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An Efficient Numerical Technique for Bioheat Simulations and its Application to Computerized Cryosurgery Planning

机译:一种有效的生物热模拟数值技术及其在计算机冷冻计划中的应用

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摘要

As a part of ongoing efforts to develop computerized planning tools for cryosurgery, the current study focuses on developing an efficient numerical technique for bioheat transfer simulations. Our long-term goal is to develop a planning tool for cryosurgery that takes a 3D reconstruction of a target region, and suggests the best cryoprobe layout. Toward that goal, a planning algorithm, termed “force-field analogy,” has been recently presented, based on a sequence of bioheat transfer simulations, which are by far the most computationally expensive part of the planning method. The objective in the current study is to develop a finite difference numerical scheme for bioheat transfer simulations, which reduces the overall run time of computerized planning, thereby making it clinically relevant. While the general concept of variable grid size and time intervals is not new, its application to the phase change problem of cryosurgery is the unique contribution of the current study.
机译:作为开发用于冷冻手术的计算机化计划工具的不断努力的一部分,当前的研究重点是为生物热传递模拟开发一种有效的数值技术。我们的长期目标是开发一种冷冻手术的规划工具,该工具可对目标区域进行3D重建,并提出最佳的冷冻探头布局。为了实现这一目标,最近提出了一种基于一系列生物传热模拟的规划算法,称为“力场类比”,这是迄今为止规划方法中计算量最高的部分。当前研究的目的是为生物传热模拟开发有限差分数值方案,以减少计算机化计划的总运行时间,从而使其具有临床意义。尽管可变网格尺寸和时间间隔的一般概念并不是什么新鲜事物,但其在冷冻外科的相变问题中的应用是当前研究的独特贡献。

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