Real-time dynamic focusing through tissue inhomogeneities during hyperthermia treatments with phased arrays

P. VanBaren, R. Seip, E. Ebbini
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引用次数: 7

Abstract

A needle probe hydrophone array made of discrete PVDF elements has been designed and fabricated at our laboratory. Such a probe can obtain complex acoustic pressure measurements at or near the tumor site. To extend the region over which these measurements may be used to focus a phased array, a real-time measurement system is needed, along with a method of extrapolating the data to points other than those measured by the probe. We describe such a real-time dynamic focusing algorithm that uses measurements from the full-set of hydrophone array elements in estimating the bearing and range of the elements of the transmitting array. In this way, a measurement of the radius of curvature of the wave front due to an array element is made along the span of the array, which extends the region of reliable refocusing. An outline of the steps of the refocusing algorithm along with simulation and experimental results are given. Finally, we describe the architecture of a real-time system for refocusing currently being designed for this purpose
相控阵热疗过程中组织不均匀性的实时动态聚焦
本文在实验室设计并制作了一种由离散PVDF元件组成的针探头水听器阵列。这种探针可以在肿瘤部位或附近获得复杂的声压测量。为了扩大这些测量可以用来聚焦相控阵的区域,需要一个实时测量系统,以及一种将数据外推到探针测量点以外的点的方法。我们描述了这样一种实时动态聚焦算法,该算法使用全套水听器阵列元素的测量值来估计发射阵列元素的方位和距离。通过这种方法,沿着阵列的跨度测量由阵列元件引起的波前曲率半径,从而扩展了可靠重聚焦的区域。给出了该算法的实现步骤,并给出了仿真和实验结果。最后,我们描述了当前为此目的而设计的用于重新聚焦的实时系统的体系结构
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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