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Thermal injury models for optical treatment of biological tissues: a comparative study

机译:光学治疗生物组织的热损伤模型:比较研究

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The interaction of optical radiation with biological tissues causes an increase in the temperature that, depending on its magnitude, can provoke a thermal injury process in the tissue. The establishment of laser irradiation pathological limits constitutes an essential task, as long as it enables to fix and delimit a range of parameters that ensure a safe treatment in laser therapies. These limits can be appropriately described by kinetic models of the damage processes. In this work, we present and compare several models for the study of thermal injury in biological tissues under optical illumination, particularly the Arrhenius thermal damage model and the thermal dosimetry model based on CEM (Cumulative Equivalent Minutes) 43°C. The basic concepts that link the temperature and exposition time with the tissue injury or cellular death are presented, and it will be shown that they enable to establish predictive models for the thermal damage in laser therapies. The results obtained by both models will be compared and discussed, highlighting the main advantages of each one and proposing the most adequate one for optical treatment of biological tissues.
机译:光辐射与生物组织的相互作用会导致温度升高,根据温度的高低,该温度会引起组织中的热损伤过程。只要能够固定和界定确保激光治疗中安全治疗的参数范围,建立激光照射病理极限就成为一项基本任务。这些限制可以通过损坏过程的动力学模型适当地描述。在这项工作中,我们介绍并比较了几种在光学照明下研究生物组织热损伤的模型,特别是阿累尼乌斯(Arrhenius)热损伤模型和基于CEM(累积等效分钟数)43°C的热剂量模型。提出了将温度和暴露时间与组织损伤或细胞死亡联系起来的基本概念,并且将证明它们能够为激光疗法中的热损伤建立预测模型。将比较和讨论通过两种模型获得的结果,突出显示每种模型的主要优点,并提出最合适的一种光学处理生物组织的方法。

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