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嗅皮层感受野的双侧对齐。

Bilateral Alignment of Receptive Fields in the Olfactory Cortex.

机构信息

Molecules, Cells, and Organisms Graduate Program, Harvard University, Cambridge, Massachusetts 02138.

Department of Molecular and Cellular Biology and Center for Brain Science, Harvard University, Cambridge, Massachusetts 02138.

出版信息

eNeuro. 2024 Nov 6;11(11). doi: 10.1523/ENEURO.0155-24.2024. Print 2024 Nov.

Abstract

Each olfactory cortical hemisphere receives ipsilateral odor information directly from the olfactory bulb and contralateral information indirectly from the other cortical hemisphere. Since neural projections to the olfactory cortex (OC) are disordered and nontopographic, spatial information cannot be used to align projections from the two sides like in the visual cortex. Therefore, how bilateral information is integrated in individual cortical neurons is unknown. We have found, in mice, that the odor responses of individual neurons to selective stimulation of each of the two nostrils are significantly correlated, such that odor identity decoding optimized with information arriving from one nostril transfers very well to the other side. Nevertheless, these aligned responses are asymmetric enough to allow decoding of stimulus laterality. Computational analysis shows that such matched odor tuning is incompatible with purely random connections but is explained readily by Hebbian plasticity structuring bilateral connectivity. Our data reveal that despite the distributed and fragmented sensory representation in the OC, odor information across the two hemispheres is highly coordinated.

摘要

每个嗅皮质半球都直接从嗅球接收同侧的气味信息,从对侧皮质半球间接接收对侧信息。由于到嗅皮质(OC)的神经投射是紊乱且非拓扑的,因此不能像在视觉皮质中那样使用空间信息来对齐来自两侧的投射。因此,双侧信息在单个皮质神经元中如何整合尚不清楚。我们在小鼠中发现,单个神经元对两个鼻孔中每一个的选择性刺激的气味反应显著相关,使得从一个鼻孔接收到的信息优化后的气味身份解码可以很好地转移到另一侧。然而,这些对齐的反应足够不对称,足以允许对刺激的侧性进行解码。计算分析表明,这种匹配的气味调谐与纯粹的随机连接不兼容,但很容易用赫布可塑性构建双侧连接来解释。我们的数据表明,尽管 OC 中的感觉表示是分布式和碎片化的,但两个半球之间的气味信息高度协调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4ec/11540595/ffe85df61447/eneuro-11-ENEURO.0155-24.2024-g001.jpg

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