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Connectional subdivision of the claustrum: two visuotopic subdivisions in the macaque

机译:锁骨的连接细分:猕猴中的两个视觉细分

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摘要

The claustrum is a surprisingly large, sheet-like neuronal structure hidden beneath the inner surface of the neocortex. We found that the portions of the claustrum connected with V4 appear to overlap considerably with those portions connected with other cortical visual areas, including V1, V2, MT, MST and FST, TEO and TE. We found extensive reciprocal connections between V4 and the ventral portion of the claustrum (vCl), which extended through at least half of the rostrocaudal extent of the structure. Additionally, in approximately 75% of the cases, we found reciprocal connections between V4 and a more restricted region located farther dorsal, near the middle of the structure (mCl). Both vCl and mCl appear to have at least a crude topographic organization. Based on the projection of these claustrum subdivisions to the amygdala, we propose that vCl and mCl are gateways for the transmission of visual information to the memory system. In addition to these crude visuotopically organized regions, there are other parts of the claustrum that obey the topographical proximity principle, with considerable overlap of their connections. There is only an overall segregation of claustrum regions reciprocally connected to the occipital, parietal, temporal and frontal lobes. The portion of the claustrum connected to the visual cortex is located ventral and posterior; the one connected to the auditory cortex is located dorsal and posterior; the one connected to the somatosensory cortex is located dorsal and medial; the one connected to the frontal premotor and motor cortices is located dorsal and anterior; while the one connected to the temporal cortex is located ventral and anterior. The extensive reciprocal connections of the claustrum with almost the entire neocortex and its projections to the hippocampus, amygdala and basal ganglia prompt us to propose its role as a gateway for perceptual information to the memory system.
机译:锁骨是新皮层内表面之下隐藏的巨大的片状神经元结构。我们发现,锁骨的与V4连接的部分似乎与与其他皮层视觉区域(包括V1,V2,MT,MST和FST,TEO和TE)连接的那些部分显着重叠。我们发现V4和锁骨的腹侧部分(vC1)之间存在广泛的相互联系,腹侧部分至少延伸了该结构的后尾巴范围的一半。此外,在大约75%的情况下,我们发现V4与位于结构中部(mCl)附近,更靠近背侧的更受限区域之间存在相互联系。 vCl和mCl似乎都至少具有粗略的地形组织。基于这些claustrum细分到杏仁核的投影,我们提出vCl和mCl是将视觉信息传输到内存系统的网关。除了这些粗略的视觉组织区域之外,锁骨的其他部分也遵循地形接近原则,并且它们的连接处有相当大的重叠。只有锁骨区域的整体隔离与枕叶,顶叶,颞叶和额叶相互连接。锁骨的与视觉皮层相连的部分位于腹侧和后侧;与听觉皮层相连的一个位于背侧和后侧。与体感皮层相连的一个位于背侧和内侧。与额前运动和运动皮层相连的一个位于背侧和前侧。而与颞叶皮质相连的则位于腹侧和前侧。锁骨几乎与整个新皮层的广泛相互联系以及其对海马,杏仁核和基底神经节的投射促使我们提出其作为感知信息通往记忆系统的途径的作用。

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