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Rhythmicity in arterial smooth muscle.

机译:动脉平滑肌的节律性。

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Many arteries and arterioles exhibit rhythmical contractions which are synchronous over considerable distances. This vasomotion is likely to assist in tissue perfusion especially during periods of altered metabolism or perfusion pressure. While the mechanism underlying vascular rhythmicity has been investigated for many years, it has only been recently, with the advent of imaging techniques for visualizing intracellular calcium release, that significant advances have been made. These methods, when combined with mechanical and electrophysiological recordings, have demonstrated that the rhythm depends critically on calcium released from intracellular stores within the smooth muscle cells and on cell coupling via gap junctions to synchronize oscillations in calcium release amongst adjacent cells. While these factors are common to all vessels studied to date, the contribution of voltage-dependent channels and the endothelium varies amongst different vessels. The basic mechanism for rhythmical activity in arteries thus differs from its counterpart in non-vascular smooth muscle, where specific networks of pacemaker cells generate electrical potentials which drive activity within the otherwise quiescent muscle cells.
机译:许多动脉和小动脉的节律性收缩在相当长的距离上是同步的。这种血管运动很可能有助于组织灌注,尤其是在新陈代谢或灌注压力改变的时期。尽管对血管节律性的机制进行了多年研究,但直到最近,随着可视化细胞内钙释放的成像技术的出现,才取得了重大进展。这些方法与机械和电生理记录相结合时,已证明该节律主要取决于平滑肌细胞内细胞内储存所释放的钙以及通过间隙连接的细胞偶联以同步相邻细胞之间钙释放的振荡。尽管这些因素是迄今为止研究的所有血管所共有的,但电压​​依赖性通道和内皮的贡献在不同血管之间也有所不同。因此,动脉节律性活动的基本机制不同于非血管平滑肌中的相应机制,后者的起搏器细胞特定网络会产生电位,从而驱动原本处于静止状态的肌肉细胞内的活动。

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