首页> 美国卫生研究院文献>Frontiers in Neuroanatomy >Topographic Organization and Corticocortical Connections of the Forepaw Representation in Areas S1 and SC of the Opossum: Evidence for a Possible Role of Area SC in Multimodal Processing
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Topographic Organization and Corticocortical Connections of the Forepaw Representation in Areas S1 and SC of the Opossum: Evidence for a Possible Role of Area SC in Multimodal Processing

机译:负鼠区域S1和SC区域中前爪代表的地形组织和皮层皮质连接:区域SC在多峰处理中可能发挥作用的证据

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摘要

In small-brained mammals, such as opossums, the cortex is organized in fewer sensory and motor areas than in mammals endowed with larger cortical sheets. The presence of multimodal fields, involved in the integration of sensory inputs has not been clearly characterized in those mammals. In the present study, the corticocortical connections of the forepaw representation in the somatosensory caudal (SC) area of the Didelphis aurita opossum was studied with injections of fluorescent anatomical tracers in SC. Electrophysiological mapping of S1 was used to delimit its respective rostral and caudal borders, and to guide SC injections. The areal borders of S1 and the location of area SC were further confirmed by myeloarchitecture. In S1, we found a well-delimited forepaw representation, although it presented a crude internal topographic organization. Cortical projections to S1 originate in somatosensory areas of the parietal cortex, and appeared to be mostly homotopic. Physiological and connectional evidence were provided for a topographic organization in opossum area SC as well. Most notably, corticocortical projections to the forepaw representation of SC originated from somatosensory cortical areas and from cortex representing other sensory modalities, especially the visual peristriate cortex. This suggests that SC might be involved in multimodal processing similar to the posterior parietal cortex of species with larger brains.
机译:在小脑的哺乳动物(例如负鼠)中,皮层的感觉和运动区域少于在较大皮层的哺乳动物中。在那些哺乳动物中,尚不清楚涉及参与感觉输入整合的多峰场的存在。在本研究中,通过注射SC中的荧光解剖示踪剂研究了Didelphis aurita opossum的体感尾鳍(SC)区域中前额皮层的皮层皮质连接。 S1的电生理图谱用于划定其各自的鼻端和尾端边界,并指导SC注射。 S1的区域边界和SC区域的位置已通过分子体系结构进一步确定。在S1中,我们发现了一个界限清晰的前爪代表,尽管它代表了一个粗糙的内部地形组织。 S1的皮质投影起源于顶叶皮层的体感区域,并且似乎大部分是同位的。负鼠地区SC的地形组织也提供了生理和联系证据。最值得注意的是,SC的前脑皮层皮层投射来自体感皮层区域和代表其他感觉形态的皮层,尤其是视觉周围的皮层。这表明SC可能参与了多模式处理,类似于大脑较大的物种的后顶叶皮层。

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