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The Design and Analysis of Split Row-Column Addressing Array for 2-D Transducer

机译:二维换能器分行列寻址阵列的设计与分析

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摘要

For 3-D ultrasound imaging, the row-column addressing (RCA) with 2N connections for an N × N 2-D array makes the fabrication and interconnection simpler than the fully addressing with N2 connections. However, RCA degrades the image quality because of defocusing in signal channel direction in the transmit event. To solve this problem, a split row-column addressing scheme (SRCA) is proposed in this paper. Rather than connecting all the elements in the signal channel direction together, this scheme divides the elements in the signal channel direction into several disconnected blocks, thus enables focusing beam access in both signal channel and switch channel directions. Selecting an appropriate split scheme is the key for SRCA to maintaining a reasonable tradeoff between the image quality and the number of connections. Various split schemes for a 32 × 32 array are fully investigated with point spread function (PSF) analysis and imaging simulation. The result shows the split scheme with five blocks (4, 6, 12, 6, and 4 elements of each block) can provide similar image quality to fully addressing. The splitting schemes for different array sizes from 16 × 16 to 96 × 96 are also discussed.
机译:对于3D超声成像,与N 2 连接的完全寻址相比,N×N 2-D阵列具有2N连接的行列寻址(RCA)使制造和互连更加简单。但是,由于在发送事件中沿信号通道方向散焦,因此RCA会降低图像质量。为了解决这个问题,本文提出了一种分割行-列寻址方案(SRCA)。该方案不是将信号通道方向上的所有元素连接在一起,而是将信号通道方向上的元素划分为几个断开的块,从而可以在信号通道和切换通道方向上聚焦光束。选择合适的分割方案是SRCA在图像质量和连接数量之间保持合理折衷的关键。通过点扩展函数(PSF)分析和成像仿真,充分研究了32×32阵列的各种分割方案。结果表明,具有五个块(每个块分别具有4、6、12、6和4个元素)的拆分方案可以为完全寻址提供相似的图像质量。还讨论了从16×16到96×96的不同阵列大小的分割方案。

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