Nitzan M, de Boer H, Turivnenko S, Babchenko A, Sapoznikov D
Department of Electro-Optics, Jerusalem College of Technology, Israel.
J Basic Clin Physiol Pharmacol. 1994 Jul-Dec;5(3-4):269-76. doi: 10.1515/jbcpp.1994.5.3-4.269.
Direct measurement of variability in the peripheral circulation was performed by means of photoplethysmography, which provides assessment of blood volume in tissue and systolic blood volume increase. Both parameters showed oscillations at a relatively low frequency, about 0.02 Hz, and a relatively high frequency, about 0.3 Hz, which is related to respiration. These frequencies are similar to those found in measurements of heart rate variability--which is also obtained by measuring the photoplethysmographic period variability--but the powers of the different frequencies are different. The low frequency oscillation, which is attributed to the activity of the sympathetic nervous system, is more pronounced in the measurements of tissue blood volume and of systolic blood volume increase than in the measurement of heart rate.
通过光电容积描记法对周围循环的变异性进行直接测量,该方法可评估组织中的血容量和收缩期血容量增加情况。这两个参数均显示出相对低频(约0.02Hz)和相对高频(约0.3Hz)的振荡,后者与呼吸有关。这些频率与心率变异性测量中发现的频率相似——心率变异性也是通过测量光电容积描记周期变异性获得的——但不同频率的功率不同。归因于交感神经系统活动的低频振荡,在组织血容量和收缩期血容量增加的测量中比在心率测量中更为明显。