Faculty of Applied Health Sciences, University of Waterloo, Waterloo, ON N2L3G1, Canada.
Physiol Meas. 2013 Mar;34(3):291-306. doi: 10.1088/0967-3334/34/3/291. Epub 2013 Feb 12.
We tested the data repeatability for popliteal blood flow velocity (PBV), popliteal arterial diameter (AD(pop)), popliteal blood flow (PBF) and lower limb vascular conductance (VC) at rest and exercise in three body positions, two work rates and two inspired oxygen fractions. Fifteen, eleven and ten healthy volunteers participated in the three phases of the studies. Resting protocols were performed in horizontal (HOR), 35° head-down tilt (HDT) and 45° head-up tilt (HUT) for 5 min in each body position. Participants also exercised at lower and higher power outputs (repeated plantar flexion contractions at 20% and 30% maximal voluntary contraction, respectively) in HOR, HDT and HUT and in normoxia (21%O2) and hypoxia (14%O2) with the same work rates and body positions. PBV and AD(pop) were measured by ultrasound to determine PBF, and VC was estimated by dividing PBF by muscle perfusion pressure (MPP). PBV, AD(pop), PBF and VC were not different, demonstrated good agreement and consistency between the two days of testing during both rest and exercise conditions regardless of body position. Therefore, these data support the utilization of Doppler and echo Doppler ultrasound as a reproducible method to measure PBV and AD(pop) and consequently estimate PBF and VC responses in such conditions.
我们测试了三种体位、两种工作负荷和两种吸氧分数下,腘动脉血流速度(PBV)、腘动脉直径(AD(pop))、腘动脉血流量(PBF)和下肢血管传导性(VC)的重复性。15 名、11 名和 10 名健康志愿者参与了研究的三个阶段。在每个体位下,休息方案分别在水平位(HOR)、35°头低位(HDT)和 45°头高位(HUT)进行 5 分钟。参与者还在 HOR、HDT 和 HUT 中以较低和较高的功率输出(分别以 20%和 30%最大随意收缩的重复足底屈曲收缩)进行运动,在相同的工作负荷和体位下,在常氧(21%O2)和低氧(14%O2)下进行运动。使用超声测量 PBV 和 AD(pop)以确定 PBF,通过将 PBF 除以肌肉灌注压(MPP)来估计 VC。无论体位如何,在休息和运动状态下,两天的测试中 PBV、AD(pop)、PBF 和 VC 均无差异,显示出良好的一致性和可重复性。因此,这些数据支持将多普勒和超声多普勒用作可重复的方法来测量 PBV 和 AD(pop),并相应地估计在这些条件下的 PBF 和 VC 反应。