首页> 外文期刊>Journal of chemical neuroanatomy >The organization of the brainstem and spinal cord of the mouse: relationships between monoaminergic, cholinergic, and spinal projection systems.
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The organization of the brainstem and spinal cord of the mouse: relationships between monoaminergic, cholinergic, and spinal projection systems.

机译:组织小鼠的脑干和脊髓:单氨基能,胆碱能和脊柱投影系统之间的关系。

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摘要

Information regarding the organization of the CNS in terms of neurotransmitter systems and spinal connections in the mouse is sparse, especially at the level of the brainstem. An overview is presented of monoaminergic and cholinergic systems in the brainstem and spinal cord that were visualized immunohistochemically in inbred C57BL/6 and outbred CD-1 mice. This information is complemented with data on spinal cord-projecting systems that were characterized using retrograde tracing, spinal hemisections, and double labeling techniques. Attention is given to differences in these systems related to spinal levels. The data are discussed with reference to studies in the rat, and to standardized information as provided in the atlas of the mouse brain. Although the overall organization of these systems in the mouse is largely similar to those in the rat, species differences are present in relative location, size and/or connectivity of cell groups. For example, catecholaminergic neurons in the (ventro)lateral pons (A5 and A7 cell groups) in the mouse project to the spinal cord mainly via contralateral, and not ipsilateral, pathways. The data further supplement information as provided in standardized brainstem sections of the C57BL/6 mouse [Paxinos, G., Franklin, K.B.J., 2001. The mouse brain in stereotaxic coordinates. Academic Press, San Diego], especially with respect to the size and/or location of the catecholaminergic retrorubral field (A8 group), A5, A1, and C1 cell groups, and the serotonergic B4 group, reticulotegmental nucleus (B9 group), lateral paragigantocellular nucleus and raphe magnus nucleus (B3 group). Altogether this study provides a comprehensive overview of the spatial relationships of neurochemically and anatomically defined neuronal systems in the mouse brainstem and spinal cord.
机译:关于CNS组织在鼠标中的神经递质系统和脊柱连接的组织的信息稀疏,尤其是脑干的水平。概述在脑干和脊髓中呈现单氨基能和胆碱能系统,其在近红C57BL / 6和脱扣CD-1小鼠中可视化免疫组织化学。该信息与脊髓突出系统的数据相辅作,这些系统使用逆行跟踪,脊柱半联和双标记技术表征。注意与脊柱水平有关的这些系统的差异。根据大鼠的研究以及在小鼠脑的地图集中提供的标准化信息讨论数据。尽管这些系统的整体组织在小鼠中大致类似于大鼠中的那些,但是物种差异存在于细胞组的相对位置,尺寸和/或连接中。例如,在小鼠突出的(ventro)横向PON(A5和A7细胞组)中的儿茶酚胺能神经元主要通过对侧,而不是Ipsilidal,途径。数据进一步补充了C57BL / 6小鼠的标准化脑干部分[Paxinos,G.,Franklin,K.B.J.,K.B.J.,2001中的信息。学术出版社,San Diego],特别是关于儿茶酚胺能Ruckrum磁场(A8组),A5,A1和C1细胞组的大小和/或位置,以及Serotonergic B4组,近核细胞核(B9组),横向纤维素孔核核和Raphe Magnus核(B3组)。本研究共有全面概述了小鼠脑干和脊髓中神经细胞和解剖学定义的神经元系统的空间关系。

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