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Simulation of noninvasive blood pressure estimation using ultrasound contrast agent microbubbles

机译:使用超声造影剂微泡估算无创血压的模拟

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摘要

The microbubble ultrasound contrast agent (UCA) has been widely recognized as a potential noninvasive tool for blood pressure measurement. However, UCA indices such as the shift in the resonance frequency and echo amplitude have problems of low resolution, nonlinear relationship with blood pressure, etc. In this paper, a novel UCA index, the shift in the subharmonic optimal driving frequency (SSODF) of microbubbles, is proposed. The effectiveness of the index for estimating blood pressure was evaluated by performing a microbubble acoustic response simulation. The behavior of commercial UCA microbubbles was investigated as a function of the driving acoustic pressure (in kilopascals) and ambient overpressure (in millimeters of mercury). Simulation results showed that for a 1.6-μm-diameter microbubble, SSODF increased linearly with the overpressure in a range of 0 to 200 mmHg and was maximum (2.07 MHz) at 380 kPa. Changes of the overpressure as small as 5 mmHg can be detected using SSODF. For a population of microbubbles with a Gaussian size distribution (mean diameter: 1.6 μm, standard deviation: 0.2 μm), SSODF was 1.7 MHz at 280 kPa. With further experimental validation, the proposed method may be developed as a novel noninvasive technique for accurate blood pressure measurement.
机译:微泡超声造影剂(UCA)已被广泛认为是潜在的血压测量非侵入性工具。但是,诸如谐振频率和回波幅度的偏移之类的UCA指标存在分辨率低,与血压呈非线性关系等问题。在本文中,一种新颖的UCA指标是子谐波最佳驱动频率(SSODF)的偏移。提出了微泡。通过执行微气泡声响应模拟,评估了该指数估算血压的有效性。研究了商业UCA微气泡的行为与驱动声压(以千帕为单位)和环境超压(以毫米汞柱为单位)的关系。仿真结果表明,对于直径为1.6μm的微气泡,SSODF在0至200 mmHg的范围内随超压线性增加,在380 kPa时最大(2.07 MHz)。使用SSODF可以检测到小至5 mmHg的超压变化。对于具有高斯尺寸分布(平均直径:1.6μm,标准偏差:0.2μm)的微气泡,SSODF在280 kPa下为1.7 MHz。通过进一步的实验验证,可以将提出的方法开发为一种用于精确血压测量的新型无创技术。

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