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Nonlinear Effects in Ultrasound Fields of Diagnostic-type Transducers Used for Kidney Stone Propulsion: Characterization in Water

机译:用于肾结石推进器诊断型传感器超声波领域的非线性效应:水中表征

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Newer imaging and therapeutic ultrasound technologies require higher in situ pressure levels compared to conventional diagnostic values. One example is the recently developed use of focused ultrasonic radiation force to move kidney stones and residual fragments out of the urinary collecting system. A commercial diagnostic 2.3 MHz C5-2 array probe is used to deliver the acoustic pushing pulses. The probe comprises 128 elements equally spaced at the 55 mm long convex cylindrical surface with 38 mm radius of curvature. The efficacy of the treatment can be increased by using higher intensity at the focus to provide stronger pushing force; however, nonlinear acoustic saturation can be a limiting factor. In this work nonlinear propagation effects were analyzed for the C5-2 transducer using a combined measurement and modeling approach. Simulations were based on the 3D Westervelt equation; the boundary condition was set to match the focal geometry of the beam as measured at a low power output. Focal waveforms simulated for increased output power levels were compared with the fiber-optic hydrophone measurements and were found in good agreement. It was shown that saturation effects do limit the acoustic pressure in the focal region of the transducer. This work has application to standard diagnostic probes and imaging.
机译:与传统诊断值相比,较新的成像和治疗超声技术需要更高的原位压力水平。一个例子是最近开发的聚焦超声辐射力的使用,将肾结石和尿液收集系统中的残余碎片移动。商业诊断2.3 MHz C5-2阵列探头用于传递声学推动脉冲。探针包括在55mm长凸圆柱表面上等间隔开的128个元件,其具有38mm曲率半径。通过在焦点的更高强度提供更高的推动力,可以增加治疗的疗效;然而,非线性声学饱和可以是限制因素。在该工作中,使用组合测量和建模方法对C5-2换能器进行分析非线性传播效应。仿真基于3D Westervelt方程;边界条件被设置为匹配光束的焦距几何形状,如低功率输出所测量的。将模拟用于增加输出功率水平的焦点波形与光纤水电器测量值进行比较,并以良好的协议发现。结果表明,饱和效果确实限制了换能器的焦点区域中的声压。这项工作具有标准诊断探针和成像。

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