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Three-Dimensional Transcranial Ultrasound Imaging of Microbubble Clouds Using a Sparse Hemispherical Array

机译:使用稀疏半球阵列的微气泡云的三维经颅超声成像。

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摘要

There is an increasing interest in bubble-mediated focused ultrasound (FUS) interventions in the brain. However, current technology lacks the ability to spatially monitor the interaction of the microbubbles with the applied acoustic field, something which is critical for safe clinical translation of these treatments. Passive acoustic mapping could offer a means for spatially monitoring microbubble emissions that relate to bubble activity and associated bioeffects. In this study a hemispherical receiver array was integrated within an existing transcranial therapy array to create a device capable of both delivering therapy and monitoring the process via passive imaging of bubble clouds. A 128-element receiver array was constructed and characterized for varying bubble concentrations and source spacings. Initial in vivo feasibility testing was performed. The system was found to be capable of monitoring bubble emissions down to single bubble events through an ex vivo human skull. The lateral resolution of the system was found to be between 1.25-2 mm and the axial resolution between 2-3.5 mm, comparable to the resolution of MRI-based temperature monitoring during thermal FUS treatments in the brain. The results of initial in vivo experiments show that bubble activity can be mapped starting at pressure levels below the threshold for Blood-Brain barrier disruption. This study presents a feasible solution for imaging bubble activity during cavitation-mediated FUS treatments in the brain.
机译:人们对大脑中的气泡介导的聚焦超声(FUS)干预越来越感兴趣。但是,当前技术缺乏在空间上监测微泡与所施加声场的相互作用的能力,这对于这些治疗的安全临床翻译是至关重要的。被动声学测绘可以提供一种空间监测与气泡活动和相关生物效应有关的微气泡发射的手段。在这项研究中,将半球形接收器阵列集成到现有的经颅治疗阵列中,以创建一种能够通过气泡云的被动成像来提供治疗和监测过程的设备。构造了一个128个元素的接收器阵列,并针对变化的气泡浓度和源间距进行了表征。进行了初步的体内可行性测试。发现该系统能够通过离体人类头骨监测气泡排放直至单个气泡事件。发现该系统的横向分辨率在1.25-2 mm之间,轴向分辨率在2-3.5 mm之间,与在大脑中进行FUS热治疗时基于MRI的温度监测的分辨率相当。最初的体内实验结果表明,可以在低于血脑屏障破坏阈值的压力水平下绘制气泡活性图。这项研究提供了一种可行的解决方案,用于在空化介导的FUS治疗大脑中成像气泡活动。

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