Measurements of temperature increase induced on a tissue-mimicking material by a clinical US-guided HIFU system

F. Palorini, D. Origgi, M. Guernieri, A. Troia, C. Magnetto, G. Durando
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引用次数: 1

Abstract

A framework for the evaluation of temperature increase in a tissue-mimicking material (TMM) induced by a clinical Ultrasound-guided High Intensity Focused Ultrasound (US-guided HIFU) system was developed. HIFU procedures are minimally invasive treatments that achieve deep tumor ablation, with the sparing of normal tissues, through thermal or mechanical effects induced by a HIFU beam generated with a focused transducer. Temperature evaluation is therefore crucial for the assurance of patient safety and treatment effectiveness. Nevertheless, it is a very difficult task on the US-guided systems, where high-pressure fields are involved. As far as we know, this study is the first attempt of temperature evaluation on a clinical US-guided HIFU system. Temperature evaluation was performed at typical clinical settings (between 80 W and 400 W, for 3s sonications) by the use of needle thermocouples connected to a voltmeter and inserted in a polyacrylamide gel phantom, prepared in-house to reproduce soft tissue behavior. Data sampling was performed with the use of acquisition software developed with LabView, while US-imaging was used to verify the position of the thermocouple. Typical rising curves of temperature were recovered, and rapid decrease was found when the HIFU field turned off. The highest temperature increases were concentrated inside the geometrical focus and were higher than 55 Celsius degrees at all power outputs. Repetition of measurements was not possible after sonications at the highest power outputs (400W). The absolute temperature of 98 Celsius degrees was never exceeded.
临床超声引导HIFU系统在组织模拟材料上诱导的温度升高的测量
建立了一种评估临床超声引导高强度聚焦超声(US-guided HIFU)系统诱导的组织模拟材料(TMM)温度升高的框架。HIFU手术是一种微创治疗,通过聚焦换能器产生的HIFU光束引起的热或机械效应,在保留正常组织的情况下实现深部肿瘤消融。因此,体温评估对于保证患者安全和治疗效果至关重要。然而,在美国制导的系统上,这是一项非常困难的任务,因为它涉及高压领域。据我们所知,本研究是首次在临床us引导HIFU系统上进行体温评估的尝试。温度评估是在典型的临床环境下进行的(80w到400w之间,3次超声),使用针热电偶连接到电压表,并插入内部制备的聚丙烯酰胺凝胶模体中,以重现软组织行为。使用LabView开发的采集软件进行数据采样,同时使用US-imaging验证热电偶的位置。恢复了典型的温度上升曲线,HIFU场关闭后温度迅速下降。最高的温度增长集中在几何焦点内部,在所有功率输出下都高于55摄氏度。在最高功率输出(400W)的超声测量后,不可能重复测量。绝对温度98摄氏度从未被超过。
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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