Spatiotemporal functional organization of excitatory synaptic inputs onto macaque V1 neurons
Average rating
Cast your vote
You can rate an item by clicking the amount of stars they wish to award to this item.
When enough users have cast their vote on this item, the average rating will also be shown.
Star rating
Your vote was cast
Thank you for your feedback
Thank you for your feedback
Author
Ju, NianshengLi, Yang
Liu, Fang
Jiang, Hongfei
Macknik, Stephen L.
Martinez-Conde, Susana
Tang, Shiming
Journal title
Nature CommunicationsDate Published
2020-02-04Publication Volume
11Publication Issue
1
Metadata
Show full item recordAbstract
The integration of synaptic inputs onto dendrites provides the basis for neuronal computation. Whereas recent studies have begun to outline the spatial organization of synaptic inputs on individual neurons, the underlying principles related to the specific neural functions are not well understood. Here we perform two-photon dendritic imaging with a genetically-encoded glutamate sensor in awake monkeys, and map the excitatory synaptic inputs on dendrites of individual V1 superficial layer neurons with high spatial and temporal resolution. We find a functional integration and trade-off between orientation-selective and color-selective inputs in basal dendrites of individual V1 neurons. Synaptic inputs on dendrites are spatially clustered by stimulus feature, but functionally scattered in multidimensional feature space, providing a potential substrate of local feature integration on dendritic branches. Furthermore, apical dendrite inputs have larger receptive fields and longer response latencies than basal dendrite inputs, suggesting a dominant role for apical dendrites in integrating feedback in visual information processing.Citation
Ju N, Li Y, Liu F, Jiang H, Macknik SL, Martinez-Conde S, Tang S. Spatiotemporal functional organization of excitatory synaptic inputs onto macaque V1 neurons. Nat Commun. 2020 Feb 4;11(1):697. doi: 10.1038/s41467-020-14501-y. PMID: 32019929; PMCID: PMC7000673.DOI
10.1038/s41467-020-14501-yae974a485f413a2113503eed53cd6c53
10.1038/s41467-020-14501-y
Scopus Count
Collections
Except where otherwise noted, this item's license is described as https://creativecommons.org/licenses/by/4.0
Related articles
- Quantitative Analysis of the Spatial Organization of Synaptic Inputs on the Postsynaptic Dendrite.
- Authors: Scheuss V
- Issue date: 2018
- Synaptic integration gradients in single cortical pyramidal cell dendrites.
- Authors: Branco T, Häusser M
- Issue date: 2011 Mar 10
- Cell-type-specific inhibition of the dendritic plateau potential in striatal spiny projection neurons.
- Authors: Du K, Wu YW, Lindroos R, Liu Y, Rózsa B, Katona G, Ding JB, Kotaleski JH
- Issue date: 2017 Sep 5
- Modulation of synaptic plasticity by the coactivation of spatially distinct synaptic inputs in rat hippocampal CA1 apical dendrites.
- Authors: Kondo M, Kitajima T, Fujii S, Tsukada M, Aihara T
- Issue date: 2013 Aug 14
- Fine and distributed subcellular retinotopy of excitatory inputs to the dendritic tree of a collision-detecting neuron.
- Authors: Zhu Y, Gabbiani F
- Issue date: 2016 Jun 1