首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Substance P-containing neurons of the avian suprachiasmatic nucleus project directly to the nucleus of Edinger-Westphal.
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Substance P-containing neurons of the avian suprachiasmatic nucleus project directly to the nucleus of Edinger-Westphal.

机译:禽上眼裂核的含P物质神经元直接投射到Edinger-Westphal的核。

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摘要

Retrograde and anterograde pathway tracing techniques were used in the pigeon to study afferent visual input from the suprachiasmatic nucleus (SCN) of the hypothalamus to the nucleus of Edinger-Westphal (EW), the parasympathetic visceral efferent component of the oculomotor complex. Horseradish peroxidase injected into the EW retrogradely labeled numerous neurons in the contralateral SCN, a retinorecipient hypothalamic nucleus, as well as a few neurons in the ipsilateral SCN. Autoradiographic orthograde pathway tracing experiments confirmed that the SCN projects heavily upon the medial subdivision of the contralateral EW and lightly upon the medial subdivision of the ipsilateral EW. Some neurons of the SCN contain substance P and a substance P-positive plexus of fibers was seen in precisely that medial portion of the EW to which the SCN was found to project in the autoradiographic experiments. This substance P-positive fiber plexus in the medial EW was eliminated by bilateral electrolytic lesions of the SCN. These results show that the avian suprachiasmatic nucleus has a heavy contralateral and a much lighter ipsilateral projection to the medial subdivision of the EW and that this projection may be largely substance P positive. Previous studies have suggested that neurons of the medial EW specifically project to the neurons of the ciliary ganglion that control the choriocapillary blood flow of the eye. Since the SCN has been implicated in the control of circadian rhythms in vertebrates, the projection of the SCN to the EW may represent a pathway by which a circadian rhythmicity is imposed on choriocapillary blood flow. Alternatively or in addition, the SCN-EW pathway described in this paper may provide the central neural substrate for a homeostatic regulatory mechanism by which choriocapillary blood flow is controlled by the intensity of retinal illumination.
机译:鸽子使用了逆行和顺行途径追踪技术来研究从下丘脑上视交叉上核(SCN)到动眼复合体副交感性内脏传出成分爱丁格-威斯特法尔(EW)的传入视觉输入。注入EW的辣根过氧化物酶逆向标记了对侧SCN中的许多神经元,视网膜受体下丘脑核以及同侧SCN中的少数神经元。放射自显影正射路径追踪实验证实,SCN严重投射在对侧EW的内侧细分上,而轻微投射在同侧EW的内侧细分上。 SCN的一些神经元包含P物质,并且在放射自显影实验中恰好在EW的中间部分发现SCN投射到纤维的P阳性神经丛。 EW内侧的这种P阳性纤维神经丛被SCN的双边电解损伤所消除。这些结果表明,禽上睑交叉核对EW的内侧细分具有较厚的对侧突起,而同侧突起较轻,且该突起在很大程度上可能是P物质阳性。先前的研究表明,内侧EW的神经元专门投射到控制眼睛脉络膜毛细血管血流的睫状神经节的神经元。由于SCN已牵涉到脊椎动物昼夜节律的控制,因此SCN向EW的投射可能代表了将昼夜节律性施加于脉络膜毛细血管血流的途径。作为替代或补充,本文描述的SCN-EW途径可为稳态调节机制提供中枢神经基质,通过该调节机制,脉络膜毛细血管血流由视网膜照明强度控制。

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