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Experimental validation of 3D finite differences simulations of ultrasonic wave propagation through the skull

机译:通过颅骨超声波传播3D有限差异模拟的实验验证

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High Intensity Focused Ultrasound could provide a non invasive way for burning tumor located deep inside the brain. However, the skull induces strong aberrations both in phase and amplitude resulting in a spreading of the focus. Thus a efficient noninvasive therapy would require an adaptive focusing taking into account the acoustical properties of the skull. 3-D simulations based on high-resolution CT images of a human skull have been successfully performed with a 3D finite differences code, developed in our laboratory. From the skull porosity, directly extracted from the CT images, we reconstructed acoustic speed, density and absorption maps and performed the computation. Computed wavefronts are in good agreement with experimental wavefronts acquired through the same part of the skull. It shows that it is possible to model the acoustical properties of a human skull from CT images. Moreover, experimental focusing can be achieved by applying time reversal combined with amplitude compensation. Again the measured focusing pattern obtained from either experimental or computed wavefront are very close. It demonstrates the feasibility of non invasive focusing through the skull by simply using CT images.
机译:高强度聚焦超声可以为位于大脑内部的肿瘤灼烧的肿瘤提供非侵入性方式。然而,颅骨在相位和幅度中引起强烈的像差,从而产生焦点的扩展。因此,高效的非侵入性治疗将需要一种适应聚焦,以考虑颅骨的声学特性。通过在我们的实验室开发的3D有限差异代码成功地执行了基于人类颅骨的高分辨率CT图像的3-D模拟。从颅骨孔隙率从CT图像直接提取,我们重建了声速,密度和吸收图并执行了计算。计算的波前与通过头骨的同一部分获得的实验波前吻合良好。它表明,可以根据CT图像模拟人颅骨的声学特性。此外,通过施加与幅度补偿的时间反转来实现实验焦点。再次从实验或计算的波前获得的测量的聚焦图案非常接近。它通过简单地使用CT图像,展示了非侵入性聚焦通过颅骨的可行性。

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