首页> 外文期刊>Food Science and Technology International >A non-invasive method for quantitative monitoring of quality changes and water migration in bigeye tuna (Thunnus obesus) during simulated cold chain logistics using low-field nuclear magnetic resonance coupled with PCA
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A non-invasive method for quantitative monitoring of quality changes and water migration in bigeye tuna (Thunnus obesus) during simulated cold chain logistics using low-field nuclear magnetic resonance coupled with PCA

机译:利用低场核磁共振与PCA耦合的模拟冷链物流在模拟冷链物流期间大眼金枪鱼(Thunnus Obesus)在质量变化和水迁移定量监测的非侵入性方法

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摘要

Bigeye tuna (Thunnus obesus) is an important fish species worldwide due to its desirable flavour and rich nutrition. Cold chain logistics is one of the most common methods to store and sell bigeye tuna (Thunnus obesus). The purpose of this study was to investigate how bigeye tuna (T. obesus) deteriorate during simulated cold chain logistics with fluctuating temperatures by monitoring the quality changes and water distribution. The physical and chemical results showed that the sensory score, texture profile analysis (TPA), and water holding capacity (WHC) decreased, while total volatile basic nitrogen (TVB-N), K value, aerobic plate counts (APC), and psychrotrophic bacterial counts increased with fluctuating temperatures during 132 h. Low-field nuclear magnetic resonance (LF-NMR) and magnetic resonance imaging (MRI) detection showed that the T-21 (trapped water) and proton density decreased, while T-22 (free water) decreased initially and then increased, indicating continuous water loss and water migration during storage. Principal component analysis (PCA) revealed that springiness, hardness, chewiness, T-21, and sensory score were correlated with each other (p < 0.05) and the linear combination of quality indicators and T-2 transverse relaxation time was established. Besides, temperature fluctuation (batch 3) accelerated the deterioration of bigeye tuna according to the comprehensive score of PCA. Results were based on LF-NMR which can be used to monitor quality changes in a fast non-invasive manner.
机译:由于其理想的风味和营养丰富,Bigeye Tuna(Thunnus Obesus)是全世界的重要鱼类。冷链物流是存储和出售Bigeye Tuna(Thunnus Obesus)的最常见方法之一。本研究的目的是调查Bigeye金枪鱼(T. Obessus)在模拟冷链物流期间如何恶化,通过监测质量变化和水分布而具有波动的温度。物理和化学结果表明,感官分数,纹理谱分析(TPA)和水持量(WHC)降低,而总挥发性碱性氮(TVB-N),K值,有氧板数(APC)和心理营养在132小时期间,细菌计数随着温度波动而增加。低场核磁共振(LF-NMR)和磁共振成像(MRI)检测显示T-21(捕获的水)和质子密度降低,而T-22(游离水)最初降低,然后增加,表明连续储存过程中的水损失和水迁移。主成分分析(PCA)揭示了弹性,硬度,咀嚼性,T-21和感觉分数彼此相关(P <0.05),并建立了质量指标和T-2横向松弛时间的线性组合。此外,温度波动(批量3)根据PCA的综合分数加速了Bigeye金枪鱼的恶化。结果基于LF-NMR,可用于以快速的非侵入方式监测质量变化。

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