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Real-time three-dimensional passive cavitation detection for clinical high intensity focussed ultrasound systems

机译:用于临床高强度聚焦超声系统的实时三维被动空化检测

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摘要

Bubble activity during High Intensity Focussed Ultrasound (HIFU) surgery has been linked with desirable effects, such as an enhanced heat deposition caused by inertial cavitation, and undesirable effects, such as lesion migration caused by boiling bubbles. There is presently no reliable way of achieving spatiotemporal monitoring of cavitation activity during clinical HIFU treatments. In the present work, a near-acoustically-transparent two-dimensional 32-element PVDF array was designed and mounted on the therapy transducer of a clinical HIFU device (Model JC200, Chongqing Haifu) to enable detection of acoustic emissions arising from cavitation during therapy. The signal detected by each of the elements was digitized and processed in real time on a Graphical Processing Unit (GPU), and beamformed using our previously described Passive Acoustic Mapping (PAM) algorithm to produce real-time three-dimensional (3D) maps of cavitation activity with a frame rate in excess of 5 Hz. The system was initially validated in agar-based tissue-mimicking materials, demonstrating that the displayed volume of cavitation activity agreed with predictions based on in situ pressure calibrations. The system was further validated during clinical HIFU treatments of kidney tumour, liver tumour and uterine fibroid ablation, and was found to enable accurate localization of the HIFU focus at sub-lesioning intensities. © 2013 Acoustical Society of America.
机译:高强度聚焦超声(HIFU)手术中的气泡活动与理想的效果(例如,由惯性空化引起的热量沉积增加)和不良的影响(如由沸腾的气泡引起的病变迁移)相关。目前尚没有可靠的方法可以在临床HIFU治疗期间实现对空化活动的时空监视。在目前的工作中,设计了一种近声透明的二维32元素PVDF阵列,并将其安装在临床HIFU设备(JC200型,重庆海富)的治疗换能器上,以便能够检测到在治疗过程中由于空化而产生的声发射。每个元素检测到的信号均在图形处理单元(GPU)上进行数字化和实时处理,并使用我们先前描述的无源声学映射(PAM)算法进行波束成形,以生成实时的三维(3D)映射空化活动,帧频超过5 Hz。该系统最初在基于琼脂的组织模拟材料中进行了验证,表明所显示的空化活动量与基于原位压力校准的预测相符。该系统在肾脏肿瘤,肝肿瘤和子宫肌瘤消融的临床HIFU治疗期间得到了进一步验证,并被发现能够将HIFU聚焦于亚病变强度上。 ©2013美国声学学会。

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