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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Dynamics of temperature dependent optical properties of tissue: dependence on thermally induced alteration
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Dynamics of temperature dependent optical properties of tissue: dependence on thermally induced alteration

机译:组织温度依赖性光学特性的动力学:对热诱导变化的依赖性

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摘要

Thermal damage in heated bovine myocardial tissue is assessed from measured changes in total reflection and transmission of light. Mathematical expressions, based on random walk analysis of light propagation within tissue slabs, are used to relate the diffuse reflection and transmittance to the absorption coefficient, /spl mu//sub a/, and effective scattering coefficient, /spl mu/'/sub s/ for samples of myocardial tissue which were subjected to rapid step changes in temperature. Time-dependent changes in /spl mu/'/sub s/ indicate two processes, one with a fast and temperature-dependent rate the other with a slow and apparently temperature-independent rate. For final temperatures above 56.8/spl deg/C and for the first 500 s after the temperature change, the optical parameters are well fit by exponential forms that exhibit temperature-dependent time constants as predicted by Arrhenius reaction rate theory of thermal damage. The scattering changes are associated with an apparent activation energy, /spl Delta/E, of 162 kJ/mole and a frequency constant, A, of 3/spl times/10/sup 23/ s/sup -1/. This method provides a means for estimating optical coefficients which are needed to assess laser tissue dosimetry.
机译:根据测得的全反射和光透射变化评估加热的牛心肌组织的热损伤。基于对组织板内光传播的随机游动分析的数学表达式用于将漫反射和透射率与吸收系数/ spl mu // sub a /和有效散射系数/ spl mu /'/ sub相关联s /用于经历温度快速阶跃变化的心肌组织样品。 / spl mu /'/ sub s /中随时间变化的变化表示两个过程,一个过程具有与温度有关的快速速率,另一过程具有与温度无关的缓慢且明显与温度无关的速率。对于最终温度高于56.8 / spl deg / C的温度以及温度变化后的前500 s,光学参数可以通过指数形式很好地拟合,这些形式表现出温度依赖性的时间常数,如热损伤的Arrhenius反应速率理论所预测的那样。散射变化与表观活化能/ spl Delta / E为162 kJ / mol和频率常数A为3 / spl次/ 10 / sup 23 / s / sup -1 /相关。该方法提供了一种估计光学系数的方法,该光学系数是评估激光组织剂量测定法所需的。

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