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首页> 外文期刊>The Journal of Physiology >Vasodilatation is obligatory for contraction-induced hyperaemia in canine skeletal muscle.
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Vasodilatation is obligatory for contraction-induced hyperaemia in canine skeletal muscle.

机译:血管扩张是犬骨​​骼肌收缩引起的充血所必需的。

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There is a rapid increase in blood flow to active skeletal muscle with the onset of exercise, but the mechanism(s) eliciting this increase remains elusive. We hypothesized that the rapid increase in blood flow to active skeletal muscle with the onset of exercise is attributable to vasodilatation as a consequence of smooth muscle hyperpolarization. To test this hypothesis we examined the blood flow response to a brief tetanic contraction in which potassium (K(+)) was infused intra-arterially to elevate the [K(+)](o) and clamp the smooth muscle membrane potential within the skeletal muscle vascular bed. In six anaesthetized beagle dogs control contractions increased hindlimb blood flow by 97 +/- 14 ml min(-1). During K(+) infusion the hyperaemic response to contraction was 8 +/- 3 ml min(-1). Since the hindlimb blood flow was reduced during K(+) infusion, a similar reduction in baseline blood flow was produced with phenylephrine infusion. During phenylephrine infusion the hyperaemic response to contraction was preserved (89 +/- 23 ml min(-1)). Recovery contractions performed after the discontinuation of the K(+) infusion elicited blood flow responses similar to control (100 +/- 11 ml min(-1)). In a separate experimental protocol using the isolated gastrocnemius muscle of mongrel dogs (n= 6) K(+) infusion did not alter force production by the skeletal muscle. Our data indicate that in the absence of vasodilatation, there is virtually no change in blood flow. One implication of this finding is that the muscle pump cannot be responsible for the initial contraction-induced hyperaemia. We conclude that the increase in blood flow immediately following a single muscle contraction is due to vasodilatation, presumably as a consequence of smooth muscle hyperpolarization.
机译:运动开始后,活跃骨骼肌的血流量迅速增加,但是引起这种增加的机制仍然难以捉摸。我们假设运动开始时活动骨骼肌的血流量快速增加是由于平滑肌超极化导致的血管舒张。为了检验该假设,我们检查了短暂的强直性收缩的血流响应,其中动脉内注入钾(K(+))以提高[K(+)](o)并将平滑肌膜电位钳制在骨骼肌血管床。在六只麻醉的比格犬中,控制收缩使后肢的血流量增加97 +/- 14 ml min(-1)。在K(+)输注过程中,对收缩的充血反应为8 +/- 3 ml min(-1)。由于在K(+)输注过程中后肢血流量减少,因此用去氧肾上腺素输注产生了类似的基线血流量减少。在去氧肾上腺素输注期间,对收缩的充血反应得以保留(89 +/- 23 ml min(-1))。停止K(+)输注后进行的恢复收缩引起类似于对照(100 +/- 11 ml min(-1))的血流反应。在一个单独的实验方案中,使用杂种犬(n = 6)的孤立腓肠肌,输注K(+)不会改变骨骼肌的力量产生。我们的数据表明,在没有血管舒张的情况下,血流几乎没有变化。这一发现的一个暗示是,肌泵不能引起最初的收缩诱导的充血。我们得出的结论是,单个肌肉收缩后立即的血流量增加是由于血管舒张引起的,大概是平滑肌超极化的结果。

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