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Ultrasonically induced necrosis through the rib cage based on adaptive focusing: ex vivo experiments

机译:基于自适应聚焦的肋骨超声诱导坏死:离体实验

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Ex vivo experiments have been conducted through excised lamb rib cages, with bone, cartilage, muscle and skin. The ribs were placed between a hydrophone and a programmable sparse array made of 200 high power transducers working at 1 MHz central frequency. First, adaptive focusing through ribs has been experimentally studied at low power. Without any correction, the pressure fields in the focal plane were affected by both inhomogeneous attenuation and phase distortion and three main effects were observed: a mean 2 mm shift of the main lobe, a mean 1.25 mm spreading in the half width of the main lobe and up to 20 dB increase in the secondary lobe level. Three adaptive focusing techniques were tested with continuous waves: phase shift, time reversal and time reversal coupled with amplitude compensation. We show that time reversal is more appropriate, as it minimizes the heating of the ribs by naturally sonicating between the ribs. It is also shown that a non invasive technique could be implemented by using the imaging capabilities of the therapeutic array.
机译:通过切除的羊肉肋骨,骨,软骨,肌肉和皮肤进行了前体内实验。将肋骨置于水中和可编程稀疏阵列,由在1MHz中央频率下工作的200个高功率换能器制成。首先,通过肋骨的自适应聚焦已经在低功率下进行了实验研究。在没有任何校正的情况下,焦平面中的压力场受到不均匀衰减和相失真的影响,并且观察到三个主要效果:主要叶片的平均2mm偏移,平均1.25mm在主瓣的半宽度下展开。高达20 dB的次级叶片水平增加。用连续波测试三种自适应聚焦技术:与幅度补偿相结合的相移,时间反转和时间逆转。我们表明时间反转更合适,因为它通过自然在肋骨之间自然超声处理来最小化肋的加热。还示出了通过使用治疗阵列的成像能力来实现非侵入性技术。

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