Top-down influence of areas 21a and 7 differently affects the surround suppression of V1 neurons in cats

Author:

Yu Hao12,Chen Shunshun1,Ye Zheng1,Zhang Qiuyu1,Tu Yanni1,Hua Tianmiao1ORCID

Affiliation:

1. College of Life Sciences, Anhui Normal University , Beijing East Road, Jinghu District, Wuhu, Anhui 241000 , China

2. Wannan Medical College School of Basic Medical Sciences, , West Wenchang Road, Yijiang District, Wuhu, Anhui , China

Abstract

Abstract Surround suppression (SS) is a phenomenon whereby a neuron’s response to stimuli in its central receptive field (cRF) is suppressed by stimuli extending to its surround receptive field (sRF). Recent evidence show that top-down influence contributed to SS in the primary visual cortex (V1). However, how the top-down influence from different high-level cortical areas affects SS in V1 has not been comparatively observed. The present study applied transcranial direct current stimulation (tDCS) to modulate the neural activity in area 21a (A21a) and area 7 (A7) of cats and examined the changes in the cRF and sRF of V1 neurons. We found that anode-tDCS at A21a reduced V1 neurons’ cRF size and increased their response to visual stimuli in cRF, causing an improved SS strength. By contrast, anode-tDCS at A7 increased V1 neurons’ sRF size and response to stimuli in cRF, also enhancing the SS. Modeling analysis based on DoG function indicated that the increased SS of V1 neurons after anode-tDCS at A21a could be explained by a center-only mechanism, whereas the improved SS after anode-tDCS at A7 might be mediated through a combined center and surround mechanism. In conclusion, A21a and A7 may affect the SS of V1 neurons through different mechanisms.

Funder

Outstanding Innovative Research Team for Molecular Enzymology and Detection in Anhui Provincial Universities

Anhui Provincial Key Laboratory of Molecular Enzymology and Mechanism of Major Diseases

Anhui Provincial Key Laboratory of the Conservation and Exploitation of Biological Resources

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Cellular and Molecular Neuroscience,Cognitive Neuroscience

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