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大鼠中向上丘的传入投射,特别关注深层结构。

Afferent projections to the superior colliculus in the rat, with special attention to the deep layers.

作者信息

Cadusseau J, Roger M

出版信息

J Hirnforsch. 1985;26(6):667-81.

PMID:4093595
Abstract

Sources of afferent projections to the superior colliculus (SC) of the rat were determined by means of the retrograde horseradish peroxidase (HRP) method. The experiments were conducted first to provide a comprehensive map of all the brain structures which supply input to the SC, and secondly to pinpoint the sources of afferents to the deep collicular layers. Experiments conducted after large HRP deposits invading almost all the collicular layers resulted in the labeling of visual centers (cortical areas 17, 18 and 18a, ventral lateral geniculate nucleus, nucleus of the posterior commissure, nucleus of the optic tract, anterior and olivary pretectal nuclei, parabigeminal nucleus); somatosensory centers (cortical area SmI, principal and spinal tract trigeminal nuclei) auditory centers (auditory cortex, inferior colliculus and nuclei of the lateral lemniscus) and various other centers (zona incerta, substantia nigra, cingulate and motor cortices, and some hypothalamic, thalamic, pontine reticular and deep cerebellar nuclei). Deposits limited to the deep SC layers resulted in the labeling of a smaller number of structures: visual centers (cortical area 18a, nucleus of the posterior commissure, parabigeminal nucleus); somatosensory centers (cortical area SmI, principal and spinal tract trigeminal nuclei); auditory centers (inferior colliculus, nuclei of the lateral lemniscus); and various other centers (zona incerta, substantia nigra, cingulate cortex, some hypothalamic nuclei, posterior thalamic nucleus, central gray, cuneiformis and subcuneiformis nuclei, pontine reticular nucleus pars oralis). The pattern of the afferent connections to the rat's SC appears identical to the general plan of organization in mammals; the sources of afferents are extensive and allow the SC to be influenced by multisensory, limbic and even motor-related systems.

摘要

采用逆行辣根过氧化物酶(HRP)法确定大鼠上丘(SC)传入投射的来源。首先进行实验以绘制向SC提供输入的所有脑结构的综合图谱,其次确定向丘深层传入的来源。在大量HRP沉积侵入几乎所有丘层后进行的实验导致视觉中枢(皮层17、18和18a区、腹侧外侧膝状体核、后连合核、视束核、前橄榄顶盖前核和橄榄顶盖前核、副视束核)、体感中枢(皮层SmI区、三叉神经主核和脊髓束核)、听觉中枢(听觉皮层、下丘和外侧丘系核)以及各种其他中枢(未定带、黑质、扣带回和运动皮层,以及一些下丘脑、丘脑、脑桥网状核和小脑深部核团)被标记。仅限于SC深层的沉积导致较少数量的结构被标记:视觉中枢(皮层18a区、后连合核、副视束核)、体感中枢(皮层SmI区、三叉神经主核和脊髓束核)、听觉中枢(下丘、外侧丘系核)以及各种其他中枢(未定带、黑质、扣带回皮层、一些下丘脑核、丘脑后核、中央灰质、楔状核和楔下核、脑桥网状核口部)。大鼠SC传入连接的模式似乎与哺乳动物的总体组织计划相同;传入的来源广泛,使SC能够受到多感觉、边缘系统甚至运动相关系统的影响。

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