We present non-invasive means that detect unilateral hand motor brain activity from one individual and subsequently stimulate the somatosensory area of another individual, thus, enabling the remote hemispheric link between each brain hemisphere in humans. Healthy participants were paired as a sender and a receiver. A sender performed a motor imagery task of either right or left hand, and associated changes in the electroencephalogram (EEG) mu rhythm (8–10 Hz) originating from either hemisphere were programmed to move a computer cursor to a target that appeared in either left or right of the computer screen. When the cursor reaches its target, the outcome was transmitted to another computer over the internet, and actuated the focused ultraso...
AbstractBackgroundThe integration of EEG recordings and transcranial neuromodulation has provided a ...
Non-invasive brain stimulation techniques allow for excitation or inhibition of neural activity via ...
Peripheral somatosensory circuits are known to respond to diverse stimulus modalities. The energy mo...
We present non-invasive means that detect unilateral hand motor brain activity from one individual a...
Transcranial focused ultrasound (FUS) is capable of modulating the neural activity of specific brain...
We describe the first direct brain-to-brain interface in humans and present results from experiments...
Human sensory and motor systems provide the natural means for the exchange of information between in...
Human sensory and motor systems provide the natural means for the exchange of information between in...
Background: Transcranial focused ultrasound (FUS) is gaining momentum as a novel non-invasive brain ...
Humans have traditionally interacted with computers or machines by using their hands to manipulate c...
In this study we explore the idea of direct brain to brain communication using what is known as Brai...
Focused ultrasound (FUS) can modulate activity in the central nervous system of animals, however the...
Transcranial focused ultrasound (FUS) is making progress as a new non-invasive mode of regional brai...
Brain-machine interfaces (BMI) are powerful devices for restoring function to people living with par...
Brain-Computer Interface (BCI) technology enables users to operate external devices without physical...
AbstractBackgroundThe integration of EEG recordings and transcranial neuromodulation has provided a ...
Non-invasive brain stimulation techniques allow for excitation or inhibition of neural activity via ...
Peripheral somatosensory circuits are known to respond to diverse stimulus modalities. The energy mo...
We present non-invasive means that detect unilateral hand motor brain activity from one individual a...
Transcranial focused ultrasound (FUS) is capable of modulating the neural activity of specific brain...
We describe the first direct brain-to-brain interface in humans and present results from experiments...
Human sensory and motor systems provide the natural means for the exchange of information between in...
Human sensory and motor systems provide the natural means for the exchange of information between in...
Background: Transcranial focused ultrasound (FUS) is gaining momentum as a novel non-invasive brain ...
Humans have traditionally interacted with computers or machines by using their hands to manipulate c...
In this study we explore the idea of direct brain to brain communication using what is known as Brai...
Focused ultrasound (FUS) can modulate activity in the central nervous system of animals, however the...
Transcranial focused ultrasound (FUS) is making progress as a new non-invasive mode of regional brai...
Brain-machine interfaces (BMI) are powerful devices for restoring function to people living with par...
Brain-Computer Interface (BCI) technology enables users to operate external devices without physical...
AbstractBackgroundThe integration of EEG recordings and transcranial neuromodulation has provided a ...
Non-invasive brain stimulation techniques allow for excitation or inhibition of neural activity via ...
Peripheral somatosensory circuits are known to respond to diverse stimulus modalities. The energy mo...