Gamma and beta oscillations are routinely observed in motor-related brain circuits during movement preparation and execution. Entrainment of gamma or beta oscillations via transcranial alternating current stimulation (tACS) over primary motor cortex (M1) has opposite effects on motor performance, suggesting a causal role of these brain rhythms for motor control. However, it is largely unknown which brain mechanisms characterize these changes in motor performance brought about by tACS. In particular, it is unclear whether these effects result from brain activity changes only in the targeted areas or within functionally connected brain circuits. Here we investigated this issue by applying gamma-band and beta-band tACS over M1 in healthy human...
Purpose of Review An increase in oscillatory activity in the γ-frequency band (approximately 50–100 ...
There is increasing interest in how the phase of local oscillatory activity within a brain area dete...
Over the past few years, the possibility of modulating fast brain oscillatory activity in the gamma ...
Gamma and beta oscillations are routinely observed in motor-related brain circuits during movement p...
Beta and gamma oscillations are the dominant oscillatory activity in the human motor cortex (M1). Ho...
Beta and gamma oscillations are the dominant oscillatory activity in the human motor cortex (M1). Ho...
Background While the role of beta (∼20 Hz), theta (∼5 Hz) and alpha (∼10 Hz) oscillations in the mot...
Voluntary movement is accompanied by changes in the degree to which neurons in the brain synchronize...
Imperceptible transcranial alternating current stimulation (tACS) changes the endogenous cortical os...
Voluntary movement is accompanied by changes in the degree to which neurons in the brain synchronize...
SummaryVoluntary movement is accompanied by changes in the degree to which neurons in the brain sync...
Beta and gamma oscillations are the dominant oscillatory activity in the human motor cortex (M1). Ho...
Transcranial alternating current stimulation (tACS) can be used to modulate oscillatory brain activi...
We applied transcranial alternating current stimulation (tACS) to the primary motor cortex (M1) at d...
β- and γ-frequency oscillations are the dominant oscillatory activities in the human motor cortex (...
Purpose of Review An increase in oscillatory activity in the γ-frequency band (approximately 50–100 ...
There is increasing interest in how the phase of local oscillatory activity within a brain area dete...
Over the past few years, the possibility of modulating fast brain oscillatory activity in the gamma ...
Gamma and beta oscillations are routinely observed in motor-related brain circuits during movement p...
Beta and gamma oscillations are the dominant oscillatory activity in the human motor cortex (M1). Ho...
Beta and gamma oscillations are the dominant oscillatory activity in the human motor cortex (M1). Ho...
Background While the role of beta (∼20 Hz), theta (∼5 Hz) and alpha (∼10 Hz) oscillations in the mot...
Voluntary movement is accompanied by changes in the degree to which neurons in the brain synchronize...
Imperceptible transcranial alternating current stimulation (tACS) changes the endogenous cortical os...
Voluntary movement is accompanied by changes in the degree to which neurons in the brain synchronize...
SummaryVoluntary movement is accompanied by changes in the degree to which neurons in the brain sync...
Beta and gamma oscillations are the dominant oscillatory activity in the human motor cortex (M1). Ho...
Transcranial alternating current stimulation (tACS) can be used to modulate oscillatory brain activi...
We applied transcranial alternating current stimulation (tACS) to the primary motor cortex (M1) at d...
β- and γ-frequency oscillations are the dominant oscillatory activities in the human motor cortex (...
Purpose of Review An increase in oscillatory activity in the γ-frequency band (approximately 50–100 ...
There is increasing interest in how the phase of local oscillatory activity within a brain area dete...
Over the past few years, the possibility of modulating fast brain oscillatory activity in the gamma ...