Bernardi L, Hayoz D, Wenzel R, Passino C, Calciati A, Weber R, Noll G
Department of Internal Medicine, University of Pavia and Instituto di Ricovero e Cura a Carattere Scientifico S. Matteo, Italy.
Am J Physiol. 1997 Oct;273(4):H1867-78. doi: 10.1152/ajpheart.1997.273.4.H1867.
To determine whether skin blood flow is local or takes part in general regulatory mechanisms, we recorded laser-Doppler flowmetry (LDF; left and right index fingers), blood pressure, muscle sympathetic nerve activity (MSNA), R-R interval, and respiration in 10 healthy volunteers and 3 subjects after sympathectomy. We evaluated 1) the synchronism of LDF fluctuations in two index fingers, 2) the relationship with autonomically mediated fluctuations in other signals, and 3) the LDF ability to respond to arterial baroreflex stimulation (by neck suction at frequencies from 0.02 to 0.20 Hz), using spectral analysis (autoregressive uni- and bivariate, time-variant algorithms). Synchronous LDF fluctuations were observed in the index fingers of healthy subjects but not in sympathectomized patients. LDF fluctuations were coherent with those obtained for blood pressure, MSNA, and R-R interval. LDF fluctuations were leading blood pressure in the low-frequency (LF; 0.1 Hz) band and lagging in the respiratory, high-frequency (HF; approximately 0.25 Hz) band, suggesting passive "downstream" transmission only for HF and "upstream" transmission for LF from the microvessels. LDF fluctuations were responsive to sinusoidal neck suction up to 0.1 Hz, indicating response to sympathetic modulation. Skin blood flow thus reflects modifications determined by autonomic activity, detectable by frequency analysis of spontaneous fluctuations.
为了确定皮肤血流是局部性的还是参与一般调节机制,我们记录了10名健康志愿者和3名交感神经切除术后受试者的激光多普勒血流仪测量值(LDF;左右食指)、血压、肌肉交感神经活动(MSNA)、R-R间期和呼吸。我们使用频谱分析(自回归单变量和双变量、时变算法)评估了:1)两个食指LDF波动的同步性;2)与其他信号中自主介导波动的关系;3)LDF对动脉压力反射刺激(通过0.02至0.20Hz频率的颈部抽吸)的反应能力。在健康受试者的食指中观察到同步的LDF波动,但在交感神经切除的患者中未观察到。LDF波动与血压、MSNA和R-R间期的波动具有相关性。LDF波动在低频(LF;0.1Hz)频段领先于血压,在呼吸高频(HF;约0.25Hz)频段滞后,这表明微血管仅对HF进行被动“下游”传输,对LF进行“上游”传输。LDF波动对高达0.1Hz的正弦颈部抽吸有反应,表明对交感神经调制有反应。因此,皮肤血流反映了由自主神经活动决定的变化,可通过对自发波动的频率分析检测到。