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本文引用的文献

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Respiratory and muscular effort during pre-slaughter stress affect Nile tilapia fillet quality.宰前应激时的呼吸和肌肉活动会影响罗非鱼片的品质。
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2
Effects of Stocking Density and Pre-Slaughter Handling on the Fillet Quality of Largemouth Bass (): Implications for Fish Welfare.放养密度和宰前处理对大口黑鲈鱼片品质的影响():对鱼类福利的启示
Foods. 2024 May 10;13(10):1477. doi: 10.3390/foods13101477.
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Effect of different slaughter/stunning methods on stress response, quality indicators and susceptibility to oxidation of large yellow croaker (Larimichthys crocea).不同屠宰/致晕方法对大黄鱼(Larimichthys crocea)应激反应、品质指标和氧化易感性的影响。
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Blood biomarkers as diagnostic tools: An overview of climate-driven stress responses in fish.血液生物标志物作为诊断工具:鱼类受气候驱动的应激反应概述。
Sci Total Environ. 2022 Oct 15;843:156910. doi: 10.1016/j.scitotenv.2022.156910. Epub 2022 Jun 24.
5
Stocking density mediated stress modulates growth attributes in cage reared Labeo rohita (Hamilton) using multifarious biomarker approach.采用多种生物标志物方法研究养殖密度介导的应激对网箱养殖罗非鱼(Hamilton)生长特性的影响。
Sci Rep. 2022 Jun 14;12(1):9869. doi: 10.1038/s41598-022-13570-x.
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Biomarkers of Oxidative Stress and Antioxidant Defense.氧化应激和抗氧化防御的生物标志物。
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7
Dietary Guduchi (Tinospora cordifolia) enhanced the growth performance, antioxidative capacity, immune response and ameliorated stress-related markers induced by hypoxia stress in Nile tilapia (Oreochromis niloticus).饲料钩吻(Tinospora cordifolia)可提高尼罗罗非鱼(Oreochromis niloticus)的生长性能、抗氧化能力、免疫反应,并改善缺氧应激引起的应激相关标志物。
Fish Shellfish Immunol. 2022 Jan;120:337-344. doi: 10.1016/j.fsi.2021.12.002. Epub 2021 Dec 6.
8
Water holding properties of Atlantic salmon.大西洋鲑鱼的持水特性
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Understanding the Determination of Meat Quality Using Biochemical Characteristics of the Muscle: Stress at Slaughter and Other Missing Keys.利用肌肉生化特性理解肉质的判定:屠宰时的应激及其他缺失的关键因素
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Incidence of pale, soft and exudative (PSE) pork meat in reason of extrinsic stress factors.由外在应激因素导致的苍白、松软、渗水(PSE)猪肉的发生率。
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宰前休息对于改善高密度活体运输尼罗罗非鱼鱼片的生理状态和品质有效。

Pre-Slaughter Rest Is Effective in Improving the Physiology and Quality of Nile Tilapia Fillets Subjected to In Vivo Transportation at High Densities.

作者信息

Silva Maria Ildilene da, Silva Valfredo Figueira da, Goes Marcio Douglas, Cardoso Sara Ugulino, Baumgartner Leonardo Aluisio, Souza Maria Luiza Rodrigues de, Honorato Claucia Aparecida, Bombardelli Robie Allan, Goes Elenice Souza Dos Reis

机构信息

Postgraduate Program in Animal Science, Faculty of Agricultural Sciences, Federal University of Grande Dourados, Dourados 79825-070, MS, Brazil.

Postgraduate Program in Fisheries Resources and Fisheries Engineering, State University of Western Paraná, Toledo 85903-220, PR, Brazil.

出版信息

Foods. 2025 Jun 27;14(13):2279. doi: 10.3390/foods14132279.

DOI:10.3390/foods14132279
PMID:40647031
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12248842/
Abstract

This study evaluated the impact of transporting Nile tilapia at stocking densities of 250 kg/m and 500 kg/m for 1 h, with post-transport resting periods of 0, 2, 4, and 6 h, on biochemical parameters and fillet quality. A 2 × 4 factorial design was employed for the experiment, with 15 repetitions per treatment. The density of 500 kg/m resulted in a longer time to rigor mortis after 4 h of rest, while shorter rigor times were observed at 0 and 2 h. Fillets taken from fish transported at 250 kg/m for 4 h exhibited greater intensities of red and yellow color. The highest weight loss during cooking occurred in fish transported at 500 kg/m without rest. High-density stocking increased the pH of the fillets, reduced color intensity, and increased weight loss and drip loss. Resting periods of 4 and 6 h resulted in firmer fillets with improved water retention. Fish rested for 6 h at 250 kg/m recovered glycogen and glucose levels, indicating restored homeostasis. In contrast, fish subjected to high-density transport showed impaired metabolic recovery and compromised fillet quality. These results support the use of resting periods to improve fish welfare and product quality in aquaculture systems.

摘要

本研究评估了尼罗罗非鱼在250千克/立方米和500千克/立方米的放养密度下运输1小时,并在运输后分别静置0、2、4和6小时,对其生化参数和鱼片品质的影响。实验采用2×4析因设计,每个处理重复15次。500千克/立方米的密度导致在静置4小时后达到僵硬期的时间更长,而在0和2小时观察到较短的僵硬时间。从以250千克/立方米运输4小时的鱼身上取下的鱼片呈现出更深的红色和黄色。在不静置的情况下,以500千克/立方米运输的鱼在烹饪过程中失重最多。高密度放养增加了鱼片的pH值,降低了颜色强度,增加了失重和滴水损失。4和6小时的静置期使鱼片更紧实,保水性提高。在250千克/立方米下静置6小时的鱼恢复了糖原和葡萄糖水平,表明内环境稳态得以恢复。相比之下,高密度运输的鱼代谢恢复受损,鱼片品质下降。这些结果支持在水产养殖系统中利用静置期来改善鱼类福利和产品质量。