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猫脑动脉中血管舒张神经和收缩神经的超微结构分布

Ultrastructural distribution of vasodilator and constrictor nerves in cat cerebral arteries.

作者信息

Lee T J

出版信息

Circ Res. 1981 Oct;49(4):971-9. doi: 10.1161/01.res.49.4.971.

Abstract

This study examined the ultrastructural distribution of agranular vesicle-containing nerve (AVN) and granular vesicle-containing nerve (GVN) in cat cerebral blood vessels fixed in KMnO4. The percentages of the AVN and GVN throughout the adventitial layer in the basilar, middle cerebral, and anterior cerebral arteries were 63.4 and 36.7, 53.9 and 46.1, and 60.2 and 39.8, respectively. The AVN in the cat basilar artery is approximately 37 times denser than that in the rabbit basilar artery. This morphological result, in correlation with the previous pharmacological findings, provides indirect evidence that the AVN are the dilator nerves. The lack of neurogenic vasoconstriction in the cat basilar, middle cerebral, and anterior cerebral arteries may be attributable in part to a combination of denser dilator than constrictor nerves, a possible closer synaptic cleft distance for dilator than for constrictor nerves, and the reported insensitivity of the postsynaptic alpha-receptors. The small pial vessels (branches of the middle cerebral arteries), on the other hand, contain predominantly GVN (88%), suggesting that dilator nerves relative to constrictor nerves decrease as the size of the cerebral blood vessels becomes smaller. Furthermore, the synaptic cleft distance is found not parallel to the outer diameter of the artery. Thus, the results of this study indicate that the neurogenic control of brain circulation varies with brain region, lending further support to the theory that the dual cerebral innervation varies among species.

摘要

本研究检测了经高锰酸钾固定的猫脑血管中含无颗粒小泡神经(AVN)和含颗粒小泡神经(GVN)的超微结构分布。在基底动脉、大脑中动脉和大脑前动脉外膜层中,AVN和GVN的占比分别为63.4%和36.7%、53.9%和46.1%、60.2%和39.8%。猫基底动脉中的AVN密度约为兔基底动脉中AVN密度的37倍。这一形态学结果与先前的药理学发现相关,间接证明AVN是舒张神经。猫基底动脉、大脑中动脉和大脑前动脉缺乏神经源性血管收缩,部分原因可能是舒张神经比收缩神经更密集,舒张神经的突触间隙距离可能比收缩神经更近,以及报道的突触后α受体不敏感。另一方面,软脑膜小血管(大脑中动脉的分支)主要含有GVN(88%),这表明随着脑血管尺寸变小,相对于收缩神经而言,舒张神经减少。此外,发现突触间隙距离与动脉外径不平行。因此,本研究结果表明,脑循环的神经源性控制因脑区而异,进一步支持了不同物种双重脑支配存在差异的理论。

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