bioRxiv · 10.1101/2023.10.16.562034
Cortical mapping of the sensory response reveals strong brain-state dependence of the late component
Abstract
Sensory information must be integrated across a distributed brain network for stimulus processing and perception. Recent studies have revealed specific spatiotemporal patterns of cortical activation for the early and late components of sensory-evoked responses, which are associated with stimulus features and perception, respectively. However, our understanding of how the brain state influences the sensory-evoked activation across the mouse cortex remains limited. In this study, we utilized isoflurane to modulate the brain state and conducted wide-field calcium imaging of Thy1-GCaMP6f mice to monitor the distributed activation evoked by multi-whisker stimulation. Our findings reveal that the level of anesthesia strongly shapes the spatiotemporal features and the functional connectivity of the sensory-activated network. As anesthesia levels decrease, we observe increasingly complex responses, accompanied by the emergence of the late component within the sensory-evoked response. The persistence of the late component under anesthesia raises new questions regarding the potential existence of perception during unconscious states.
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Montagni, E., Resta, F., Tort-Colet, N., Scaglione, A., Mazzamuto, G., Destexhe, A., Pavone, F. S., Allegra Mascaro, A. L.. 2023-10-17. Cortical mapping of the sensory response reveals strong brain-state dependence of the late component. https://doi.org/10.1101/2023.10.16.562034
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