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猴子视束核的传出通路及其在眼球运动中的作用。

Efferent pathways of the nucleus of the optic tract in monkey and their role in eye movements.

作者信息

Büttner-Ennever J A, Cohen B, Horn A K, Reisine H

机构信息

Department of Anatomy, University of Munich, Germany.

出版信息

J Comp Neurol. 1996 Sep 9;373(1):90-107. doi: 10.1002/(SICI)1096-9861(19960909)373:1<90::AID-CNE8>3.0.CO;2-8.

Abstract

To clarify the role of the pretectal nucleus of the optic tract (NOT) in ocular following, we traced NOT efferents with tritiated leucine in the monkey and identified the cell groups they targeted. Strong local projections from the NOT were demonstrated to the superior colliculus and the dorsal terminal nucleus bilaterally and to the contralateral NOT. The contralateral oculomotor complex, including motoneurons (C-group) and subdivisions of the Edinger-Westphal complex, including motoneurons (C-group) and subdivisions of the Edinger-Westphal complex, also received inputs. NOT efferents terminated in all accessory optic nuclei (AON) ipsilaterally; contralateral AON projections arose from the pretectal olivary nucleus embedded in the NOT. Descending pathways contacted precerebellar nuclei: the dorsolateral and dorsomedial pontine nuclei, the nucleus reticularis tegmenti pontis, and the inferior olive. Direct projections from NOT to the ipsilateral nucleus prepositus hypoglossi (ppH) appeared to be weak, but retrograde tracer injections into rostral ppH verified this projection; furthermore, the injections demonstrated that AON efferents also enter this area. Efferents from the NOT also targeted ascending reticular networks from the pedunculopontine tegmental nucleus and the locus coeruleus. Rostrally, NOT projections included the magnocellular layers of the lateral geniculate nucleus (lgn); the pregeniculate, peripeduncular, and thalamic reticular nuclei; and the pulvinar, the zona incerta, the mesencephalic reticular formation, the intralaminar thalamic nuclei, and the hypothalamus. The NOT could generate optokinetic nystagmus through projections to the AON, the ppH, and the precerebellar nuclei. However, NOT also projects to structures controlling saccades, ocular pursuit, the near response, lgn motion sensitivity, visual attention, vigilance, and gain modification of the vestibulo-ocular reflex. Any hypothesis on the function of NOT must take into account its connectivity to all of these visuomotor structures.

摘要

为阐明视束前顶盖核(NOT)在眼球跟踪中的作用,我们用氚标记的亮氨酸在猴子中追踪NOT的传出纤维,并确定它们所靶向的细胞群。结果表明,NOT有强大的局部投射至双侧上丘和背侧终核以及对侧的NOT。对侧动眼神经复合体,包括运动神经元(C组)和动眼神经副核的亚群,也接受了输入。NOT的传出纤维终止于同侧所有附属视核(AON);对侧AON的投射起源于NOT内的顶盖橄榄核。下行通路与小脑前核接触:背外侧和背内侧脑桥核、脑桥被盖网状核和下橄榄核。NOT向同侧舌下前置核(ppH)的直接投射似乎较弱,但向嘴侧ppH注射逆行示踪剂证实了这一投射;此外,注射还表明AON的传出纤维也进入该区域。NOT的传出纤维还靶向脚桥被盖核和蓝斑的上行网状网络。在嘴侧,NOT的投射包括外侧膝状体核(lgn)的大细胞层;外侧膝状体前核、脚周核和丘脑网状核;以及丘脑枕、未定带、中脑网状结构、丘脑板内核和下丘脑。NOT可通过投射至AON、ppH和小脑前核产生视动性眼球震颤。然而,NOT也投射至控制扫视、眼球追随、近反射、lgn运动敏感性、视觉注意、警觉和前庭眼反射增益调节的结构。任何关于NOT功能的假说都必须考虑到它与所有这些视觉运动结构的连接性。

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