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  The cellular underpinnings of the human cortical connectome

Zhang, X.-H., Anderson, K. M., Dong, H.-M., Chopra, S., Dhamala, E., Emani, P. S., et al. (2023). The cellular underpinnings of the human cortical connectome. bioRxiv. doi:10.1101/2023.07.05.547828.

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Zhang, Xi-Han, Author
Anderson, Kevin M., Author
Dong, Hao-Ming, Author
Chopra, Sidhant, Author
Dhamala, Elvisha, Author
Emani, Prashant Siva, Author
Margulies, Daniel S.1, Author                 
Holmes, Avram J., Author
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1Max Planck Research Group Neuroanatomy and Connectivity, MPI for Human Cognitive and Brain Sciences, Max Planck Society, ou_1356546              

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 Abstract: The functional properties of the human brain arise, in part, from the vast assortment of cell types that pattern the cortex. The cortical sheet can be broadly divided into distinct networks, which are further embedded into processing streams, or gradients, that extend from unimodal systems through higher-order association territories. Here, using transcriptional data from the Allen Human Brain Atlas, we demonstrate that imputed cell type distributions are spatially coupled to the functional organization of cortex, as estimated through fMRI. Cortical cellular profiles follow the macro-scale organization of the functional gradients as well as the associated large-scale networks. Distinct cellular fingerprints were evident across networks, and a classifier trained on post-mortem cell-type distributions was able to predict the functional network allegiance of cortical tissue samples. These data indicate that the in vivo organization of the cortical sheet is reflected in the spatial variability of its cellular composition.

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Language(s): eng - English
 Dates: 2023-07-06
 Publication Status: Published online
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 Identifiers: DOI: 10.1101/2023.07.05.547828
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Title: bioRxiv
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