An alternative index for monitoring microcirculatory blood flow: The beat-to-beat microcirculatory blood flow variability

H. Hsiu, W. Hsu, Chia-Liang Hsu
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Abstract

Objective: Cardiovascular variability analysis, such heart rate variability or blood pressure variability, provides important information about activities of various regulatory mechanisms for the cardiovascular system. Aim of the present study is to use the laser Doppler flowmetry (LDF) measurement to study the correspondent changes between the beat-to-beat microcirculatory blood flow (MBF) and its variation (MBFV). Methods: 17 trials were performed on 5 male healthy volunteers. For each experiment, we applied local heating (LH) stimulation and recorded a 20-minute heating-effect data sequence. For each pulse, DCflux (average LDF flux) was calculated, and CV (coefficient of variation) of DCflux (DCCV) was then calculated to evaluate the beat-to-beat MBFV. Results: The slope between DCCV and DCflux was negative with R2 ≫0.7 (p≪0.01 by F-test). Conclusion: Our results suggest that by providing an alternative solution to overcome the major drawback for LDF measurement of lacking quantitative evaluation, MBFV parameters calculated from the beat-to-beat LDF waveform may have meaning in improving the evaluation for the LH response of the MBF perfusion.
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监测微循环血流的另一种指标:搏动间微循环血流变异性
目的:心血管变异性分析,如心率变异性或血压变异性,为了解心血管系统各种调节机制的活动提供重要信息。本研究的目的是利用激光多普勒血流仪(LDF)测量研究搏动间微循环血流(MBF)及其变异(MBFV)之间的对应变化。方法:对5名男性健康志愿者进行17项试验。对于每个实验,我们采用局部加热(LH)刺激并记录20分钟的加热效应数据序列。计算每个脉冲的dflux(平均LDF通量),然后计算DCCV的CV(变异系数)来评估搏动间MBFV。结果:DCCV与dflux之间的斜率为负,R2 < 0.7 (f检验p≪0.01)。结论:我们的研究结果表明,通过提供一种替代方案来克服LDF测量缺乏定量评价的主要缺点,从搏动-搏动LDF波形计算出的MBFV参数可能对改善对MBF灌注LH反应的评价有意义。
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