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The ultrasound brain helmet: new transducers and volume registration for in vivo simultaneous multi-transducer 3-D transcranial imaging

机译:超声脑头盔:用于体内同时多传感器3-D经颅成像的新型传感器和体积配准

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摘要

Because stroke remains an important and time-sensitive health concern in developed nations, we present a system capable of fusing 3-D transcranial ultrasound volumes acquired from two sides of the head. This system uses custom sparse array transducers built on flexible multilayer circuits that can be positioned for simultaneous imaging through both temporal acoustic windows, allowing for potential registration of multiple real-time 3-D scans of cerebral vasculature. We examine hardware considerations for new matrix arrays—transducer design and interconnects—in this application. Specifically, it is proposed that SNR may be increased by reducing the length of probe cables. This claim is evaluated as part of the presented system through simulation, experimental data, and in vivo imaging. Ultimately, gains in SNR of 7 dB are realized by replacing a standard probe cable with a much shorter flex interconnect; higher gains may be possible using ribbon-based probe cables. In vivo images are presented, showing cerebral arteries with and without the use of microbubble contrast agent; they have been registered and fused using a simple algorithm which maximizes normalized cross-correlation.
机译:由于中风在发达国家仍然是重要且对时间敏感的健康问题,因此我们提出了一种能够融合从头两侧获取的3D经颅超声量的系统。该系统使用在灵活的多层电路上构建的定制稀疏阵列换能器,可以将其定位为通过两个时间声学窗口同时成像,从而可以对脑血管的多个实时3D扫描进行潜在配准。在本应用程序中,我们将研究新矩阵阵列的硬件考虑因素(换能器设计和互连)。具体地,提出可以通过减小探针电缆的长度来增加SNR。通过模拟,实验数据和体内成像,将该要求作为提出的系统的一部分进行评估。最终,通过用短得多的柔性互连代替标准探头电缆,可实现7 dB的SNR增益。使用带状探头电缆可能会获得更高的增益。显示了体内图像,显示了使用或不使用微泡造影剂的脑动脉;它们已经使用简单的算法进行了注册和融合,该算法可以最大化归一化互相关。

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