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Experimental demonstration of noninvasive transskull adaptive focusing based on prior computed tomography scans

机译:基于先前计算机断层扫描的无创跨颅自适应聚焦实验

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Developing minimally invasive brain surgery by high-intensity focused ultrasound beams is of great interest in cancer therapy. However, the skull induces strong aberrations both in phase and amplitude, resulting in a severe degradation of the beam shape. Thus, an efficient brain tumor therapy would require an adaptive focusing, taking into account the effects of the skull. In this paper, we will show that the acoustic properties of the skull can be deduced from high resolution CT scans and used to achieve a noninvasive adaptive focusing. Simulations have been performed with a full 3-D finite differences code, taking into account all the heterogeneities inside the skull. The set of signals to be emitted in order to focus through the skull can thus be computed. The complete adaptive focusing procedure based on prior CT scans has been experimentally validated. This could have promising applications in brain tumor hyperthermia but also in transcranial ultrasonic imaging.
机译:通过高强度聚焦超声束开发微创脑外科手术对癌症治疗非常感兴趣。但是,颅骨在相位和振幅上都引起强烈的像差,从而导致光束形状严重恶化。因此,考虑到颅骨的影响,有效的脑肿瘤治疗将需要自适应聚焦。在本文中,我们将显示可以从高分辨率CT扫描中推断出头骨的声学特性,并将其用于实现非侵入性自适应聚焦。考虑到头骨内部的所有异质性,使用完整的3D有限差分代码进行了仿真。因此可以计算出要聚焦以穿过头骨的信号集。基于先前的CT扫描的完整的自适应聚焦程序已通过实验验证。这可能在脑肿瘤热疗以及经颅超声成像中具有广阔的应用前景。

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