共 13 条
- [1] 33, (2012)
- [2] WHEELER T L, KOOHMARAIE M, LANSDELL J L, Et al., Effects of postmortem injection time, injection level, and concentration of calcium chloride on beef quality traits, Journal of Animal Science, 71, 11, (1993)
- [3] ANTONELLA D M, ROSARIA M, ANTONELLA S, Et al., Proteomic approach to investigate the impact of different dietary supplementation on lamb meat tenderness, Meat Science, 131, pp. 74-81, (2017)
- [4] GAO Y F, ZHANG J Y, HE L, Et al., Associations among adenosine monophosphate-activated protein kinase, glycolysis, muscle characteristics, and apoptosis in postmortem bovines longissimus muscle, European Food Research and Technology, 246, 5, pp. 971-985, (2020)
- [5] SELLIMI S, KSOUDA G, BENSLIMA A, Et al., Enhancing colour and oxidative stabilities of reduced-nitrite turkey meat sausages during refrigerated storage using fucoxanthin purified from the Tunisian seaweed Cystoseira barbata, Food and Chemical Toxicology, 107, pp. 620-629, (2017)
- [6] CHEN N, JIANG Q, GAO P, Et al., Gel properties, physicochemical properties, and sensory attributes of white leg shrimp (Litopenaeus vannamei) surimi gel treated with sodium chloride (NaCl) substitutes, International Journal of Food Science & Technology, 58, 1, pp. 22-36, (2023)
- [7] JACOB R., Implications of the variation in bloom properties of red meat: a review, Meat Science, 162, (2020)
- [8] KRASULYA O, SMIRNOVA A, BOGUSH V, Et al., Estimation of the stability of skeletal muscle myoglobin of chilled pork treated with brine activated by low-frequency high-intensity ultrasound, Ultrasonics Sonochemistry, 71, (2021)
- [9] MADHUSANKHA G D M P, THILAKARATHNA R C N., Meat tenderization mechanism and the impact of plant exogenous proteases: a review, Arabian Journal of Chemistry, 14, 2, (2021)
- [10] LAWRENCE T E, DIKEMAN M E, HUNT M C, Et al., Effects of calcium salts on beef longissimus quality, Meat Science, 64, 3, pp. 299-308, (2003)