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Experimental Study to Bend Thin Catheter Independent to Ultrasound Propagation Direction by Tempo-Spatial Division Emission Using Multiple Transducers

机译:多个换能器通过时空分割发射弯曲与超声传播方向无关的细导管的实验研究

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摘要

We have already experimented on the bending of a thin catheter with acoustic radiation force not only in the direction of ultrasound propagation but also in the direction perpendicular to ultrasound propagation using a single 2D array transducer, which produced a focal point and steered it simultaneously by changing the delay time of sound elements. Considering various clinical situations, developing the method of bending the catheter in any direction is mandatory. Therefore, we introduced two identical 2D array transducers with 128 elements each to bend the catheter in the direction independent to ultrasound propagation by establishing tempo-spatial division emission and their combination. As the result, the catheter was placed in the direction perpendicular to the acoustic propagation, and bent in the direction perpendicular to both the catheter and the acoustic propagation. We prepared totally four emission patterns, which determine the repetition time of burst wave and the delay time between two transducers to compare the behavior of the tip of the catheter. Then we derived the appropriate condition with the transition rate of the focal point of 2.0 mm/s, and the spatial interval of 1.0 mm considering the initial offset, which is an important parameter related to detection accuracy of the initial position of the thin catheter considering the future in vivo application.
机译:我们已经使用单个2D阵列换能器对薄导管的声辐射力进行了弯曲实验,不仅在超声传播方向上而且在垂直于超声传播方向上使用单个2D阵列换能器产生了焦点并通过改变来同时操纵它声音元素的延迟时间。考虑到各种临床情况,必须开发在任何方向上弯曲导管的方法。因此,我们引入了两个相同的2D阵列换能器,每个换能器都具有128个元件,通过建立时空划分发射及其组合,使导管沿与超声传播无关的方向弯曲。结果,将导管沿垂直于声传播的方向放置,并沿垂直于导管和声传播的方向弯曲。我们准备了总共四个发射模式,它们确定了突发波的重复时间和两个换能器之间的延迟时间,以比较导管尖端的行为。然后考虑到初始偏移量,得出焦点转移速率为2.0 mm / s,空间间隔为1.0 mm的适当条件,这是与考虑到细导管初始位置的检测精度相关的重要参数未来的体内应用。

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