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A causal spatial role for apical dendrites in the cortex

Liu, A.; Harris, K. D.; Carandini, M.; Rossi, L. F.

2026-07-28 neuroscience
10.64898/2026.07.27.741062 bioRxiv
Show abstract

Cortical pyramidal neurons project a long apical dendrite to layer 1 (L1), to receive synaptic inputs that are thought to provide contextual and possibly suppressive modulation. In visual cortex, these inputs are thought to drive or suppress the responses to large stimuli. Here, we demonstrate a causal role for individual apical dendrites in the awake cortex. We performed two-photon assisted dendritic pruning in individual L5 neurons of the mouse primary visual cortex and discovered that apical dendrites do not suppress the responses to large stimuli; rather, they drive the responses of neurons that prefer such stimuli. To establish the synaptic basis of this effect, we imaged the excitatory synaptic inputs targeting the apical dendrite. We found that these inputs cover an extensive region, which is largest in neurons that prefer large stimuli. These results reveal a clear spatial role for apical dendrites in the cortex. HighlightsO_LIOptical dendritic pruning in V1 reveals a causal role for L5 apical dendrites C_LIO_LIApical dendrites drive responses in neurons that prefer large visual stimuli C_LIO_LIImaging of synaptic inputs to apical dendrites reveals extended apical receptive field C_LIO_LIThe apical receptive field is larger in L5 neurons that prefer large visual stimuli C_LI

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