首页> 外文会议>IEEE Engineering in Medicine and Biology Society., Conference. >Optimization of Real-Time Acoustical and Mechanical Monitoring of High Intensity Focused Ultrasound (HIFU) treatment using Harmonic Motion Imaging for High Focused Ultrasound (HMIFU)
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Optimization of Real-Time Acoustical and Mechanical Monitoring of High Intensity Focused Ultrasound (HIFU) treatment using Harmonic Motion Imaging for High Focused Ultrasound (HMIFU)

机译:高强度聚焦超声波(HIFU)处理实时声学和机械监测的优化,使用谐波运动成像进行高聚焦超声波(HMIFU)

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Harmonic Motion Imaging (HMI) for Focused Ultrasound (HMIFU) is a recently developed high-intensity focused ultrasound (HIFU) treatment monitoring method with feasibilities demonstrated in silica, in vitro and in vivo. Its principle is based on emission of an Amplitude-modulated therapeutic ultrasound beam utilizing a therapeutic transducer to induce an oscillatory radiation force while tracking the focal tissue mechanical response during the HIFU treatment using a confocally-aligned diagnostic transducer. In order to translate towards the clinical implementation of HMIFU, a complete assessment study is required in order to investigate the optimal radiation force threshold for reliable monitoring the local tissue mechanical property changes, i.e., the estimation HMIFU displacement under thermal, acoustical, and mechanical effects within focal medium (i.e., boiling, cavitation, and nonlinearity) using biological specimen. In this study, HMIFU technique is applied on HIFU treatment monitoring on freshly excised ex vivo canine liver specimens. In order to perform the multi-characteristic assessment, the diagnostic transducer was operated as either a pulse-echo imager or Passive Cavitation Detector (PCD) to assess the acoustic and mechanical response, while a bare-wire thermocouple was used to monitor the focal temperature change. As the acoustic power of HIFU treatment was ranged from 2.3 to 11.4 W, robust HMI displacement was observed across the entire range. Moreover, an optimized range for high quality displacement monitoring was found to be between 3.6 to 5.2W, where displacement showed an increase followed by significant decrease, indicating a stiffening of focal medium due to thermal lesion formation, while the correlation coefficient was maintained above 0.95.
机译:聚焦超声(HMIFU)的谐波运动成像(HMI)是最近开发的高强度聚焦超声(HIFU)治疗监测方法,具有在二氧化硅中展示的可行性,体外和体内。其原理基于利用治疗换能器的幅度调制的治疗超声波束的发射,以诱导振荡辐射力,同时使用相互排列的诊断换能器在HIFU处理期间跟踪局灶性组织机械响应。为了转化为HMIFU的临床实施,需要一种完整的评估研究,以便研究最佳的辐射力阈值,以便可靠地监测局部组织机械性能变化,即,在热,声学和机械效应下估计HMIFU位移使用生物样品在焦介质(即,沸腾,空化和非线性)内。在本研究中,HMIFU技术应用于新鲜切除的离体犬肝标本的HIFU治疗监测。为了执行多种特征评估,诊断换能器被操作为脉冲回波成像器或被动空化检测器(PCD),以评估声学和机械响应,而裸线热电偶用于监测焦温改变。由于HIFU处理的声功率范围为2.3至11.4W,因此在整个范围内观察到鲁棒HMI位移。此外,发现高质量位移监测的优化范围是3.6至5.2W,其中位移显示出随后的增加,表示由于热病变形成引起的焦介质的加强,而相关系数保持在0.95以上。

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