首页> 外文期刊>The Journal of Comparative Neurology >Functional circuits mediating sensorimotor integration: Quantitative comparisons of projections from rodent barrel cortex to primary motor cortex, neostriatum, superior colliculus, and the pons.
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Functional circuits mediating sensorimotor integration: Quantitative comparisons of projections from rodent barrel cortex to primary motor cortex, neostriatum, superior colliculus, and the pons.

机译:介导感觉运动整合的功能电路:从啮齿动物的桶状皮质到初级运动皮质,新纹状体,上丘和脑桥的投影的定量比较。

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Motor performance depends on somatosensory feedback, and consistent with this finding, primary somatosensory (SI) cortex projects to several regions involved in motor control. Although the pathways mediating sensorimotor integration are known, few studies have compared their projection patterns. Therefore, in each animal, we injected two anterograde tracers into SI barrel cortex and compared the relative density and spatial extent of the labeled projections to the primary motor (MI) cortex, neostriatum, superior colliculus, and basal pons. Quantitative analysis revealed that these projections terminated most extensively in the neostriatum, to a lesser extent in MI cortex, and innervated the least amount of neuropil in the superior colliculus and pontine nuclei. Tracer overlap in the pontine nuclei was significantly higher than in the other three brains regions, and was strongly correlated with overlap in the superior colliculus, presumably because some projections to these two brain regions represent collaterals of the same neurons. The density of labeled varicosities was highest in the pons and lowest in MI. As a proportion of total labeling, densely packed clusters of labeled terminals were most prevalent in the pons, less prevalent in neostriatum and superior colliculus, and least prevalent in MI cortex. These results are consistent with physiological evidence indicating strong coherence between SI barrel cortex and the cerebellum during whisking behavior. J. Comp. Neurol. 488:82-100, 2005. (c) 2005 Wiley-Liss, Inc.
机译:运动性能取决于体感反馈,并且与该发现一致,初级体感(SI)皮质投射到运动控制涉及的多个区域。尽管介导感觉运动整合的途径是已知的,但是很少有研究比较它们的投射模式。因此,在每只动物中,我们将两个顺行示踪剂注射到SI桶状皮质中,并将标记的投射物的相对密度和空间范围与初级运动(MI)皮质,新纹状体,上丘和基底桥进行比较。定量分析显示,这些投射在新纹状体中终止最广泛,在MI皮质中的程度较小,并且在上丘和桥脑核中神经支配的神经纤维最少。示踪剂在桥脑核中的重叠显着高于其他三个大脑区域,并且与上丘的重叠密切相关,这可能是因为这两个大脑区域的某些投影代表了同一神经元的侧支。标记静脉曲张的密度在脑桥中最高,在心梗中最低。作为总标记的一部分,标记末端的密集堆积簇在脑桥中最普遍,在新纹状体和上丘中较不普遍,在MI皮质中最不普遍。这些结果与生理学证据相一致,生理学证据表明SI桶皮层和小脑在搅拌行为期间具有强的连贯性。 J.比较神经元。 488:82-100,2005.(c)2005 Wiley-Liss,Inc.

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