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Changes in Optical Properties During Heating of ex vivo Liver Tissues

机译:加热离体肝组织过程中光学性质的变化

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Thermal ablation is the use of heat to induce cell death through coagulative necrosis. Ideally, complete ablation of tumor cells with no damage to surrounding critical structures such as blood vessels, nerves or even organs is desired. Ablation monitoring techniques are often employed to ensure optimal tumor ablation. In thermal tissue ablation, tissue damage is known to be dependent on the temperature and time of exposure. Aptly, current methods for monitoring ablation rely profoundly on local tissue temperature and duration of heating to predict the degree of tissue damage. However, such methods do not take into account the microstructural and physiological changes in tissues as a result of thermocoagulation. Light propagation within biological tissues is known to be dependent on the tissue microstructure and physiology. During tissue denaturation, changes in tissue structure alter light propagations in tissue which could be used to directly assess the extent of thermal tissue damage. We report the use of a spectroscopic system for monitoring the tissue optical properties during heating of ex vivo liver tissues. We observed that during tissue denaturation, continuous changes in wavelength-averaged μa(λ) and μ'_s(λ) followed a sigmoidal trend and are correlated with damage predicted by Arrhenius model.
机译:热消融是利用热量通过凝集性坏死诱导细胞死亡。理想地,需要完全消融肿瘤细胞而不会破坏周围的关键结构,例如血管,神经甚至器官。通常采用消融监测技术以确保最佳的肿瘤消融。在热组织消融中,已知组织损伤取决于暴露的温度和时间。适当地,当前用于监测消融的方法极大地依赖于局部组织温度和加热持续时间来预测组织损伤的程度。但是,这样的方法没有考虑到由于热凝结而引起的组织的微结构和生理变化。已知生物组织内的光传播取决于组织的微结构和生理学。在组织变性过程中,组织结构的变化会改变组织中的光传播,可用于直接评估组织热损伤的程度。我们报告使用光谱系统来监测离体肝组织加热过程中的组织光学特性。我们观察到,在组织变性期间,平均波长的μa(λ)和μ'_s(λ)的连续变化遵循S形趋势,并与Arrhenius模型预测的损伤相关。

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