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The neural basis of timing: distributed mechanisms for diverse functions
Timing is critical to most forms of learning, behavior, and sensory-motor processing.
Converging evidence supports the notion that, precisely because of its importance across a …
Converging evidence supports the notion that, precisely because of its importance across a …
The neural bases for timing of durations
Durations are defined by a beginning and an end, and a major distinction is drawn between
durations that start in the present and end in the future ('prospective timing') and durations …
durations that start in the present and end in the future ('prospective timing') and durations …
[HTML][HTML] Toward an integration of deep learning and neuroscience
Neuroscience has focused on the detailed implementation of computation, studying neural
codes, dynamics and circuits. In machine learning, however, artificial neural networks tend …
codes, dynamics and circuits. In machine learning, however, artificial neural networks tend …
Flexible timing by temporal scaling of cortical responses
Musicians can perform at different tempos, speakers can control the cadence of their
speech, and children can flexibly vary their temporal expectations of events. To understand …
speech, and children can flexibly vary their temporal expectations of events. To understand …
What is memory? The present state of the engram
The mechanism of memory remains one of the great unsolved problems of biology.
Grappling with the question more than a hundred years ago, the German zoologist Richard …
Grappling with the question more than a hundred years ago, the German zoologist Richard …
Bayesian computation through cortical latent dynamics
Statistical regularities in the environment create prior beliefs that we rely on to optimize our
behavior when sensory information is uncertain. Bayesian theory formalizes how prior …
behavior when sensory information is uncertain. Bayesian theory formalizes how prior …
Flexible sensorimotor computations through rapid reconfiguration of cortical dynamics
Neural mechanisms that support flexible sensorimotor computations are not well
understood. In a dynamical system whose state is determined by interactions among …
understood. In a dynamical system whose state is determined by interactions among …
Low-dimensional dynamics for working memory and time encoding
Our decisions often depend on multiple sensory experiences separated by time delays. The
brain can remember these experiences and, simultaneously, estimate the timing between …
brain can remember these experiences and, simultaneously, estimate the timing between …
Striatal dynamics explain duration judgments
The striatum is an input structure of the basal ganglia implicated in several time-dependent
functions including reinforcement learning, decision making, and interval timing. To …
functions including reinforcement learning, decision making, and interval timing. To …
Differential encoding of time by prefrontal and striatal network dynamics
Telling time is fundamental to many forms of learning and behavior, including the
anticipation of rewarding events. Although the neural mechanisms underlying timing remain …
anticipation of rewarding events. Although the neural mechanisms underlying timing remain …