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The synaptic architecture of layer 5 thick tufted excitatory neurons in mouse visual cortex - Nature Neuroscience
Abstract Despite significant progress in characterizing neocortical cell types, a complete understanding of the synaptic connections of individual excitatory cells remains elusive. This study investigates the connectivity of mouse visual cortex thick tufted layer 5 pyramidal cells, also known as extratelencephalic neurons (L5-ETns), using a 1 mm3 publicly available electron microscopy dataset.
Author Correction: Inhibitory specificity from a connectomic census of mouse visual cortex - Nature
Correction to: Nature https://doi.org/10.1038/s41586-024-07780-8 Published online 9 April 2025 In the version of the article initially published, in the “Sublaminar inhibitory specificity” section, the following reference was missing: Jézéquel, J. et al. Cadherins orchestrate specific patterns of perisomatic inhibition onto distinct pyramidal cell populations. Nat. Commun. https://doi.org/10.1038/s41467-025-59635-z (2025). It has now been added as ref. 46 in the HTML and PDF versions of the article.
[2411.00529] A General Quantum Duality for Representations of Groups with Applications to Quantum Money, Lightning, and Fire
[Submitted on 1 Nov 2024] Title:A General Quantum Duality for Representations of Groups with Applications to Quantum Money, Lightning, and Fire View a PDF of the paper titled A General Quantum Duality for Representations of Groups with Applications to Quantum Money, Lightning, and Fire, by John Bostanci and 2 other authors View PDF HTML (experimental) Abstract:Aaronson, Atia, and Susskind established that swapping quantum states $|\psi\rangle$ and $|\phi\rangle$ is computationally equivalent...
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