Frontiers Gain Modulation by an Urgency Signal Controls the Speed–Accuracy Trade-Off in a Network Model of a Cortical Decision Circuit
PDF) Gain Modulation by an Urgency Signal Controls the Speed–Accuracy Trade-Off in a Network Model of a Cortical Decision Circuit
a and b. In figure a the estimated normal zone length between the
The steady states of the system. (A) The system (Equation 1) has one
Frontiers Gain Modulation by an Urgency Signal Controls the Speed–Accuracy Trade-Off in a Network Model of a Cortical Decision Circuit
Dominic STANDAGE, Marie Curie Senior Research Fellow, PhD, Computer Science, University of Birmingham, Birmingham, School of Psychology
Hongzhi YOU, Beijing Normal University, Beijing, bnu, Department of Systems Science
The steady states of the system. (A) The system (Equation 1) has one
Hongzhi YOU, Beijing Normal University, Beijing, bnu, Department of Systems Science
Frontiers Gain Modulation by an Urgency Signal Controls the Speed–Accuracy Trade-Off in a Network Model of a Cortical Decision Circuit
Michael C. Dorris's research works Chinese Academy of Sciences, Beijing (CAS) and other places