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Streamlined sensory motor communication through cortical reciprocal connectivity in a visually guided eye movement task

机译:在视觉引导的眼球运动任务中通过皮质相互连接简化了感觉运动交流

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摘要

Cortical computation is distributed across multiple areas of the cortex by networks of reciprocal connectivity. However, how such connectivity contributes to the communication between the connected areas is not clear. In this study, we examine the communication between sensory and motor cortices. We develop an eye movement task in mice and combine it with optogenetic suppression and two-photon calcium imaging techniques. We identify a small region in the secondary motor cortex (MOs) that controls eye movements and reciprocally connects with a rostrolateral part of the higher visual areas (VRL/A/AL). These two regions encode both motor signals and visual information; however, the information flow between the regions depends on the direction of the connectivity: motor information is conveyed preferentially from the MOs to the VRL/A/AL, and sensory information is transferred primarily in the opposite direction. We propose that reciprocal connectivity streamlines information flow, enhancing the computational capacity of a distributed network.
机译:皮质计算通过相互连接的网络分布在皮质的多个区域。但是,这种连通性如何有助于连接区域之间的通信尚不清楚。在这项研究中,我们检查了感觉皮质和运动皮质之间的通讯。我们开发了小鼠的眼动任务,并将其与光遗传学抑制和双光子钙成像技术相结合。我们在辅助运动皮层(MOs)中识别出一个小的区域,该区域可控制眼睛的运动并与较高视力区域(VRL / A / AL)的后外侧部分相互连接。这两个区域编码运动信号和视觉信息。但是,区域之间的信息流取决于连接的方向:运动信息优先从MO传递到VRL / A / AL,而感觉信息则主要沿相反的方向传递。我们提出,相互连接可以简化信息流,增强分布式网络的计算能力。

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