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成年自发性高血压大鼠蓝斑核神经元的解剖学改变。

Anatomical alterations in locus coeruleus neurons in the adult spontaneously hypertensive rat.

作者信息

Felten D L, Rubin L R, Felten S Y, Weyhenmeyer J A

出版信息

Brain Res Bull. 1984 Sep;13(3):433-6. doi: 10.1016/0361-9230(84)90094-7.

Abstract

A golgi-Cox examination of the locus coeruleus in the spontaneously hypertensive rat (SHR) has shown an increase in the number of primary dendritic branches, in the number of secondary branch points, in the mean length of the dendritic branches from the soma to the outer extent of the secondary branches, and in the longest extent of the dendritic domain in comparison with the locus coeruleus in the Wistar-Kyoto normotensive rats at sixteen weeks of age. We suggest that the anatomical changes may provide a substrate for altered afferent relationships in the neurochemical regulation of neurons of the locus coeruleus, although it remains to be shown whether such alterations are related in any way to blood pressure. It appears evident that the altered mechanisms resulting in hypertension in this genetic model are more complex than an anatomical or neurochemical modification in one of the central autonomic nuclei. However, the present finding that anatomical alterations in the dendritic arborizations of a key nucleus such as the locus coeruleus occur, points towards a need for further examination of the interrelationships of specific neurotransmitter systems in this nucleus.

摘要

对自发性高血压大鼠(SHR)蓝斑进行的高尔基-考克斯染色检查显示,与16周龄的Wistar-Kyoto正常血压大鼠的蓝斑相比,原发性树突分支数量、二级分支点数量、从胞体到二级分支外部范围的树突分支平均长度以及树突域的最长范围均有所增加。我们认为,这些解剖学变化可能为蓝斑神经元神经化学调节中传入关系的改变提供了一个基础,尽管这些改变是否与血压有任何关联仍有待证实。显然,在这个遗传模型中导致高血压的改变机制比中枢自主神经核之一的解剖学或神经化学改变更为复杂。然而,目前发现关键核如蓝斑的树突分支存在解剖学改变,这表明需要进一步研究该核中特定神经递质系统的相互关系。

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