Slow-oscillatory tACS does not modulate human motor cortical response to repeated plasticity paradigms

By A Mystery Man Writer
Last updated 15 Jul 2024
Slow-oscillatory tACS does not modulate human motor cortical response to  repeated plasticity paradigms
bioRxiv - the preprint server for biology, operated by Cold Spring Harbor Laboratory, a research and educational institution
Slow-oscillatory tACS does not modulate human motor cortical response to  repeated plasticity paradigms
Motor training is improved by concurrent application of slow
Slow-oscillatory tACS does not modulate human motor cortical response to  repeated plasticity paradigms
Behavioral Sciences, Free Full-Text
Slow-oscillatory tACS does not modulate human motor cortical response to  repeated plasticity paradigms
Neuroscience Research EEG ERP EEG-fMRI Publication
Slow-oscillatory tACS does not modulate human motor cortical response to  repeated plasticity paradigms
tACS motor system effects can be caused by transcutaneous stimulation of peripheral nerves
Slow-oscillatory tACS does not modulate human motor cortical response to  repeated plasticity paradigms
Slow-oscillatory tACS does not modulate human motor cortical response to repeated plasticity paradigms
Slow-oscillatory tACS does not modulate human motor cortical response to  repeated plasticity paradigms
Brain stimulation competes with ongoing oscillations for control
Slow-oscillatory tACS does not modulate human motor cortical response to  repeated plasticity paradigms
Direct-current-dependent shift of theta-burst-induced plasticity in the human motor cortex
Slow-oscillatory tACS does not modulate human motor cortical response to  repeated plasticity paradigms
Slow-oscillatory tACS does not modulate human motor cortical
Slow-oscillatory tACS does not modulate human motor cortical response to  repeated plasticity paradigms
Low frequency transcranial electrical stimulation does not entrain
Slow-oscillatory tACS does not modulate human motor cortical response to  repeated plasticity paradigms
Hacking the Brain: Dimensions of Cognitive Enhancement
Slow-oscillatory tACS does not modulate human motor cortical response to  repeated plasticity paradigms
Dual-site beta tACS over rIFG and M1 enhances response inhibition

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