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The role of sub-dicing in the acoustical design of an ultrasound matrix transducer for carotid arteries imaging

机译:子切割在用于颈动脉成像的超声矩阵换能器的声学设计中的作用

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Accurate diagnostics of stenosis and blood flow distribution in carotid arteries requires transducers capable of producing 3D volume images with high frame rate for real time imaging. In the process of designing a matrix probe, an important goal is to realize the acoustic stack with high sensitivity and bandwidth. In this study, we employ a finite element analysis to evaluate the effect of sub-dicing on the performance of an acoustic stack in a piezoelectric matrix array. The array is integrated with an Application Specific Integrated Circuit (ASIC), which performs the task of signal amplification and efficient data reduction. The results show that two sub-dicing cuts can improve the sensitivity by 40%, bandwidth by 20%, and reduce the ringing time by 43%, which are all desired for improving the image quality.
机译:颈动脉狭窄和血流分布的准确诊断需要能够产生具有高帧频的3D体积图像以进行实时成像的换能器。在设计矩阵探头的过程中,一个重要的目标是实现具有高灵敏度和带宽的声学堆栈。在这项研究中,我们采用有限元分析来评估细分对压电矩阵阵列中声学叠层性能的影响。该阵列与专用集成电路(ASIC)集成在一起,该专用集成电路执行信号放大和有效数据缩减的任务。结果表明,两个子切块可以将灵敏度提高40%,带宽提高20%,振铃时间减少43%,这些都是提高图像质量所需要的。

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