
Darcy A. Diesburg
Articles
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Oct 30, 2023 |
biorxiv.org | Darcy A. Diesburg |Jan R. Wessel |Stephanie Jones
AbstractHuman frontocentral event-related potentials (FC-ERPs) are ubiquitous neural correlates of cognition and control, but their generating multiscale mechanisms remain mostly unknown. We used the Human Neocortical Neurosolver(HNN)'s biophysical model of a canonical neocortical circuit under exogenous thalamic and cortical drive to simulate the cell and circuit mechanisms underpinning the P2, N2, and P3 features of the FC-ERP observed after Stop-Signals in the Stop-Signal task (SST).
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