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一种用于超声造影成像的带有定制设计接收集成电路的原型系统。

A Prototype System With Custom-Designed RX ICs for Contrast-Enhanced Ultrasound Imaging.

作者信息

Zhou Meiyi, Chen Peiran, Pollet Andreas M A O, Ouzounov Sotir, den Toonder Jaap M J, Mischi Massimo, Cantatore Eugenio, Harpe Pieter

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2022 May;69(5):1649-1660. doi: 10.1109/TUFFC.2022.3161226. Epub 2022 Apr 27.

Abstract

This work presents a prototype system based on a multichannel receiving (RX) integrated circuit (IC) for contrast-enhanced ultrasound (CEUS) imaging. The RX IC is implemented in a 40-nm low-voltage CMOS technology and is designed to interface to a capacitive micromachined ultrasonic transducer array. To enable a direct connection of the RX electronics to the transducer, an analog multiplexer with on-chip protection circuitry is developed. Stress tests confirm the reliability of this arrangement when combined with a high-voltage pulser. The RX IC is equipped with a highly programmable bandpass filter to capture harmonic signals from ultrasound contrast agents (UCAs) while suppressing fundamental components. In order to examine the impact of analog front-end (AFE) bandpass filtering, in vitro acoustic experiments are performed with UCAs. A spatial resolution analysis suggests that the AFE bandpass filtering combined with a pulse inversion (PI) technique can improve the lateral resolution by 38% or 9% compared to the original full-bandwidth approach or a stand-alone PI approach, respectively, while the impact on axial resolution is negligible. A phantom study shows that compared to digital bandpass filtering, the AFE bandpass filtering enables better use of the dynamic range of the RX electronics, resulting in better generalized contrast-to-noise ratio from 0.44/0.53 to 0.57/0.68 without or with PI.

摘要

这项工作展示了一种基于多通道接收(RX)集成电路(IC)的原型系统,用于超声造影(CEUS)成像。该RX IC采用40纳米低压CMOS技术实现,旨在与电容式微机械超声换能器阵列接口。为了使RX电子设备能够直接连接到换能器,开发了一种带有片上保护电路的模拟多路复用器。应力测试证实了这种配置与高压脉冲发生器结合时的可靠性。该RX IC配备了一个高度可编程的带通滤波器,用于捕获来自超声造影剂(UCA)的谐波信号,同时抑制基波成分。为了研究模拟前端(AFE)带通滤波的影响,使用UCA进行了体外声学实验。空间分辨率分析表明,与原始的全带宽方法或单独的脉冲反转(PI)方法相比,AFE带通滤波与脉冲反转(PI)技术相结合可分别将横向分辨率提高38%或9%,而对轴向分辨率的影响可忽略不计。体模研究表明,与数字带通滤波相比,AFE带通滤波能够更好地利用RX电子设备的动态范围,在不使用或使用PI的情况下,广义对比度噪声比从0.44/0.53提高到0.57/0.68。

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