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用于间质热疗的超声波导施加器阵列:一项模型研究。

Ultrasonic waveguide applicator arrays for interstitial heating: a model study.

作者信息

Jarosz B J, Kaytar D

机构信息

Chem. Inst., Carleton Univ., Ottawa, Ont.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 1998;45(3):806-14. doi: 10.1109/58.677742.

Abstract

In this paper we describe an ultrasonic waveguide multiapplicator array for interstitial heating. We first discuss the heat generation term common for this type of applicator and show that the radius of the applicator is the limiting factor in the pattern of heat deposition. We carry out finite element analysis simulations of temperature profiles for three- and four-applicator array, and we test the simulations by measurements in a large volume tissue phantom. With the positive result of this test, we use the simulations to evaluate the size of the heated volume for several applicators (three to six) and for various geometries of their positioning. We do the simulations for a range of the effective thermal conductivity and for two applicator diameters. The volume of the medium with temperatures above 42 degrees C was in the 25 to 73 cm(5 ) range. This volume increased linearly with the diameter of the boundary at the basal temperature. Power required to produce preselected temperature elevation increased monotonically with the effective thermal conductivity. With the 24 mm between the applicators, the array could elevate the temperature to the required value up to the 0.030 W/cm/K effective thermal conductivity.

摘要

在本文中,我们描述了一种用于间质热疗的超声导波多施源器阵列。我们首先讨论了这类施源器共有的热生成项,并表明施源器的半径是热沉积模式中的限制因素。我们对三施源器和四施源器阵列的温度分布进行了有限元分析模拟,并通过在大体积组织模型中的测量对模拟进行了测试。鉴于该测试取得了阳性结果,我们利用模拟来评估多个施源器(三至六个)及其不同定位几何形状下加热体积的大小。我们针对一系列有效热导率以及两种施源器直径进行了模拟。温度高于42摄氏度的介质体积在25至73立方厘米范围内。该体积随基础温度下边界直径呈线性增加。产生预选温度升高所需的功率随有效热导率单调增加。当施源器间距为24毫米时,该阵列能够将温度升高至所需值,有效热导率最高可达0.030瓦每厘米开尔文。

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