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Optimum design of echogenic needles for ultrasound guided nerve block

机译:超声引导神经块的eChogencience的最佳设计

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The goal of this study is to optimize a cylindrical needle with a grooved surface for maximum backscattering to the transceiver during medical ultrasound procedures. Evaluation of backscattering performance of multiple prototype geometries with 2D time-harmonic acoustic finite element analysis was performed. Groove patterns with repeat periods determined with the guidance of the grating equation to produce constructive interference showed very strong and sharp backscattering peaks, but only at specific isonification angles. Optimum depths for the groove patterns with groove periods defined by the grating equation were found. A search on possible geometries was performed, varying the design variables of groove period and groove depth, with an objective function designed to select geometries that performed well at multiple isonification angles.
机译:本研究的目的是优化具有带槽表面的圆柱针,用于在医学超声程序期间最大限度地反向散射到收发器。进行了多种原型几何与2D仲谐波声学有限元分析的回溯散射性能的评估。利用光栅方程的引导确定具有重复时段的凹槽图案,以产生建设性干扰,显示出非常强烈和尖锐的反向散射峰,但仅在特定的异构角度。找到了由光栅方程限定的凹槽图案的凹槽图案的最佳深度。执行在可能几何形状的搜索,改变凹槽周期和凹槽深度的设计变量,其旨在选择在多个异构角度下执行良好的几何形状。

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