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Design of a 2D sparse array transducer for integration into an ergonomic transcranial ultrasound system

机译:2D稀疏阵列换能器的设计,可集成到人体工学的经颅超声系统中

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Transcranial Doppler Ultrasound (TCD) is one of the techniques that have been used for stroke diagnosis. This paper compares the potential of three aperiodic sparse array configurations: random array; sunflower spiral array; and log spiral array for application to TCD. To cover the full temporal window, a 30mm diameter circular aperture is selected, with a 2MHz operating frequency to match current TCD instrumentation. A 2D model developed in MATLAB simulates the far field directivity function by applying the 2D FFT on an array's aperture function. Two evaluation criteria, Peak Side-lobe Level (PSL) and Integrated Side-lobe Ratio (ISLR), are used to assess the performance of each array configuration. Simulation results demonstrate that a compromise between PSL and ISLR is required to select a suitable transducer configuration for fabrication and further evaluation. These evaluation results demonstrate that the log spiral array configuration has desirably low PSL relative to the others, while the sunflower spiral array performs better in terms of ISLR. Considering this design evaluation, a prototype array based on a log spiral layout has been manufactured. Characterization of the prototype array show that it performs as predicted.
机译:经颅多普勒超声检查(TCD)是已用于中风诊断的技术之一。本文比较了三种非周期性稀疏阵列配置的潜力:随机阵列;随机阵列;随机阵列。向日葵螺旋阵列;并记录螺旋阵列以应用于TCD。为了覆盖整个时间窗口,选择了直径为30mm的圆形孔径,其工作频率为2MHz以匹配当前的TCD仪器。在MATLAB中开发的2D模型通过将2D FFT应用于数组的孔径函数来模拟远场方向性函数。峰值旁瓣电平(PSL)和集成旁瓣比(ISLR)这两个评估标准用于评估每种阵列配置的性能。仿真结果表明,在选择合适的传感器配置进行制造和进一步评估时,需要在PSL和ISLR之间进行折衷。这些评估结果表明,对数螺旋阵列配置相对于其他配置具有理想的低PSL,而向日葵螺旋阵列在ISLR方面表现更好。考虑到该设计评估,已经制造了基于对数螺旋布局的原型阵列。原型阵列的表征表明其性能与预期一致。

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