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The time course and direction of lower limb vascular conductance changes during voluntary and electrically evoked isometric exercise of the contralateral calf muscle in man

机译:下肢小腿肌肉自愿和电诱发等距锻炼过程中下肢血管电导的时间过程和方向发生变化

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摘要

This study aimed to clarify the direction and timing of the change of non-active lower limb vascular conductance at the onset of contralateral limb isometric exercise and to examine the mechanisms controlling this change. Fifteen human subjects performed 2 min of electrically evoked (Stim) or voluntary (Vol) ischaemic isometric calf plantar flexor exercise at 30 % maximum voluntary contraction (MVC). Blood pressure (BP) and heart rate were continuously recorded and blood flow in the non-active contralateral lower limb was recorded at 15 s intervals. In subsets of subjects the presence of inadvertent muscle contraction was monitored by calf muscle EMG and the effects of the sensation of electrical stimulation without muscle contraction (sham) were investigated. After 10-15 s conductance had increased significantly (P < 0.05) in Vol and Stim by a mean of 15 and 12 %, respectively, whilst BP was unchanged. Following this initial increase conductance decreased progressively during Stim and Vol whilst blood pressure rose. No EMG activity was seen during either protocol. In the sham stimulation experiments where no contraction was evoked the conductance change at the onset of stimulation replicated that seen during Stim exercise. Increases in conductance were independent of central command and muscle force generation, were not activated in anticipation of exercise but could be activated secondarily to peripheral sensations associated with expected exercise. The explanation for our results might involve sympathetic withdrawal related to mental stress; however, a central pathway, which directly activates a vasodilator mechanism in passive calf muscle, remains a possibility.
机译:本研究旨在阐明对侧肢体等距锻炼开始时非活动性下肢血管电导率变化的方向和时机,并研究控制这种变化的机制。 15名人类受试者进行了2分钟的电诱发(Stim)或自愿(Vol)缺血性等距小腿plant屈肌锻炼,每次最大自愿收缩(MVC)为30%。连续记录血压(BP)和心率,每隔15秒记录一次非活动对侧下肢的血流。在受试者的子集中,通过小腿肌肌电图监测无意中的肌肉收缩的存在,并研究无肌肉收缩(假)的电刺激感觉的影响。 10-15 s后,Vol和Stim的电导率分别平均增加15%和12%(P <0.05),而BP保持不变。在此最初增加之后,电导在Stim和Vol期间逐渐降低,而血压上升。在任一方案中均未观察到EMG活动。在假刺激实验中,没有引起收缩,在刺激开始时电导率的变化复制了在刺激运动中看到的电导率变化。电导的增加与中央命令和肌肉力量的产生无关,在运动预期中并未激活,但其次是与预期运动相关的周围感觉。我们结果的解释可能涉及与精神压力有关的交感神经退缩。然而,直接激活被动小腿肌肉血管舒张机制的中枢途径仍然是可能的。

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