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大鼠小脑传出投射至动眼旁区、上丘和脑桥内侧网状结构的侧支联系:荧光双标记研究

Collateralization of cerebellar efferent projections to the paraoculomotor region, superior colliculus, and medial pontine reticular formation in the rat: a fluorescent double-labeling study.

作者信息

Gonzalo-Ruiz A, Leichnetz G R

机构信息

Department of Anatomy, Medical College of Virginia, Virginia Commonwealth University, Richmond 23298.

出版信息

Exp Brain Res. 1987;68(2):365-78. doi: 10.1007/BF00248802.

Abstract

Collateralization of cerebellar efferent projections to the oculomotor region, superior colliculus (SC), and medial pontine reticular formation (mPRF) was studied in rats using fluorescent tracer substances. In one group, True Blue (TB) was injected into the oculomotor complex (OMC), including certain paraoculomotor nuclei and supraoculomotor ventral periaqueductal gray (PAG), and Diamidino Yellow (DY) was injected into the medial pontine reticular formation (mPRF) or pontine raphe. The largest number of single-TB-labeled (paraoculomotor-projecting) cells was observed in the medial cerebellar nucleus (MCN) and posterior interposed nucleus (PIN), whereas the largest number of single-DY-labeled (mPRF-projecting) cells was in the MCN. Double-TB/DY-labeled cells were present in the caudal two-thirds of the MCN, suggesting that some MCN neurons send divergent axon collaterals to the paraoculomotor region and mPRF. In another group, TB was injected into the SC and DY into the mPRF. The largest number of single-TB-labeled (SC-projecting) cells was in the PIN, although a considerable number of cells was observed in the caudal MCN, and ventral lateral cerebellar nucleus (LCN). Single-DY-labeled (mPRF-projecting) neurons were primarily located in the central and ventral MCN, but were also present in the lateral anterior interposed (AIN) and in the LCN. Double-TB/DY-labeled neurons were observed in the caudal two-thirds of the MCN and in the central portion of the LCN. The most significant new findings of the study concerned the MCN, which not only contained neurons that projected independently to the paraoculomotor region, SC, and mPRF, but also contained a considerable number of cells which collateralized to project to more than one of these nuclei. The possibility that the MCN projects to the supraoculomotor ventral PAG (containing an oculomotor interneuron system) and to the mPRF, which in the cat and monkey contain neural elements essential to the production of saccadic eye movements, is discussed. The anatomical findings suggest that the MCN in the rat plays an important role in eye movement.

摘要

利用荧光示踪物质,在大鼠中研究了小脑传出投射至动眼神经区域、上丘(SC)和脑桥内侧网状结构(mPRF)的侧支联系。在一组实验中,将真蓝(TB)注入动眼神经复合体(OMC),包括某些动眼神经旁核和动眼神经上腹中脑导水管周围灰质(PAG),并将双脒基黄(DY)注入脑桥内侧网状结构(mPRF)或脑桥中缝。在小脑内侧核(MCN)和后间位核(PIN)中观察到数量最多的单TB标记(投射至动眼神经旁区域)细胞,而在MCN中观察到数量最多的单DY标记(投射至mPRF)细胞。双TB/DY标记细胞存在于MCN尾侧的三分之二区域,这表明一些MCN神经元发出分支轴突至动眼神经旁区域和mPRF。在另一组实验中,将TB注入上丘,将DY注入mPRF。数量最多的单TB标记(投射至上丘)细胞位于PIN,尽管在尾侧MCN和小脑腹外侧核(LCN)中也观察到相当数量的细胞。单DY标记(投射至mPRF)神经元主要位于MCN的中央和腹侧,但也存在于外侧前间位核(AIN)和LCN中。在MCN尾侧的三分之二区域和LCN的中央部分观察到双TB/DY标记神经元。该研究最显著的新发现涉及MCN,它不仅包含独立投射至动眼神经旁区域、上丘和mPRF的神经元,还包含相当数量的细胞,这些细胞发出侧支投射至这些核团中的不止一个。讨论了MCN投射至动眼神经上腹中脑导水管周围灰质(包含一个动眼神经中间神经元系统)和mPRF的可能性,在猫和猴中,mPRF包含对产生眼球扫视运动至关重要的神经元件。解剖学发现表明,大鼠中的MCN在眼球运动中起重要作用。

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