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使用多频超声进行组织消融时的温度升高

Temperature rise in tissue ablation using multi-frequency ultrasound.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2013 Aug;60(8):1699-707. doi: 10.1109/TUFFC.2013.2751.

Abstract

High-intensity focused ultrasound (HIFU) is becoming an increasingly important noninvasive surgical tool, despite the challenges in temperature rise control and unwanted heating problems. In this study, experiments and simulations on tissue ablation effectiveness were performed using multi-frequency HIFU with frequency differences of more than 500 kHz (center frequencies are 950 kHz, 1.5 MHz, and 3.3 MHz). In the experiments, the temperature was recorded as chicken breast tissue was heated by single-frequency, dual-frequency, and tri-frequency HIFU configurations at controlled acoustic power and exposure time. 5% to 10% temperature rise differences were observed between single- and multi-frequency modes, indicating that multi-frequency HIFU is more effective at producing faster temperature rises. Cavitation detection tests were conducted to compare the cavitation pressure fields between single- and multi-frequency ultrasound. Moreover, simulations on single-frequency and multi-frequency acoustic fields as well as bio-heating-induced temperature fields were performed. With the comparison between experimental and simulation results, we believe that the more effective tissue ablation using multi-frequency ultrasound is likely attributed to the enhanced cavitation, a promising result for HIFU applications.

摘要

高强度聚焦超声(HIFU)正日益成为一种重要的非侵入性手术工具,尽管在温度上升控制和不必要的加热问题方面存在挑战。在本研究中,使用频率差超过500kHz(中心频率分别为950kHz、1.5MHz和3.3MHz)的多频HIFU进行了组织消融效果的实验和模拟。在实验中,在控制声功率和暴露时间的情况下,记录了鸡胸组织在单频、双频和三频HIFU配置下加热时的温度。在单频和多频模式之间观察到5%至10%的温度上升差异,这表明多频HIFU在产生更快的温度上升方面更有效。进行了空化检测测试,以比较单频和多频超声之间的空化压力场。此外,还对单频和多频声场以及生物加热引起的温度场进行了模拟。通过实验和模拟结果的比较,我们认为使用多频超声更有效地进行组织消融可能归因于空化增强,这对HIFU应用来说是一个很有前景的结果。

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