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Velocity pulse advances pressure pulse by close to 45° in the rat pial arterioles

机译:速度脉冲使大鼠心小动脉中的压力脉冲前进近45°

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In order to clarify the phase relationship between velocity pulse and pressure pulse propagating along microvessels, the red cell velocity and intravascular pressure were simultaneously measured in the rat pial arterioles of 41-53 μm in diameter with a high temporal resolution by a laser-Doppler anemometer and a servo-null micropressure system. It was found that the velocity pulse preceded the pressure pulse in all the measured arterioles by 18.7-35.6 ms. The corresponding phase difference was 43.6 +- 6.9° (mean +- SD), which is not statistically different from 45°. The value is consistent with the phase difference predicted for the blood flow in microvessels with a small reflection coefficient at frequencies as low as the heart rate of the rats. The present results suggest that the upstream changes in blood flow are transmitted by the velocity pulse faster than by the pressure pulse in the microvasculature.
机译:为了阐明沿微血管传播的速度脉冲和压力脉冲之间的相位关系,通过激光多普勒风速计同时测量了直径为41-53μm的大鼠小动脉中的红细胞速度和血管内压力,并具有较高的时间分辨率。以及伺服零压系统。发现在所有测得的小动脉中,速度脉冲都在压力脉冲之前18.7-35.6 ms。相应的相位差为43.6±6.9°(平均值±SD),与45°在统计上没有差异。该值与为微血管中的血流预测的相位差一致,该微血管在大鼠心率低的频率下具有小的反射系数。目前的结果表明,速度的脉动比微脉管系统中的压力脉动更快地传输了上游的血流变化。

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