首页> 美国卫生研究院文献>The Journal of Physiology >Direct observations of muscle arterioles and venules following contraction of skeletal muscle fibres in the rat.
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Direct observations of muscle arterioles and venules following contraction of skeletal muscle fibres in the rat.

机译:直接观察大鼠骨骼肌纤维收缩后的肌肉小动脉和小静脉。

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摘要

Direct observations have been made of responses of individual arterioles and venules of rat spinotrapezius muscle to contraction of the skeletal muscle fibres. Stimuli of 4-6 V intensity, 0.1 ms duration, delivered via a micro-electrode inserted into the spinotrapezius, evoked contraction of a small bundle of skeletal muscle fibres, followed by vasodilatation which was limited to all those arterioles and venules which crossed or ran alongside activated muscle fibres. Since venules outside the region of contraction, but supplied by dilating arterioles, were not passively distended by the attendant rise in intravascular pressure, it is concluded that both the arterioles and venules dilated actively in response to muscle contraction. All arterioles responded to a single twitch contraction, the terminal arterioles (7-13 micron i.d.) showing the largest increase in diameter. Collecting venules (9-18 micron i.d.) responded to just two twitches in 1 s and larger venules to five twitches in 1 s. When twitch contractions were continuously evoked for 10 s, the responses in individual arterioles and venules were graded with twitch frequency, the fastest and largest response occurring at 6-8 Hz. Tetanic contraction, at 40 Hz for 1 s, produced faster responses in all vessels, a maximum 55% increase from resting internal diameter being attained in only 8 s in some terminal arterioles. In all vessels the responses to tetanic contraction were equal to the maximal dilatation induced by papaverine. These results, in contrast with conclusions drawn from indirect estimates of venous responses, show that venules, like arterioles, dilate actively in response to muscle contraction. Venule dilatation may reduce the rise in capillary hydrostatic pressure, thereby limiting the outward filtration of fluid.
机译:已经直接观察到大鼠棘斜方肌的单个小动脉和小静脉对骨骼肌纤维收缩的反应。 4-6 V强度的刺激,持续时间为0.1 ms,通过将微电极插入到斜方肌中引起,引起一小束骨骼肌纤维收缩,然后血​​管舒张,仅限于所有交叉或跑动的小动脉和小静脉以及激活的肌肉纤维。由于收缩区域以外的小静脉是由扩张的小动脉提供的,因此不会伴随血管内压力的升高而被动扩张,因此可以得出结论,小动脉和小静脉均响应于肌肉收缩而主动扩张。所有小动脉都对单个抽搐收缩做出反应,末端小动脉(内径7-13微米)显示出最大的直径增加。收集小静脉(内径9-18微米)在1 s内仅响应两次抽动,较大的小静脉在1 s中响应5次抽动。连续引起抽搐收缩10 s时,各个小动脉和小静脉的反应均以抽搐频率分级,最快和最大的反应发生在6-8 Hz。在40 Hz下进行1 s的强直性收缩,可在所有血管中产生较快的响应,在某些末端小动脉中,仅在8 s内静息内径最多可增加55%。在所有血管中,对强直性收缩的反应均等于罂粟碱引起的最大扩张。这些结果与对静脉反应的间接估计得出的结论相反,表明小静脉像小动脉一样,会随着肌肉收缩而积极扩张。静脉扩张可减少毛细血管静水压力的升高,从而限制流体的向外过滤。

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