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Simulations of circular 2D phase-array ultrasonic imaging transducers

机译:圆形二维相控阵超声成像传感器的仿真

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Theoretical simulations of the pulse-echo beam forming of two-dimensional (2D) circular planar phase-array ultrasound transducers were conducted for the optimization of the effective architectures. These results were compared with equivalent linearly reticulated 2D phase-array transducer configurations. It is predicted that ultrasound imagers based on circular 2D phase-array transducers will outperform the other architectures for several medical applications. This study was motivated by the recent demonstration of micromachining of high-density circular as well as linear reticulated 2D phase-array transducers, to achieve real-time high-resolution completely electronic steerable volumetric medical noninvasive ultrasound imaging.
机译:为了优化有效架构,对二维(2D)圆形平面相位阵列超声换能器的脉冲回波束形成进行了理论模拟。将这些结果与等效的线性网状2D相控阵换能器配置进行了比较。可以预见,基于圆形2D相控阵换能器的超声成像仪在某些医疗应用中的性能将超过其他架构。这项研究是受最近对高密度圆形以及线性网状2D相控阵换能器的微加工演示的启发而实现的,以实现实时高分辨率的完全电子可控体积医学无创超声成像。

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