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Review of temperature dependence of thermal properties dielectric properties and perfusion of biological tissues at hyperthermic and ablation temperatures

机译:在高温和烧蚀温度下对热性质介电性质以及生物组织灌注的温度依赖性的综述

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摘要

The application of supraphysiological temperatures (>40°C) to biological tissues causes changes at the molecular, cellular, and structural level, with corresponding changes in tissue function and in thermal, mechanical and dielectric tissue properties. This is particularly relevant for image-guided thermal treatments (e.g. hyperthermia and thermal ablation) delivering heat via focused ultrasound (FUS), radiofrequency (RF), microwave (MW), or laser energy; temperature induced changes in tissue properties are of relevance in relation to predicting tissue temperature profile, monitoring during treatment, and evaluation of treatment results.This paper presents a literature survey of temperature dependence of electrical (electrical conductivity, resistivity, permittivity) and thermal tissue properties (thermal conductivity, specific heat, diffusivity). Data of soft tissues (liver, prostate, muscle, kidney, uterus, collagen, myocardium and spleen) for temperatures between 5 to 90°C, and dielectric properties in the frequency range between 460 kHz and 3 GHz are reported. Furthermore, perfusion changes in tumors including carcinomas, sarcomas, rhabdomyosarcoma, adenocarcinoma and ependymoblastoma in response to hyperthmic temperatures up to 46°C are presented. Where appropriate, mathematical models to describe temperature dependence of properties are presented.The presented data is valuable for mathematical models that predict tissue temperature during thermal therapies (e.g. hyperthermia or thermal ablation), as well as for applications related to prediction and monitoring of temperature induced tissue changes.
机译:将超生理温度(> 40°C)应用于生物组织会导致分子,细胞和结构水平的变化,同时组织功能以及热,机械和介电组织特性也会发生相应变化。这尤其适用于通过聚焦超声(FUS),射频(RF),微波(MW)或激光能量传递热量的图像引导热处理(例如,高温和热消融);温度引起的组织特性变化与预测组织温度曲线,治疗期间的监测以及治疗结果的评估有关。本文介绍了电学(电导率,电阻率,介电常数)和热组织特性对温度的依赖性的文献综述。 (热导率,比热,扩散率)。报告了温度在5至90°C之间的软组织(肝脏,前列腺,肌肉,肾脏,子宫,胶原蛋白,心肌和脾脏)的数据,介电性能在460 kHz至3 GHz的频率范围内。此外,还提出了响应于高达46°C的高温,肿瘤(包括癌,肉瘤,横纹肌肉瘤,腺癌和上皮细胞瘤)的灌注变化。在适当的情况下,将提供描述特性对温度的依赖性的数学模型。所提供的数据对于在热疗期间预测组织温度(例如,高温或热消融)的数学模型以及与预测和监测温度诱发的应用有关的有价值的数据。组织改变。

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  • 期刊名称 other
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  • 年(卷),期 -1(42),6
  • 年度 -1
  • 页码 467–492
  • 总页数 31
  • 原文格式 PDF
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