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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >Multiscale Analysis of Microvascular Blood Flow: A Multiscale Entropy Study of Laser Doppler Flowmetry Time Series
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Multiscale Analysis of Microvascular Blood Flow: A Multiscale Entropy Study of Laser Doppler Flowmetry Time Series

机译:微血管血流的多尺度分析:激光多普勒血流时间序列的多尺度熵研究

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摘要

Processes regulating the cardiovascular system (CVS) are numerous. Each possesses several temporal scales. Their interactions lead to interdependences across multiple scales. For the CVS analysis, different multiscale studies have been proposed, mostly performed on heart rate variability signals (HRV) reflecting the central CVS; only few were dedicated to data from the peripheral CVS, such as laser Doppler flowmetry (LDF) signals. Very recently, a study implemented the first computation of multiscale entropy for LDF signals. A nonmonotonic evolution of multiscale entropy with two distinctive scales was reported, leading to a markedly different behavior from the one of HRV. Our goal herein is to confirm these results and to go forward in the investigations on origins of this behavior. For this purpose, 12 LDF signals recorded simultaneously on the two forearms of six healthy subjects are processed. This is performed before and after application of physiological scales-based filters aiming at isolating previously found frequency bands linked to physiological activities. The results obtained with signals recorded simultaneously on two different sites of each subject show a probable central origin for the nonmonotonic behavior. The filtering results lead to the suggestion that origins of the distinctive scales could be dominated by the cardiac activity.
机译:调节心血管系统(CVS)的过程众多。每个都有几个时间尺度。它们之间的相互作用导致了多个尺度上的相互依存。对于CVS分析,已提出了不同的多尺度研究,其中大多数是对反映中心CVS的心率变异性信号(HRV)进行的;只有很少一部分专用于来自外围CVS的数据,例如激光多普勒血流仪(LDF)信号。最近,一项研究对LDF信号实现了多尺度熵的首次计算。报道了具有两个不同尺度的多尺度熵的非单调演变,导致其行为与HRV明显不同。我们在此的目标是确认这些结果,并继续调查这种行为的起源。为此,对六个健康受试者的两个前臂同时记录的12个LDF信号进行处理。这是在应用基于生理标度的滤波器之前和之后执行的,目的是隔离先前发现的与生理活动相关的频带。同时在每个对象的两个不同位置上记录的信号获得的结果显示了非单调行为的可能中心起源。过滤结果提示,心脏活动可决定独特量表的起源。

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