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Impact of ice crystal development on electrical impedance characteristics and mechanical property of green asparagus stems

机译:冰晶发育对绿芦笋茎电阻抗特性和力学性能的影响

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摘要

The effects of ice crystal formation during freezing using three different methods: slow freezing, air blast freezing and liquid nitrogen spray freezing on the cell membrane state and mechanical property of asparagus stem samples were investigated. X-ray computed tomographic analysis revealed coarser ice crystal growth with slow freezing compared to the rapid freezing methods, which were characterized by fine and homogeneous ice crystal growth. However, electrical impedance analysis clarified that the structural damage and functional decline of cell membranes occurred regardless of the freezing method. Further, the elastic property of each frozen sample declined greatly after thawing and showed little improvement with rapid freezing. These results suggest that the reduction in turgor pressure following changes in the cell membrane state, attributable to the formation of ice crystals during freezing, is a major factor in the mechanical property, and this phenomenon is independent of the freezing rate and ice crystal size.
机译:研究了三种不同方法在冷冻过程中冰晶形成的影响:慢速冷冻,鼓风冷冻和液氮喷雾冷冻对芦笋茎样品的细胞膜状态和力学性能的影响。 X射线计算机断层扫描分析显示,与快速冷冻方法相比,缓慢冷冻的冰晶生长更粗糙,其特征在于精细且均匀的冰晶生长。然而,电阻抗分析表明,不管冷冻方法如何,都会发生细胞膜的结构破坏和功能下降。此外,每个冷冻样品的弹性在解冻后大大降低,并且在快速冷冻下几乎没有改善。这些结果表明,由于冷冻过程中冰晶的形成而引起的细胞膜状态变化后的膨胀压力降低是机械性能的主要因素,并且该现象与冷冻速率和冰晶尺寸无关。

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