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[41] Cao R, Xue C H, Liu Q. Changes in microbial flora of high pressure treatment on shucking and quality of Pat-
Pacific oysters (Crassostrea gigas) during refrigerated inopecten yessoensis[J]. Journal of Zhejiang Ocean Uni-
storage and its shelf-life extension by chitosan[J]. Inter- versity (Natural Science), 2020, 39(2): 117 − 122.
national Journal of Food Microbiology, 2009, 131(2−3): [50] 杨华,张李玲,张慧恩,等. 缢蛏超高压保鲜工艺的
272 − 276. 研究 [J]. 食品科技,2014,39(4) :129 − 134.
[42] Briones L S, Reyes J E, Tabilo-Munizaga G E, et al. Mi- Yang H, Zhang L L, Zhang H E, et al. High hydrostatic
crobial shelf-life extension of chilled Coho salmon (On- pressure (HHP) preservation process of Sinonovacula
corhynchus kisutch) and abalone (Haliotis rufescens) by constricta[J]. Food Science and Technology, 2014,
high hydrostatic pressure treatment[J]. Food Control, 39(4): 129 − 134.
2010, 21(11): 1530 − 1535. [51] Messens W, Van Camp J, Huyghebaert A. The use of
[43] Georget E, Sevenich R, Reineke K, et al. Inactivation of high pressure to modify the functionality of food pro-
microorganisms by high isostatic pressure processing in teins[J]. Trends in Food Science & Technology, 1997,
complex matrices: a review[J]. Innovative Food Scien- 8(4): 107 − 112.
ce & Emerging Technologies, 2015, 27: 1 − 14. [52] Silva J L, Foguel D, Royer C A. Pressure provides new
[44] 纵伟,梁茂雨,申瑞玲. 超高压技术对水产品的影响 insights into protein folding, dynamics and structure[J].
[J]. 北京水产,2006(6) :52 − 55. Trends in Biochemical Sciences, 2001, 26(10): 612 −
Zong W, Liang M Y, Shen R L. The influence of ultra- 618.
high pressure technology on aquatic products[J]. Journ- [53] 纪维智. 不同加工处理香港牡蛎的生化成分和非挥发
al of Beijing Fisheries, 2006(6): 52 − 55. 性风味活性成分比较 [D]. 海口:海南大学,2022.
[45] 魏静,解新安. 食品超高压杀菌研究进展 [J]. 食品工 Ji W Z. Comparison of biochemical composition and
业科技,2009,30(6) :363 − 367. non-volatile flavor active compounds of oysters Crasso-
Wei J, Xie X A. Advance in food sterilization by ultra- strea hongkongensis with different treatments[D]. Hai-
high pressure[J]. Science and Technology of Food In- kou: Hainan University, 2022.
dustry, 2009, 30(6): 363 − 367. [54] Chawla R, Patil G R, Singh A K. High hydrostatic pres-
[46] Norton T, Sun D W. Recent advances in the use of high sure technology in dairy processing: a review[J]. Journ-
pressure as an effective processing technique in the food al of Food Science and Technology, 2011, 48(3): 260 −
industry[J]. Food and Bioprocess Technology, 2008, 268.
1(1): 2 − 34. [55] Cruz-Romero M, Kelly A L, Kerry J P. Effects of high-
[47] 夏远景,薄纯智,张胜勇,等. 超高压食品处理技术 pressure and heat treatments on physical and biochemi-
[J]. 食品与药品,2006,8(2) :62 − 67. cal characteristics of oysters (Crassostrea gigas)[J]. In-
Xia Y J, Bo C Z, Zhang S Y, et al. High pressure techno- novative Food Science & Emerging Technologies, 2007,
logy for food processing[J]. Food and Drug, 2006, 8(2): 8(1): 30 − 38.
62 − 67. [56] 卢婷,刘金福,刘伟,等. 加热与超高压对缢蛏蛋白
[48] 陈林昀,李汴生,阮征,等. 超高压处理不同水产品 质变性及酶解的影响 [J]. 食品研究与开发,2013,
的感官品质变化研究 [J]. 中国调味品,2021,46(2) : 34(1) :8 − 12.
1 − 7,36. Lu T, Liu J F, Liu W, et al. The effects of heating and ul-
Chen L Y, Li B S, Ruan Z, et al. Study on sensory qual- tra-high pressure processing on protein denaturation and
ity changes of different aquatic products treated with ul- enzymatic hydrolysis of Sinonovacula constricta Lamar-
tra-high pressure[J]. China Condiment, 2021, 46(2): 1 − ck[J]. Food Research and Development, 2013, 34(1):
7, 36. 8 − 12.
[49] 文丽华,陈启航,宣晓婷,等. 超高压处理对虾夷扇 [57] Cheng Y F, Li Y Y, Yang H C, et al. Spoilage mechanism
贝脱壳及其品质影响的研究 [J]. 浙江海洋大学学报 and preservation technologies on the quality of salmon:
(自然科学版) ,2020,39(2) :117 − 122. an overview[J]. Food Bioscience, 2025, 69: 107006.
Wen L H, Chen Q H, Xuan X T, et al. Effects of ultra- [58] Medina-Meza I G, Barnaba C, Barbosa-Cánovas G V.

