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TOMOGRAPHIC RECONSTRUCTION OF TISSUE PROPERTIES AND TEMPERATURE INCREASE FOR HIGH-INTENSITY FOCUSED ULTRASOUND APPLICATIONS

机译:高强度聚焦超声应用的组织性能的断层重建和温度升高

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摘要

The acoustic and thermal properties as well as the temperature change within a tissue volume during high-intensity focused ultrasound ablation are critically important for treatment planning and monitoring. Described in this article is a tomographic reconstruction method used to determine the tissue properties and increase in temperature in a 3-D volume. On the basis of the iterative finite-element solution to the bioheat equation coupled with Tikhonov regularization techniques, our reconstruction algorithm solves the inverse problem of bioheat transfer and uses the time-dependent temperature measured on a tissue surface to obtain the acoustic absorption coefficient, thermal diffusivity and temperature increase within the subsurface volume. Numerical simulations were performed to validate the reconstruction algorithm. The method was initially conducted in ex vivo experiments in which time-dependent temperature on a tissue surface was measured using high-resolution, non-invasive infrared thermography.
机译:在高强度聚焦超声消融期间,声学和热学性质以及组织体积内的温度变化对于治疗计划和监测至关重要。本文介绍了一种断层扫描重建方法,该方法用于确定3D体积中的组织特性和温度升高。基于对生物热方程的迭代有限元解并结合Tikhonov正则化技术,我们的重建算法解决了生物热传递的逆问题,并使用在组织表面上测量的随时间变化的温度来获得吸声系数,热地下体积内的扩散率和温度增加。进行了数值模拟,以验证重构算法。该方法最初是在离体实验中进行的,其中使用高分辨率的非侵入式红外热像仪测量了组织表面随时间变化的温度。

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