Focused Ultrasound - Efficient GPU Simulation Methods for Therapy Planning

Joachim Georgii, C. Dresky, Sebastian Meier, D. Demedts, Christian Schumann, Tobias Preußer
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引用次数: 14

Abstract

Over the past years, high intensity focused ultrasound therapy has beco me a promising therapeutic alternative for non-invasive tumor treatment. The basic idea of this interventional approa ch is to apply focused ultrasound waves to the tumor tissue such that the cells are heated and hence destroyed. Sinc e it is quite difficult to assess the quality of this non-invasive therapy, there is a dire need for computer support in planning, conduction, and monitoring of such treatments. In this work, we propose efficient simulation techniques for focused ultras ound waves as well as their heat dissemination using current graphics hardware as a numerical co-proc essor. We achieve speed-ups between 10 and 700 for the single simulation steps compared to an optimized CPU solution, over all resulting in a significant performance gain over previous approaches for simulation of focused u ltrasound.
聚焦超声-高效GPU模拟治疗计划方法
在过去的几年里,高强度聚焦超声治疗已经成为一种很有前途的非侵入性肿瘤治疗方法。这种介入方法的基本思想是将聚焦的超声波应用于肿瘤组织,使细胞被加热并因此被破坏。由于评估这种非侵入性治疗的质量相当困难,因此迫切需要计算机支持来计划、指导和监测这种治疗。在这项工作中,我们提出了有效的模拟技术聚焦超声波及其热传播使用当前的图形硬件作为一个数值协处理器。与优化的CPU解决方案相比,我们在单个模拟步骤中实现了10到700的加速,总的来说,与以前的聚焦超声模拟方法相比,我们的性能有了显著提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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