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Design of a Versatile Angle-Rotatable Skull-Shaped Conformal Transcranial Focused Ultrasound Transducer for Noninvasive Brain Therapy

机译:无抗体脑疗法的多功能角可旋转颅骨形化颅晶超声换能器的设计

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摘要

Phase-controlled focused ultrasound transducers have opened up a new way to noninvasively treat brain diseases. However, due to the geometry and the heterogeneous medium of the human skull, the currently used hemispherical transducers cannot guarantee that the ultrasound emitted by the transducer penetrates the skull normally; consequently, the impact of the shear wave on the treatment area has to be considered. The usual approach is to turn off elements in the transducer with excessively large incident angles, but this approach reduces the efficiency of the transducer. This article presents the design of a novel transducer that can be rotated according to the different geometric shapes of the skull. The incident angles of the elements in the transducer are modified so that the effect of the shear wave on the treatment area can be ignored and the efficiency of the transducer is improved. The results of computed tomography (CT) model simulation of nine skulls verify the versatility and feasibility of the new transducer. We believe that this kind of rotatable transducer has clinical and engineering significance.
机译:相控聚焦超声换能器打开了一种非侵入性治疗脑病的新方法。然而,由于人颅骨的几何形状和异质介质,目前使用的半球形换能器不能保证由换能器发出的超声波正常穿颅骨;因此,必须考虑剪力波对处理区域的影响。通常的方法是以过大的入射角关闭换能器中的元件,但这种方法降低了换能器的效率。本文介绍了一种新型换能器,其可以根据颅骨的不同几何形状旋转。改变换能器中元件的入射角,使得可以忽略剪切波对处理区域的效果,并且改善了换能器的效率。九个颅骨计算断层扫描(CT)模型模拟​​结果验证了新传感器的多功能性和可行性。我们认为这种可旋转的传感器具有临床和工程意义。

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