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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Computationally Efficient Transcranial Ultrasonic Focusing: Taking Advantage of the High Correlation Length of the Human Skull
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Computationally Efficient Transcranial Ultrasonic Focusing: Taking Advantage of the High Correlation Length of the Human Skull

机译:计算高效的经颅超声波聚焦:利用人颅骨的高相关长度

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摘要

The phase correction necessary for transcranial ultrasound therapy requires numerical simulation to noninvasively assess the phase shift induced by the skull bone. Ideally, the numerical simulations need to be fast enough for clinical implementation in a brain therapy protocol and to provide accurate estimation of the phase shift to optimize the refocusing through the skull. In this article, we experimentally performed transcranial ultrasound focusing at 900 kHz on N = 5 human skulls. To reduce the computation time, we propose here to perform the numerical simulation at 450 kHz and use the corresponding phase shifts experimentally at 900 kHz. We demonstrate that a 450-kHz simulation restores 94.2% of the pressure when compared with a simulation performed at 900 kHz and 85.0% of the gold standard pressure obtained by an invasive time reversal procedure based on the signal recorded by a hydrophone placed at the target. From a 900- to 450-kHz simulation, the grid size is divided by 8, and the computation time is divided by 10.
机译:经颅超声治疗所需的相位校正需要数值模拟以非侵略性地评估颅骨诱导的相移。理想情况下,数值模拟需要足够快,以便在脑治疗方案中进行临床实现,并提供准确估计相移,以优化通过头骨的重新焦点。在本文中,我们在N = 5人颅骨上实验在900kHz上进行的经颅超声。为了减少计算时间,我们提出了在这里以450 kHz执行数值模拟,并在900kHz上通过实验使用相应的相移。我们证明,与900 kHz的模拟相比,450 kHz模拟恢复了94.2%的压力,并通过基于由靶记录在目标的水听器记录的信号的侵入式时间反转程序获得的85.0%的金标准压力。从900至450 kHz模拟,电网尺寸除以8,计算时间除以10。

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