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Determination of Tissue Thermal Conductivity by Measuring and Modeling Temperature Rise Induced in Tissue by Pulsed Focused Ultrasound

机译:通过测量和建模脉冲聚焦超声在组织中引起的温升来确定组织的导热系数

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摘要

A tissue thermal conductivity (Ks) is an important parameter which knowledge is essential whenever thermal fields induced in selected organs are predicted. The main objective of this study was to develop an alternative ultrasonic method for determining Ks of tissues in vitro suitable for living tissues. First, the method involves measuring of temperature-time T(t) rises induced in a tested tissue sample by a pulsed focused ultrasound with measured acoustic properties using thermocouples located on the acoustic beam axis. Measurements were performed for 20-cycle tone bursts with a 2 MHz frequency, 0.2 duty-cycle and 3 different initial pressures corresponding to average acoustic powers equal to 0.7 W, 1.4 W and 2.1 W generated from a circular focused transducer with a diameter of 15 mm and f-number of 1.7 in a two-layer system of media: water/beef liver. Measurement results allowed to determine position of maximum heating located inside the beef liver. It was found that this position is at the same axial distance from the source as the maximum peak-peak pressure calculated for each nonlinear beam produced in the two-layer system of media. Then, the method involves modeling of T(t) at the point of maximum heating and fitting it to the experimental data by adjusting Ks. The averaged value of Ks determined by the proposed method was found to be 0.5±0.02 W/(m·°C) being in good agreement with values determined by other methods. The proposed method is suitable for determining Ks of some animal tissues in vivo (for example a rat liver).
机译:组织热导率(Ks)是一个重要参数,每当预测在选定器官中感应的热场时,知识就必不可少。这项研究的主要目的是开发一种替代的超声方法,用于在体外确定适用于活组织的组织Ks。首先,该方法涉及通过使用位于声束轴上的热电偶,通过具有测量的声学特性的脉冲聚焦超声,在测试的组织样本中引起的温度-时间T(t)升高进行测量。对具有2 MHz频率,0.2占空比和3种不同的初始压力的20周期音调猝发进行测量,分别对应于直径为15的圆形聚焦换能器产生的平均声功率,分别等于0.7 W,1.4 W和2.1 W两层介质(水/牛肝)中的mm和f值为1.7。测量结果可以确定位于牛肝内部的最大加热位置。发现该位置与源的轴向距离与为两层介质系统中产生的每个非线性束计算的最大峰-峰值压力在相同的轴向距离处。然后,该方法涉及在最大加热点对T(t)进行建模,并通过调整Ks将其拟合到实验数据。用该方法测得的Ks平均值为0.5±0.02 W /(m·°C),与其他方法测得的Ks平均值吻合较好。所提出的方法适用于确定体内某些动物组织(例如大鼠肝脏)的Ks。

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