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首页> 外文期刊>The Journal of the Acoustical Society of America >Transcostal high-intensity focused ultrasound treatment using phased array with geometric correction
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Transcostal high-intensity focused ultrasound treatment using phased array with geometric correction

机译:肋骨高强度聚焦超声治疗的相控阵几何校正

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摘要

In the high-intensity focused ultrasound treatment of liver tumors, ultrasound propagation is affected by the rib cage. Because of the diffraction and absorption of the bone, the sound distribution at the focal plane is altered, and more importantly, overheating on the rib surface might occur. To overcome these problems, a geometric correction method is applied to turn off the elements blocked by the ribs. The potential of steering the focus of the phased-array along the propagation direction to improve the transcostal treatment was investigated by simulations and experiments using different rib models and transducers. The ultrasound propagation through the ribs was computed by a hybrid method including the Rayleigh-Sommerfeld integral, k-space method, and angular spectrum method. A modified correction method was proposed to adjust the output of elements based on their relative area in the projected "shadow" of the ribs. The simulation results showed that an increase in the specific absorption rate gain up to 300% was obtained by varying the focal length although the optimal value varied in each situation. Therefore, acoustic simulation is required for each clinical case to determine a satisfactory treatment plan.
机译:在肝脏肿瘤的高强度聚焦超声治疗中,肋骨笼会影响超声的传播。由于骨头的衍射和吸收作用,焦平面处的声音分布发生了变化,更重要的是,肋骨表面可能会发生过热。为了克服这些问题,采用了一种几何校正方法来关闭被肋骨阻塞的元件。通过使用不同的肋骨模型和换能器的仿真和实验,研究了控制相控阵焦点沿传播方向改善跨肋治疗的潜力。通过包括瑞利-索默菲尔德积分,k-空间法和角谱法的混合方法计算通过肋骨的超声传播。提出了一种改进的校正方法,可根据凸出的“阴影”中肋骨的相对面积来调整其输出。模拟结果表明,尽管最佳值在每种情况下都不同,但通过改变焦距可以将比吸收率增益提高多达300%。因此,需要对每个临床病例进行声学模拟以确定满意的治疗计划。

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