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基于植入式 CMUT 阵列的容积流量测量

Volumetric Flow Measurement Using an Implantable CMUT Array.

出版信息

IEEE Trans Biomed Circuits Syst. 2011 Jun;5(3):214-22. doi: 10.1109/TBCAS.2010.2095848.

DOI:10.1109/TBCAS.2010.2095848
PMID:23851472
Abstract

This paper describes volumetric-flow velocity measurement using an implantable capacitive micromachined ultrasonic transducer (CMUT) array. The array is comprised of multiple-concentric CMUT rings for ultrasound transmission and an outmost annular CMUT array for ultrasound reception. Microelectromechanical-system (MEMS) fabrication technology allows reception CMUT on this flowmeter to be implemented with a different membrane thickness and gap height than that of transmission CMUTs, optimizing the performance of these two different kinds of devices. The silicon substrate of this 2-mm-diameter CMUT ring array was bulk micromachined to approximately 80 to 100 μm thick, minimizing tissue disruption. The blood-flow velocity was detected using pulse ultrasound Doppler by comparing the demodulated echo ultrasound with the incident ultrasound. The demodulated ultrasound signal was sampled by a pulse delayed in time domain from the transmitted burst, which corresponds to detecting the signal at a specific distance. The flow tube/vessel diameter was detected through the time-flight delay difference from near and far wall reflections, which was measured from the ultrasound pulse echo. The angle between the ultrasound beam and the flow was found by using the cross-correlation from consecutive ultrasound echoes. Artificial blood flowing through three different polymer tubes was experimented with, while keeping the same volumetric flow rate. The discrepancy in flow measurement results between this CMUT meter and a calibrated laser Doppler flowmeter is less than 5%.

摘要

本文介绍了一种使用植入式电容式微机械超声换能器 (CMUT) 阵列进行体积流速测量的方法。该阵列由多个同心 CMUT 环组成,用于超声发射,最外面的环形 CMUT 阵列用于超声接收。微机电系统 (MEMS) 制造技术允许在这个流量计中接收 CMUT 的膜厚和间隙高度与发射 CMUT 不同,从而优化这两种不同器件的性能。这个 2 毫米直径的 CMUT 环形阵列的硅衬底被体微加工到大约 80 到 100 微米厚,最大限度地减少组织损伤。血流速度通过脉冲超声多普勒检测,通过比较解调后的回波超声与入射超声来检测。解调后的超声信号通过从发射脉冲中延迟时间的脉冲进行采样,这对应于在特定距离检测信号。通过从超声脉冲回波中测量近壁和远壁反射的飞行时间延迟差来检测流管/血管直径。通过使用连续超声回波的互相关来找到超声束与流动之间的角度。在保持相同体积流速的情况下,用三种不同的聚合物管进行了人工血液流动实验。与校准的激光多普勒流量计相比,这个 CMUT 仪表的流量测量结果差异小于 5%。

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