoculated with different autochthonous lactic acid bacteria using electronic nose and gas chromatography-ion mobility spectrometry. , 2021, Meat science.
[9] M. Karakaya,et al. Proximate compositions, fatty acids and mineral contents of chicken and turkey gizzards, and textural properties after tenderization with proteolytic enzymes , 2021, Journal of Food Processing and Preservation.
[10] B. Kong,et al. Dynamics of heat transfer and moisture in beef jerky during hot air drying. , 2021, Meat science.
[11] Xin Du,et al. Tracking aggregation behaviour and gel properties induced by structural alterations in myofibrillar protein in mirror carp (Cyprinus carpio) under the synergistic effects of pH and heating. , 2021, Food chemistry.
[12] Qunli Yu,et al. Oxidation of myofibrillar protein and crosslinking behavior during processing of traditional air-dried yak (Bos grunniens) meat in relation to digestibility , 2021 .
[13] Yahong Yuan,et al. Changes in aroma components and potential Maillard reaction products during the stir-frying of pork slices , 2021 .
[14] Hanne K Mæhre,et al. Improved estimation of in vitro protein digestibility of different foods using size exclusion chromatography. , 2021, Food chemistry.
[15] Sunil Kumar,et al. Emerging processing technologies for improved digestibility of muscle proteins , 2021 .
[16] Qian Liu,et al. Dynamic changes in the qualities and heterocyclic aromatic amines of roasted pork induced by frying temperature and time. , 2021, Meat science.
[17] Wangang Zhang,et al. Effects of ultrasound-assisted cooking on quality characteristics of spiced beef during cold storage , 2021 .
[18] Ruiming Luo,et al. Formation of flavor volatile compounds at different processing stages of household stir-frying mutton sao zi in the northwest of China , 2020 .
[19] Rongxin Wen,et al. Characterization of selected Harbin red sausages on the basis of their flavour profiles using HS-SPME-GC/MS combined with electronic nose and electronic tongue. , 2020, Meat science.
[20] A. Okruszek,et al. The selected goose meat quality traits in relation to various types of heat treatment , 2020, Poultry science.
[21] B. Kong,et al. Effect of freeze-thaw cycles on the quality of quick-frozen pork patty with different fat content by consumer assessment and instrument-based detection. , 2020, Meat science.
[22] Yun-Sang Choi,et al. Comparison of the in vitro protein digestibility of Protaetia brevitarsis larvae and beef loin before and after defatting. , 2020, Food chemistry.
[23] B. Kong,et al. Deterioration in quality of quick-frozen pork patties induced by changes in protein structure and lipid and protein oxidation during frozen storage. , 2020, Food research international.
[24] Wangang Zhang,et al. Influences of ultrasonic-assisted frying on the flavor characteristics of fried meatballs , 2020 .
[25] S. Casal,et al. Influence of culinary practices on protein and lipid oxidation of chicken meat burgers during cooking and in vitro gastrointestinal digestion. , 2020, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[26] Y. Kim,et al. Combined effects of sous-vide cooking conditions on meat and sensory quality characteristics of chicken breast meat , 2020, Poultry science.
[27] Xinglian Xu,et al. Physicochemical and microstructural attributes of marinated chicken breast influenced by breathing ultrasonic tumbling. , 2020, Ultrasonics sonochemistry.
[28] Min Zhang,et al. Application of ultrasound technology in processing of ready-to-eat fresh food: A review. , 2019, Ultrasonics sonochemistry.
[29] Daoying Wang,et al. Combined effect of ultrasound and sodium bicarbonate marination on chicken breast tenderness and its molecular mechanism. , 2019, Ultrasonics sonochemistry.
[30] Z. Bhat,et al. Pulsed electric field: Effect on in-vitro simulated gastrointestinal protein digestion of deer Longissimus dorsi. , 2019, Food research international.
[31] A. Alarcon‐Rojo,et al. Ultrasound as a potential process to tenderize beef: Sensory and technological parameters. , 2019, Ultrasonics sonochemistry.
[32] Shiyuan Dong,et al. Influence of cooking methods on protein modification and in vitro digestibility of hairtail (Thichiurus lepturus) fillets , 2018, LWT.
[33] X. Li,et al. The effect of ultrasound treatments on the tenderizing pathway of goose meat during conditioning , 2018, Poultry science.
[34] C. Chan,et al. Emission of volatile organic compounds and production of secondary organic aerosol from stir-frying spices. , 2017, The Science of the total environment.
[35] Guang-hong Zhou,et al. Effects of ultrasound on the beef structure and water distribution during curing through protein degradation and modification. , 2017, Ultrasonics sonochemistry.
[36] S. Lević,et al. Effect of the Controlled High-Intensity Ultrasound on Improving Functionality and Structural Changes of Egg White Proteins , 2017, Food and Bioprocess Technology.
[37] Nafiseh Soltanizadeh,et al. Improvement of meat tenderness by simultaneous application of high-intensity ultrasonic radiation and papain treatment , 2017 .
[38] F. Tan,et al. Influences of end-point heating temperature on the quality attributes of chicken meat , 2016, British poultry science.
[39] Chung-Yi Wang,et al. Recent Advances in Food Processing Using High Hydrostatic Pressure Technology , 2016, Critical reviews in food science and nutrition.
[40] Guang-hong Zhou,et al. Effect of cooking on in vitro digestion of pork proteins: a peptidomic perspective. , 2015, Journal of agricultural and food chemistry.
[41] Mouming Zhao,et al. Effect of Maillard reaction products derived from the hydrolysate of mechanically deboned chicken residue on the antioxidant, textural and sensory properties of Cantonese sausages. , 2010, Meat science.
[42] A. Grönroos,et al. Ultrasonic degradation of aqueous carboxymethylcellulose: effect of viscosity, molecular mass, and concentration. , 2008, Ultrasonics sonochemistry.
[43] B. Bhandari,et al. Effect of high power ultrasound and ageing on the physical properties of bovine Semitendinosus and Longissimus muscles. , 2007, Meat science.
[44] A. H. Gómez,et al. Evaluation of tomato maturity by electronic nose , 2006 .
[45] B. Kong,et al. Influence of Gender and Spawning on Meat Quality of Australian Red Claw Crayfish (Cherax quadricarinatus) Stored at 2 °C , 2006 .
[46] E. Tornberg,et al. Effects of heat on meat proteins - Implications on structure and quality of meat products. , 2005, Meat science.
[47] M. Kaya,et al. THE EFFECT OF ORGANIC ACID MARINATION ON TENDERNESS, COOKING LOSS AND BOUND WATER CONTENT OF BEEF , 2003 .
[48] A. G. Viana,et al. Optimization of the still-marinating process of chicken parts. , 1999, Meat science.
[49] Magni Martens,et al. TEXTURE AND COLOUR CHANGES IN MEAT DURING COOKING RELATED TO THERMAL DENATURATION OF MUSCLE PROTEINS , 1982 .
[50] Malcolm C. Bourne,et al. Texture profile analysis , 1978 .