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The effect of the speed and range of motion of movement on the hyperemic response to passive leg movement

机译:运动速度和运动范围对腿部被动运动的充血反应的影响

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摘要

Passive leg movement (PLM)‐induced hyperemia is used to assess the function of the vascular endothelium. This study sought to determine the impact of movement speed and range of motion (ROM) on the hyperemic response to PLM and determine if the currently recommended protocol of moving the leg through a 90° ROM at 180°/sec provides a peak hyperemic response to PLM. 11 healthy adults underwent multiple bouts of PLM, in which either movement speed (60–240°/sec) or ROM (30–120° knee flexion) were varied. Femoral artery blood flow (Doppler Ultrasound) and mean arterial pressure (MAP; photoplethysmography) were measured throughout. Movement speed generally exhibited positive linear relationships with the hyperemic response to PLM, eliciting ~15–20% increase in hyperemia and conductance for each 30°/sec increase in speed (P < 0.05). However, increasing the movement speed above 180°/sec was physically difficult and seemingly impractical to implement. ROM exhibited curvilinear relationships (P<0.05) with hyperemia and conductance, which peaked at 90°, such that a 30° increase or decrease in ROM from 90° resulted in a 10–40% attenuation (P < 0.05) in the hyperemic response. Alterations in the balance of antegrade and retrograde flow appear to play a role in this attenuation. Movement speed and ROM have a profound impact on PLM‐induced hyperemia. When using PLM to assess vascular endothelial function, it is recommended to perform the test at the traditional 180°/sec with 90° ROM, which offers a near peak hyperemic response, while maintaining test feasibility.
机译:被动腿部运动(PLM)引起的充血用于评估血管内皮的功能。这项研究试图确定运动速度和运动范围(ROM)对PLM的充血反应的影响,并确定当前推荐的以180°/ sec的速度将腿穿过90°ROM的方案是否提供了对PLM。 11名健康成年人经历了多次PLM搏动,其中运动速度(60–240°/ sec)或ROM(30–120°膝关节屈曲)有所不同。整个过程中测量股动脉血流量(多普勒超声)和平均动脉压(MAP;光体积描记法)。运动速度通常与对PLM的充血反应呈正线性关系,每增加30°/ sec速度,充血和电导率就会增加约15-20%(P <0.05)。但是,将移动速度提高到180°/ sec以上在物理上是困难的,并且似乎不可行。 ROM与充血和电导表现出曲线关系(P <0.05),在90°达到峰值,因此ROM从90°升高或降低30°导致充血反应衰减10-40%(P <0.05) 。顺行和逆行流动平衡的改变似乎在这种衰减中起作用。运动速度和ROM对PLM引起的充血有深远的影响。使用PLM评估血管内皮功能时,建议使用90°ROM以传统的180°/秒执行测试,该测试可提供接近峰值的充血反应,同时保持测试的可行性。

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