The field of invasive brain-machine interfaces (BMIs) is typically associated with neuroprosthetic applications aiming to recover loss of motor function. However, BMIs also represent a powerful tool to address fundamental questions in neuroscience. The observed subjects of BMI experiments can also be considered as indirect observers of their own neurophysiological activity, and the relationship between observed neurons and (artificial) behavior can be genuinely causal rather than indirectly correlative. These two characteristics defy the classical object-observer duality, making BMIs particularly appealing for investigating how information is encoded and decoded by neural circuits in real time, how this coding changes with physiological lea...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
Volume I, entitled “Augmentation of Brain Functions: Brain-Machine Interfaces”, is a collection of a...
Neuroprosthetic devices based on brain-machine interface technology hold promise for the restoration...
Brain-machine interfaces (BMI) usually decode movement parameters from cortical activity to control ...
Brain-machine interfaces (BMIs) re-establish communication channels between the nervous system and a...
A brain-machine interface (BMI) is about transforming neural activity into action and sensation into...
Ever since the appearance of homo-sapiens, machines have served humans as a "brain nature interface"...
Brain-machine interfaces (BMIs) re-establish communication channels between the nervous system and a...
Brain-machine interfaces (BMIs) aim to help people with paralysis by decoding movement-related neura...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
Volume I, entitled “Augmentation of Brain Functions: Brain-Machine Interfaces”, is a collection of a...
Neuroprosthetic devices based on brain-machine interface technology hold promise for the restoration...
Brain-machine interfaces (BMI) usually decode movement parameters from cortical activity to control ...
Brain-machine interfaces (BMIs) re-establish communication channels between the nervous system and a...
A brain-machine interface (BMI) is about transforming neural activity into action and sensation into...
Ever since the appearance of homo-sapiens, machines have served humans as a "brain nature interface"...
Brain-machine interfaces (BMIs) re-establish communication channels between the nervous system and a...
Brain-machine interfaces (BMIs) aim to help people with paralysis by decoding movement-related neura...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
International audienceEver since the appearance of homo-sapiens, machines have served humans as a "b...
Volume I, entitled “Augmentation of Brain Functions: Brain-Machine Interfaces”, is a collection of a...
Neuroprosthetic devices based on brain-machine interface technology hold promise for the restoration...