首页> 外文期刊>The Journal of Physiology >Spread of vasodilatation and vasoconstriction along feed arteries and arterioles of hamster skeletal muscle.
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Spread of vasodilatation and vasoconstriction along feed arteries and arterioles of hamster skeletal muscle.

机译:仓鼠骨骼肌的饲料动脉和小动脉中血管舒张和血管收缩的扩散。

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1. In arterioles of the hamster cheek pouch, vasodilatation and vasoconstriction can spread via the conduction of electrical signals through gap junctions between cells that comprise the vessel wall. However, conduction in resistance networks supplying other tissues has received relatively little attention. In anaesthetized hamsters, we have investigated the spread of dilatation and constriction along feed arteries and arterioles of the retractor muscle, which is contiguous with the cheek pouch. 2. When released from a micropipette, acetylcholine (ACh) triggered vasodilatation that spread rapidly along feed arteries external to the muscle and arterioles within the muscle. Responses were independent of changes in wall shear rate, perivascular nerve activity, or release of nitric oxide, indicating cell-to-cell conduction. 3. Vasodilatation conducted without decrement along unbranched feed arteries, yet decayed markedly in arteriolar networks. Thus, branching of the conduction pathway dissipated the vasodilatation. 4. Noradrenaline (NA) or a depolarizing KCl stimulus evoked constriction of arterioles and feed arteries of the retractor muscle that was constrained to the vicinity of the micropipette. This behaviour contrasts sharply with the conduction of vasodilatation in these microvessels and with the conduction of vasoconstriction elicited by NA and KCl in cheek pouch arterioles. 5. Focal electrical stimulation produced constriction that spread rapidly along feed arteries and arterioles. These responses were inhibited by tetrodotoxin or prazosin, confirming the release of NA along perivascular sympathetic nerves, which are absent from arterioles studied in the cheek pouch. Thus, sympathetic nerve activity co-ordinated the contraction of smooth muscle cells as effectively as the conduction of vasodilatation co-ordinated their relaxation. 6. In the light of previous findings in the cheek pouch, the properties of vasoconstriction and vasodilatation in feed arteries and arterioles of the retractor muscle indicate that substantive differences can exist in the nature of signal transmission along microvessels of tissues that differ in structure and function.
机译:1.在仓鼠脸颊袋的小动脉中,血管扩张和血管收缩可通过电信号传导,通过构成血管壁的细胞之间的间隙连接而传播。但是,供应其他组织的阻力网络中的传导受到的关注相对较少。在麻醉的仓鼠中,我们研究了扩张和收缩沿牵开肌的进食动脉和小动脉的扩散,该扩张动脉与脸颊袋相邻。 2.当从微量移液管中释放时,乙酰胆碱(ACh)触发血管舒张,其沿着肌肉外部的饲料动脉和肌肉中的小动脉迅速扩散。反应与壁切变率,血管周围神经活动或一氧化氮释放的变化无关,表明细胞间传导。 3.血管扩张沿未分支的饲料动脉进行,但未减少,但在小动脉网络中明显衰减。因此,传导途径的分支消散了血管舒张。 4.去甲肾上腺素(NA)或去极化的KCl刺激引起收缩的小动脉和进食动脉的收缩,该收缩被限制在微量移液管附近。这种行为与这些微血管中的血管舒张传导以及NA和KCl在颊囊小动脉中引发的血管收缩传导形成鲜明对比。 5.局部电刺激产生收缩,该收缩沿饲料动脉和小动脉迅速扩散。这些反应被河豚毒素或哌唑嗪抑制,证实了NA沿血管周围交感神经的释放,这在脸颊袋中研究的小动脉中是不存在的。因此,交感神经活动有效地协调了平滑肌细胞的收缩,就像血管舒张的传导协调了它们的松弛一样。 6.根据先前在脸颊袋中的发现,饲料动脉和牵开器肌肉的小动脉中的血管收缩和血管舒张特性表明,沿结构和功能不同的组织微血管的信号传递性质可能存在实质性差异。

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