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Capture of spatially homogeneous chemical reactions in tissue by freezing.

机译:通过冷冻捕获组织中空间均匀的化学反应。

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摘要

A useful technique in studying the saturation of hemoglobin in erythrocytes or myoglobin in tissue is cryophotometry, in which tissue is frozen for later spectrophotometric analysis. A general question associated with this technique is whether the freezing process alters the chemical state. This paper presents a theoretical analysis of the simplest model relevant to that question. We study the effect of rapid cooling on a spatially homogeneous chemical reaction. The analysis shows that changes during freezing are negligible near the boundary to which the heat sink is applied, but can be significant deeper in the sample. The distance from the boundary at which the changes during freezing become appreciable can be expressed simply in terms of the chemical reaction rates and the thermal diffusivity of the tissue. Detailed results are given for the case of oxygen and myoglobin in skeletal muscle.
机译:研究组织中红血球的血红蛋白饱和度或组织中的肌红蛋白饱和度的一种有用技术是冷冻光度法,其中将组织冷冻,以便以后进行分光光度法分析。与该技术有关的一个普遍问题是冷冻过程是否会改变化学状态。本文提出了与该问题相关的最简单模型的理论分析。我们研究了快速冷却对空间均匀化学反应的影响。分析表明,冷冻过程中在施加散热器的边界附近的变化可以忽略不计,但在样品深处可能显着。可以简单地根据组织的化学反应速率和热扩散率来表示距冻结时的变化变得明显的边界的距离。给出了骨骼肌中氧气和肌红蛋白的详细结果。

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