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首页> 外文期刊>Physics in medicine and biology. >High power transcranial beam steering for ultrasonic brain therapy
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High power transcranial beam steering for ultrasonic brain therapy

机译:大功率经颅束转向术用于超声脑部治疗

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摘要

A sparse phased array is specially designed for non-invasive ultrasound transskull brain therapy. The array is made of 200 single elements corresponding to a new generation of high power transducers developed corresponding to a new generation of high power transducers developed corresponding to a new generation of high power transducers developed in collaboration with Imasonic (Besancon, France). Each element has a surface of 0.5 cm~2 and works at 0.9 MHz central frequency with a maximum 20 W cm~(-2) intensity on the transducer surface. In order to optimize the steering capabilities of the array, several transducer distributions on a spherical surface are simulated: hexagonal, annular and quasi-random distributions. Using a quasi-random distribution significantly reduces the grating lobes. Furthermore, the simulations show the capability of the quasi-random array to electronically move the focal spot in the vicinity of the geometrical focus (up to ±15 mm). Based on the simulation study, the array is constructed and tested. The skull aberrations are corrected by using a time reversal mirror with amplitude correction achieved thanks to an implantable hydrophone, and a sharp focus is obtained through a human skull. Several lesions are induced in fresh liver and brain samples through human skulls, demonstrating the accuracy and the steering capabilities of the system.
机译:稀疏相控阵是专门为无创超声经颅颅脑治疗而设计的。该阵列由200个单个元件组成,对应于与与Imasonic(法国Besancon,法国)合作开发的新一代高功率换能器而开发的新一代高功率换能器相对应的新一代高功率换能器。每个元件的表面为0.5 cm〜2,并在0.9 MHz中心频率下工作,换能器表面的最大强度为20 W cm〜(-2)。为了优化阵列的操纵能力,模拟了球形表面上的几种换能器分布:六边形,环形和准随机分布。使用准随机分布可显着减少光栅波瓣。此外,仿真显示了准随机阵列在几何焦点附近(最大±15 mm)以电子方式移动焦点的能力。基于仿真研究,构建并测试了阵列。通过使用带有可植入水听器进行幅度校正的时间倒转镜,可以校正颅骨像差,并且可以通过人的颅骨获得清晰的焦点。通过人的头骨在新鲜的肝脏和大脑样本中诱发了几种损伤,证明了该系统的准确性和操纵能力。

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