Bertuglia S, Colantuoni A, Arnold M, Witte H
CNR Institute of Clinical Physiology, University of Pisa, Italy.
Microvasc Res. 1996 Nov;52(3):235-44. doi: 10.1006/mvre.1996.0061.
The aim of our study was to determine the cause of fluctuations in microvascular blood flow measured by laser Doppler perfusion monitoring (LDPM) in microvessels of the hamster skin fold preparation. LDPM flow fluctuations (flow motion) were compared to simultaneous records of diameter changes obtained from arterioles and venules. Time-varying coherence analysis was used to quantify the frequency of flow and diameter changes in awake hamsters in control conditions and during sodium nitroprusside-induced vasodilation. Power spectrum analysis of LDPM signals of order 4 and 3 arterioles indicated frequencies of 0.06 +/- 0.01 and 0.08 +/- 0.02 Hz, respectively. Order 3 arterioles exhibited significant temporal coherence between flow motion and vasomotion signals at a frequency of the order of 0.1 Hz. There was lack of coherence when vasomotion was absent in arterioles. Order 4 arterioles had several coherent frequencies in addition to that around 0.1 Hz. In conclusion, time-variant coherence analysis indicated that spontaneous fluctuations in flow are caused by vasomotion of order 3 arterioles with frequency around 0.1 Hz that appears to coordinate local control processes in the microcirculation. Additional frequency components present in LDPM signals are unrelated to vasomotion.
我们研究的目的是确定通过激光多普勒灌注监测(LDPM)测量的仓鼠皮肤褶皱制剂微血管中微血管血流波动的原因。将LDPM血流波动(血流运动)与从小动脉和小静脉获得的直径变化的同步记录进行比较。使用时变相干分析来量化清醒仓鼠在对照条件下以及硝普钠诱导的血管舒张期间血流和直径变化的频率。对4级和3级小动脉的LDPM信号进行功率谱分析,结果表明频率分别为0.06±0.01和0.08±0.02Hz。3级小动脉在约0.1Hz频率的血流运动和血管运动信号之间表现出显著的时间相干性。当小动脉中不存在血管运动时,缺乏相干性。4级小动脉除了在约0.1Hz附近外还有几个相干频率。总之,时变相干分析表明,血流的自发波动是由频率约为0.1Hz的3级小动脉的血管运动引起的,这种血管运动似乎协调了微循环中的局部控制过程。LDPM信号中存在的其他频率成分与血管运动无关。