图像引导下经颅聚焦超声在真人头部幻影中的应用与监测

P. O'Brien, Collin S. Smith, E. Ebbini
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引用次数: 0

摘要

双模超声阵列(DMUAs)已被用于小动物体内经颅聚焦超声(tFUS)的监测和传递。合成孔径成像(SA)可用于立体定向引导,而高帧率成像模式,如单传输聚焦成像(STF),可为病变形成和神经调节的热闭环和机械闭环控制提供反馈。本研究的目的是证明DMUA引导和控制tFUS应用于现实人类头部幻影的可行性。使用DMUA在SA和STF模式下通过幻体颞骨成像。从SA成像模式的结果表明,能够成像精细目标,如血管动脉瘤。此外,对SA数据进行子孔径处理表明可以减少混响。STF成像模式的结果表明,无论是否进行子孔径处理,利用经颅回波数据进行散斑跟踪都是可行的。这些结果证明了子孔径波束形成的合理设计在高保真热成像和弹性成像中识别组织结构和改善散斑统计的价值。本文将给出tfu监测实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Image-guided Application and Monitoring of Transcranial Focused Ultrasound in Realistic Human Head Phantom
Dual-mode ultrasound arrays (DMUAs) have been used for monitoring and delivery of transcranial focused ultrasound (tFUS) in small-animal models in vivo. Synthetic-aperture (SA) imaging can be used for stereotaxic guidance, while high frame rate imaging modes, such as single-transmit focus (STF) imaging, can provide feedback for thermal and mechanical closed-loop control of lesion formation and neuromodulation. The objective of this study is to demonstrate the feasibility of DMUA guidance and control of tFUS application in a realistic human head phantom. A DMUA was used to image through the temporal bone of the phantom in SA and STF modes. Results from the SA imaging mode demonstrates the ability to image fine targets such as vessels with aneurysms. Additionally, subaperture processing of SA data shows it is possible to reduce reverberation. Results from the STF imaging mode show the feasibility of speckle tracking using transranial echo data, both with and without subaperture processing. These results demonstrate the value of judicial design of subaperture beamforming for identifying tissue structure and improving speckle statistics for high fidelity thermography and elastography. Results from tFUS-monitoring experiments will be given.
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