Author:
Zhang Qing-fang,Li Hao,Chen Ming,Guo Aike,Wen Yunqing,Poo Mu-ming
Abstract
In the primary visual cortex (V1) of many mammalian species, neurons are spatially organized according to their preferred orientation into a highly ordered map. However, whether and how the various presynaptic inputs to V1 neurons are organized relative to the neuronal orientation map remain unclear. To address this issue, we constructed genetically encoded calcium indicators targeting axon boutons in two colors and used them to map the organization of axon boutons of V1 intrinsic and V2–V1 feedback projections in tree shrews. Both connections are spatially organized into maps according to the preferred orientations of axon boutons. Dual-color calcium imaging showed that V1 intrinsic inputs are precisely aligned to the orientation map of V1 cell bodies, while the V2–V1 feedback projections are aligned to the V1 map with less accuracy. Nonselective integration of intrinsic presynaptic inputs around the dendritic tree is sufficient to reproduce cell body orientation preference. These results indicate that a precisely aligned map of intrinsic inputs could reinforce the neuronal map in V1, a principle that may be prevalent for brain areas with function maps.
Funder
Chinese Academy of Sciences
Ministry of Science and Technology of the People's Republic of China
National Natural Science Foundation of China
Shanghai Key Basic Research Project
Key Research Program of Frontier Sciences, Chinese Academy of Sciences
International Partnership Program, Chinese Academy of Sciences
Publisher
Proceedings of the National Academy of Sciences
Cited by
17 articles.
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