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Collateralization of cerebellar output to functionally distinct brainstem areas. A retrograde, non-fluorescent tracing study in the rat

机译:将小脑输出抵押到功能不同的脑干区域。大鼠逆行,非荧光示踪研究

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摘要

textabstractThe organization of the cerebellum is characterized by a number of longitudinally organized connection patterns that consist of matching olivo-cortico-nuclear zones. These entities, referred to as modules, have been suggested to act as functional units. The various parts of the cerebellar nuclei (CN) constitute the output of these modules. We have studied to what extent divergent and convergent patterns in the output of the modules to four, functionally distinct brain areas can be recognized. Two retrograde tracers were injected in various combinations of the following nuclei: the red nucleus (RN), as a main premotor nucleus; the prerubral area, as a main supplier of afferents to the inferior olive (IO); the nucleus reticularis tegmenti pontis (NRTP), as a main source of cerebellar mossy fibers; and the IO, as the source of climbing fibers. For all six potential combinations three cases were examined. All nine cases with combinations that involved the IO did not, or hardly, resulted in double labeled neurons. In contrast, all other combinations resulted in at least 10% and up to 67% of double labeled neurons in cerebellar nuclear areas where both tracers were found. These results show that the cerebellar nuclear neurons that terminate within the studied areas represent basically two intermingled populations of projection cells. One population corresponds to the small nucleo-olivary neurons whereas the other consists of medium- to large-sized neurons which are likely to distribute their axons to several other areas. Despite some consistent differences between the output patterns of individual modules we propose that modular cerebellar output to premotor areas such as the RN provides simultaneous feedback to both the mossy fiber and the climbing fiber system and acts in concert with a designated GABAergic nucleo-olivary circuit. These features seem to form a basic characteristic of cerebellar operation.
机译:小脑的组织结构以许多纵向组织的连接模式为特征,这些连接模式由匹配的皮质-皮质-核区组成。已经建议将这些实体(称为模块)用作功能单元。小脑核(CN)的各个部分构成了这些模块的输出。我们已经研究了在模块输出到四个功能上不同的大脑区域的输出中的发散和收敛模式的程度。将两种逆行示踪剂注入以下核的各种组合中:红色核(RN)作为运动前主核;灌木前地区,作为下橄榄(IO)传入的主要供应商;网状网状脑桥(NRTP),是小脑苔藓纤维的主要来源;和IO作为攀爬纤维的来源。对于所有六个潜在组合,检查了三种情况。涉及IO的所有9例组合都没有或几乎没有导致双重标记的神经元。相比之下,所有其他组合在小脑核区域(同时发现了两种示踪剂)中产生了至少10%且高达67%的双标记神经元。这些结果表明,终止于研究区域内的小脑核神经元基本上代表了两个混杂的投射细胞群。一个种群对应于小的核-橄榄神经元,而另一种群则由中型到大型神经元组成,它们可能将其轴突分布到其他几个区域。尽管各个模块的输出模式之间存在一些一致的差异,我们还是建议将小脑输出到诸如RN之类的运动前区域,同时为苔藓纤维和攀爬纤维系统提供反馈,并与指定的GABA能核-橄榄回路协同工作。这些特征似乎形成了小脑手术的基本特征。

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    Ruigrok, Tom; Teune, Thea;

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  • 年度 2014
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