両眼視覚野における半球間コミュニケーションの基盤となる非相互的脳梁投射と入力勾配
Suraj Honnuraiah1, Helena Huang2, Elisabetta Furlanis3
1John Curtin School of Medical Research, Australian National University, Canberra, ACT, Australia; Department of Neurobiology, Harvard Medical School, Boston, MA, USA; Broad Institute of MIT and Harvard, Cambridge, MA, USA.
Abstract:
How the brain combines information received independently by the two hemispheres is not fully understood. Here, we describe a non-reciprocal circuit for interhemispheric communication in the mouse binocular visual cortex via anatomically segregated neuronal populations. Callosal projecting neurons (CPNs) receive only weak or no callosal input, whereas callosal receiving neurons (CRNs) make only weak or no callosal projections. Both populations receive direct input from the thalamus. At the cellular level, CRNs have reduced excitability compared to non-CRNs (putative CPNs) due to higher Kv1 potassium channel expression (encoded by the KCNA2 gene), with excitability of CRNs correlating with the magnitude of callosal input. Functionally, CRNs are predominantly binocular, with binocularity correlating with callosal input, whereas non-CRNs (putative CPNs) are predominantly monocular. In summary, we find that non-reciprocal callosal projections between CPNs and CRNs together with differences in excitability shaped by callosal input underlie interhemispheric communication in binocular visual cortex.
関連する概念動画
Cerebral Hemispheres
Vision
Lateralization
Motor and Sensory Areas of the Cortex
Motor Areas
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Association Areas of the Cortex
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Visual System
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