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基于智能手机的便携式超声脉冲波多普勒血流测量仪的设计与实现。

Design and implementation of a smartphone-based portable ultrasound pulsed-wave Doppler device for blood flow measurement.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2012 Jan;59(1):182-8. doi: 10.1109/TUFFC.2012.2171.

Abstract

Blood flow measurement using Doppler ultrasound has become a useful tool for diagnosing cardiovascular diseases and as a physiological monitor. Recently, pocket-sized ultrasound scanners have been introduced for portable diagnosis. The present paper reports the implementation of a portable ultrasound pulsed-wave (PW) Doppler flowmeter using a smartphone. A 10-MHz ultrasonic surface transducer was designed for the dynamic monitoring of blood flow velocity. The directional baseband Doppler shift signals were obtained using a portable analog circuit system. After hardware processing, the Doppler signals were fed directly to a smartphone for Doppler spectrogram analysis and display in real time. To the best of our knowledge, this is the first report of the use of this system for medical ultrasound Doppler signal processing. A Couette flow phantom, consisting of two parallel disks with a 2-mm gap, was used to evaluate and calibrate the device. Doppler spectrograms of porcine blood flow were measured using this stand-alone portable device under the pulsatile condition. Subsequently, in vivo portable system verification was performed by measuring the arterial blood flow of a rat and comparing the results with the measurement from a commercial ultrasound duplex scanner. All of the results demonstrated the potential for using a smartphone as a novel embedded system for portable medical ultrasound applications.

摘要

使用多普勒超声进行血流测量已成为诊断心血管疾病和生理监测的有用工具。最近,推出了袖珍式超声扫描仪,用于便携式诊断。本文报告了使用智能手机实现便携式超声脉冲波(PW)多谱勒流量计的情况。设计了 10MHz 超声表面换能器,用于动态监测血流速度。使用便携式模拟电路系统获得定向基带多谱勒频移信号。经过硬件处理后,将多谱勒信号直接馈送到智能手机,用于实时多谱勒频谱分析和显示。据我们所知,这是首次使用该系统进行医疗超声多谱勒信号处理的报告。使用由两个平行圆盘组成的 Couette 流体模型(间隙为 2mm)来评估和校准该设备。使用该独立便携式设备在脉动条件下测量猪血流的多谱勒频谱。随后,通过测量大鼠的动脉血流并将结果与商用超声双功扫描仪的测量结果进行比较,对体内便携式系统的验证进行了测试。所有结果均表明,智能手机具有作为用于便携式医疗超声应用的新型嵌入式系统的潜力。

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