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Digital Thermal Monitoring (DTM) of Vascular Reactivity Closely Correlates with Doppler Flow Velocity

机译:血管反应性的数字热监测(DTM)与多普勒流速密切相关

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摘要

The noninvasive measurement of peripheral vascular reactivity, as an indicator of vascular function, provides a valuable tool for cardiovascular screening of at-risk populations. Practical and economical considerations demand that such a test be low-cost and simple to use. To this end, it is advantageous to substitute digital thermal monitoring (DTM) for the more costly and complex Doppler system commonly used for this measurement.A signal processing model was developed to establish the basis for the relationship between finger temperature reactivity and blood flow reactivity following a transient brachial artery occlusion and reperfusion protocol (reactive hyperemia). Flow velocity signals were acquired from the radial artery of human subjects via an 8 MHz Doppler probe while simultaneous DTM signals were acquired from a distal fingertip via DTM sensors. The model transforms the DTM temperature signals into normalized flow signals via a deconvolution method which employs an exponential impulse function. The DTM normalized flow signals were compared to simultaneous, low-frequency, normalized flow signals computed from Doppler sensors. The normalized flow signals, derived from DTM and Doppler sensors, were found to yield similar reactivity responses during reperfusion. The reactivity areas derived from DTM and Doppler sensors, indicative of hyperemic volumes, were found to be within ± 15%. In conclusion, this signal processing model provides a means to measure vascular reactivity using DTM sensors, that is equivalent to that obtained by more complex Doppler systems.
机译:作为血管功能指标的外周血管反应性的无创测量为心血管疾病高危人群的筛查提供了有价值的工具。出于实用和经济方面的考虑,要求这种测试必须低成本且易于使用。为此,用数字热监测(DTM)代替通常用于此测量的更昂贵,更复杂的多普勒系统是有利的。开发了一种信号处理模型,以建立手指温度反应性与血流反应性之间关系的基础短暂性肱动脉阻塞和再灌注方案(反应性充血)后。流速信号是通过8 MHz多普勒探针从人类subjects动脉获取的,而同时DTM信号是通过DTM传感器从远端指尖获取的。该模型通过采用指数脉冲函数的反卷积方法将DTM温度信号转换为归一化流量信号。将DTM归一化流量信号与从多普勒传感器计算出的同步低频归一化流量信号进行比较。发现从DTM和多普勒传感器获得的归一化流量信号在再灌注期间会产生相似的反应性响应。发现来自DTM和多普勒传感器的反应区域表明充血量在±15%以内。总之,此信号处理模型提供了一种使用DTM传感器测量血管反应性的方法,该方法等效于通过更复杂的多普勒系统获得的方法。

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