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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >Arterial Stiffness Using Radial Arterial Waveforms Measured at the Wrist as an Indicator of Diabetic Control in the Elderly
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Arterial Stiffness Using Radial Arterial Waveforms Measured at the Wrist as an Indicator of Diabetic Control in the Elderly

机译:使用在腕部测量的径向动脉波形作为动脉的糖尿病控制指标的动脉刚度

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Although current technique of photoplethysmography (PPG) is a popular noninvasive method of waveform contour analysis in assessing arterial stiffness, data obtained are frequently affected by various environmental and physiological factors. We proposed an easily operable air pressure sensing system (APSS) for radial arterial signal capturing. Totally, 108 subjects (young, the aged with or without diabetes) were recruited from July 2009 to May 2010. Arterial waveform signals from the wrist were obtained and analyzed using Hilbert–Huang transformation (HHT). Through ensemble empirical mode decomposition (EEMD), the signals were decomposed into eight intrinsic mode functions (IMF1–8) of which IMF5 was found to be the desired signal with a discernible diastolic peak. The results showed significant differences in reflection index (RI) and stiffness index (SI) from the young subjects and those from the aged participants with or without diabetes. Significant differences in RI and SI were also noted between subjects with well-controlled diabetes and those without. Good reproducibility and correlation were demonstrated. In conclusion, the present study proposed the application of radial arterial signal capturing subsystem and HHT in acquiring more reliable data on RI and SI compared with the conventional PPG method.
机译:尽管当前的光电容积描记术(PPG)技术是评估动脉僵硬度的一种流行的波形轮廓分析非侵入性方法,但是获得的数据经常受到各种环境和生理因素的影响。我们提出了一种易于操作的气压传感系统(APSS),用于radial动脉信号捕获。从2009年7月至2010年5月,共招募了108名受试者(年轻,有糖尿病或无糖尿病的老人)。使用Hilbert-Huang变换(HHT)获得了来自手腕的动脉波形信号并进行了分析。通过整体经验模态分解(EEMD),信号被分解为八个固有模式函数(IMF1-8),其中IMF5被认为是所需信号,具有明显的舒张峰。结果显示,年轻受试者与有或没有糖尿病的老年受试者的反射指数(RI)和刚度指数(SI)都有显着差异。在患有良好控制的糖尿病的受试者和没有良好控制的糖尿病的受试者之间,也注意到RI和SI的显着差异。证明了良好的重现性和相关性。总之,本研究提出了study动脉信号捕获子系统和HHT在获取RI和SI上比常规PPG方法更可靠的数据中的应用。

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