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人类 V1 中转录与偏心率的关系。

The relationship between transcription and eccentricity in human V1.

机构信息

Princeton Neuroscience Institute, Princeton University, Princeton, NJ, USA.

Psychology Department, Princeton University, Princeton, NJ, USA.

出版信息

Brain Struct Funct. 2021 Dec;226(9):2807-2818. doi: 10.1007/s00429-021-02387-5. Epub 2021 Oct 7.

Abstract

Gene expression gradients radiating from regions of primary sensory cortices have recently been described and are thought to underlie the large-scale organization of the human cerebral cortex. However, the role of transcription in the functional layout of a single region within the adult brain has yet to be clarified, likely owing to the difficulty of identifying a brain region anatomically consistent enough across individuals with dense enough tissue sampling. Overcoming these hurdles in human primary visual cortex (V1), we show a relationship between differential gene expression and the cortical layout of eccentricity in human V1. Interestingly, these genes are unique from those previously identified that contribute to the positioning of cortical areas in the visual processing hierarchy. Enrichment analyses show that a subset of the identified genes encode for structures related to inhibitory interneurons, ion channels, as well as cellular projections, and are expressed more in foveal compared to peripheral portions of human V1. These findings predict that tissue density should be higher in foveal compared to peripheral V1. Using a histological pipeline, we validate this prediction using Nissl-stained sections of postmortem occipital cortex. We discuss these findings relative to previous studies in non-human primates, as well as in the context of an organizational pattern in which the adult human brain employs transcription gradients at multiple spatial scales: across the cerebral cortex, across areas within processing hierarchies, and within single cortical areas.

摘要

从主要感觉皮质区域辐射的基因表达梯度最近已被描述,并被认为是人类大脑皮质大规模组织的基础。然而,转录在成人大脑单个区域的功能布局中的作用尚未阐明,这可能是由于难以在个体之间具有足够密集的组织采样的情况下在解剖学上识别出足够一致的脑区。在人类初级视觉皮层 (V1) 中克服了这些障碍,我们显示了基因表达差异与人类 V1 中的偏心度皮质布局之间的关系。有趣的是,这些基因与先前确定的那些有助于确定视觉处理层次结构中皮质区域位置的基因不同。富集分析表明,所确定的基因的一部分编码与抑制性中间神经元、离子通道以及细胞投射相关的结构,并且在人类 V1 的中央凹部分比周边部分表达更多。这些发现预测中央凹部分的组织密度应该比周边 V1 更高。使用组织学管道,我们使用死后枕叶皮质的尼氏染色切片验证了这一预测。我们讨论了这些发现与非人类灵长类动物的先前研究的关系,以及在组织模式下,成人大脑在多个空间尺度上采用转录梯度:在大脑皮质上、在处理层次结构内的区域之间,以及在单个皮质区域内。

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