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Vignesh Muralidharan

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Journal of Cognitive Neuroscience|September 8, 2021
Behavioral Induction of a High Beta State in Sensorimotor Cortex Leads to Movement SlowingVignesh Muralidharan, Adam R Aron
Cortex; a Journal Devoted to the Study of the Nervous System and Behavior|August 9, 2021
Does action-stopping involve separate pause and cancel processes? A view from premotor cortexRicci Hannah, Sumitash Jana, Vignesh Muralidharan
Current Opinion in Neurobiology|October 7, 2023
Transient oscillations as computations for cognition: Analysis, modeling and functionRobert Schmidt, Jonas Rose, Vignesh Muralidharan
The European Journal of Neuroscience|March 26, 2018
A unified hierarchical oscillatory network model of head direction cells, spatially periodic cells, and place cellsKarthik Soman, Vignesh Muralidharan, Vaddadi Srinivasa Chakravarthy
Frontiers in Neural Circuits|July 7, 2017
A Biologically Plausible Architecture of the Striatum to Solve Context-Dependent Reinforcement Learning TasksSabyasachi Shivkumar, Vignesh Muralidharan, V Srinivasa Chakravarthy
Behavior Research Methods|November 7, 2022
Failing to attend versus failing to stop: Single-trial decomposition of action-stopping in the stop signal taskRicci Hannah, Vignesh Muralidharan, Adam R Aron
Frontiers in Computational Neuroscience|July 26, 2018
An Oscillatory Neural Autoencoder Based on Frequency Modulation and MultiplexingKarthik Soman, Vignesh Muralidharan, V Srinivasa Chakravarthy
Neuroimage|February 8, 2022
Motor cortex oscillates at its intrinsic post-movement beta rhythm following real (but not sham) single pulse, rhythmic and arrhythmic transcranial magnetic stimulationRicci Hannah, Vignesh Muralidharan, Adam R Aron
Neuroimage|March 28, 2022
Transient beta modulates decision thresholds during human action-stoppingVignesh Muralidharan, Adam R Aron, Robert Schmidt
Elife|March 19, 2020
Temporal cascade of frontal, motor and muscle processes underlying human action-stoppingSumitash Jana, Ricci Hannah, Vignesh Muralidharan, et al.
Pageof 2

Showing results (1-10 of 19) with videos related to

Sort By:
Pageof 2
Journal of Cognitive Neuroscience|September 8, 2021
Behavioral Induction of a High Beta State in Sensorimotor Cortex Leads to Movement SlowingVignesh Muralidharan, Adam R Aron
Cortex; a Journal Devoted to the Study of the Nervous System and Behavior|August 9, 2021
Does action-stopping involve separate pause and cancel processes? A view from premotor cortexRicci Hannah, Sumitash Jana, Vignesh Muralidharan
Current Opinion in Neurobiology|October 7, 2023
Transient oscillations as computations for cognition: Analysis, modeling and functionRobert Schmidt, Jonas Rose, Vignesh Muralidharan
The European Journal of Neuroscience|March 26, 2018
A unified hierarchical oscillatory network model of head direction cells, spatially periodic cells, and place cellsKarthik Soman, Vignesh Muralidharan, Vaddadi Srinivasa Chakravarthy
Frontiers in Neural Circuits|July 7, 2017
A Biologically Plausible Architecture of the Striatum to Solve Context-Dependent Reinforcement Learning TasksSabyasachi Shivkumar, Vignesh Muralidharan, V Srinivasa Chakravarthy
Behavior Research Methods|November 7, 2022
Failing to attend versus failing to stop: Single-trial decomposition of action-stopping in the stop signal taskRicci Hannah, Vignesh Muralidharan, Adam R Aron
Frontiers in Computational Neuroscience|July 26, 2018
An Oscillatory Neural Autoencoder Based on Frequency Modulation and MultiplexingKarthik Soman, Vignesh Muralidharan, V Srinivasa Chakravarthy
Neuroimage|February 8, 2022
Motor cortex oscillates at its intrinsic post-movement beta rhythm following real (but not sham) single pulse, rhythmic and arrhythmic transcranial magnetic stimulationRicci Hannah, Vignesh Muralidharan, Adam R Aron
Neuroimage|March 28, 2022
Transient beta modulates decision thresholds during human action-stoppingVignesh Muralidharan, Adam R Aron, Robert Schmidt
Elife|March 19, 2020
Temporal cascade of frontal, motor and muscle processes underlying human action-stoppingSumitash Jana, Ricci Hannah, Vignesh Muralidharan, et al.
Pageof 2