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大鼠穹窿下器官的传出投射:神经网络中一个参与水平衡调节的室周器官。

The efferent projections of the subfornical organ of the rat: a circumventricular organ within a neural network subserving water balance.

作者信息

Miselis R R

出版信息

Brain Res. 1981 Dec 28;230(1-2):1-23. doi: 10.1016/0006-8993(81)90388-7.

Abstract

The efferent projections of the subfornical organ (SFO) of rats were traced using the autoradiographic method of following anterograde transport of labelled proteins through axons. The efferents of the SFO go to two different areas. The first is the anteroventral third ventricular area of the preoptic region and the second is the hypothalamus particularly the neurosecretory, magnocellular nuclei. Specifically, the apparent terminal fields in the first area are in the nucleus medianus of the medial preoptic area (NM), the organum vasculosum of the lamina terminalis (OVLT), and the anterior periventricular area (PeV). Many efferent fibers to this area emerge from the rostral SFO, pass anteriorly over the anterior commissure in the midline and either descend along the anterior border of the NM or enter the PeV dorsally just beneath the anterior commissure. The apparent terminal fields within the hypothalamus are in the anterior and tuberal supraoptic nuclei (SONa and SONt), the paraventricular nucleus (PVN) including its rostral accessory cluster, the nucleus circularis (NC), the dorsal perifornical area (PFd), and in both the lateral preoptic area and lateral hypothalamus adjacent to the SON. Many efferent fibers to the hypothalamus emerge from the rostral SFO and enter the columns of the fornix, diverge with the ventral stria medullari to disperse medially and laterally over the columns of the fornix and along their dorsal border at the anterior dorsal level of the columns trajectory through the hypothalamus. These findings are discussed in terms of the SFO's role within a neural network mediating water balance behaviorally and physiologically.

摘要

采用追踪标记蛋白通过轴突进行顺行运输的放射自显影方法,对大鼠穹窿下器(SFO)的传出投射进行了追踪。SFO的传出纤维投射到两个不同的区域。第一个区域是视前区的前腹侧第三脑室区域,第二个区域是下丘脑,特别是神经分泌性的大细胞神经核。具体而言,第一个区域中明显的终末场所在内侧视前区的正中核(NM)、终板血管器(OVLT)和室周前区(PeV)。许多投射到该区域的传出纤维从SFO的嘴侧发出,在中线处向前越过前连合,然后要么沿着NM的前缘下行,要么在紧靠前连合下方从背侧进入PeV。下丘脑内明显的终末场所在视上核前部和结节部(SONa和SONt)、室旁核(PVN)(包括其嘴侧附属簇)、环核(NC)、穹窿周背侧区(PFd),以及与视上核相邻的外侧视前区和外侧下丘脑。许多投射到下丘脑的传出纤维从SFO的嘴侧发出,进入穹窿柱,与髓纹腹侧束分开,在内侧和外侧沿着穹窿柱扩散,并在穹窿柱轨迹通过下丘脑的前背侧水平沿着其背侧边界分布。本文根据SFO在行为和生理上调节水平衡的神经网络中的作用,对这些发现进行了讨论。

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