Experiments with brain-machine interfaces (BMIs) reveal that the estimated preferred direction (EPD) of cortical motor units may shift following the transition to brain control. However, the cause of those shifts, and in particular, whether they imply neural adaptation, is an open issue. Here we address this question in simulations and theoretical analysis. Simulations are based on the assumption that the brain implements optimal state estimation and feedback control and that cortical motor neurons encode the estimated state and control vector. Our simulations successfully reproduce apparent shifts in EPDs observed in BMI experiments with different BMI filters, including linear, Kalman and re-calibrated Kalman filters, even with no neural a...
Humans can adapt their motor behaviors to deal with ongoing changes. To achieve this, the nervous sy...
The closed-loop operation of brain-machine interfaces (BMI) provides a context to discover foundatio...
Abstract—In the design of brain-machine interface (BMI) algo-rithms, the activity of hundreds of chr...
The motor system routinely generates a multitude of fast, accurate, and elegant movements.In large p...
Recent experiments with brain-machine-interfaces (BMIs) indicate that the extent of neural modulatio...
abstract: The neural mechanisms that take place during learning and adaptation can be directly probe...
Intracortical brain-machine interfaces (BMIs) aim to provide motor functions via high-performance ne...
Brain-machine interfaces (BMIs) are an emerging field of research that seeks to interface the brain ...
International audience—Sensorimotor control requires an accurate estimate of the state of the body. ...
The brain has an incredible capacity to learn how to control various effectors, ranging from those e...
Neurophysiological studies in monkeys show that activity of neurons in primary cortex (M1), pre-moto...
Although animal studies provided significant insights in understanding the neural basis of learning ...
Neurons in macaque primary motor cortex and dorsal premotor cortex are tuned to movement direction. ...
Brain-machine interface (BMI) systems attempt to restore motor function lost due to injury or neurod...
Neurophysiological studies in monkeys show that activity of neurons in primary cortex (M1), pre-moto...
Humans can adapt their motor behaviors to deal with ongoing changes. To achieve this, the nervous sy...
The closed-loop operation of brain-machine interfaces (BMI) provides a context to discover foundatio...
Abstract—In the design of brain-machine interface (BMI) algo-rithms, the activity of hundreds of chr...
The motor system routinely generates a multitude of fast, accurate, and elegant movements.In large p...
Recent experiments with brain-machine-interfaces (BMIs) indicate that the extent of neural modulatio...
abstract: The neural mechanisms that take place during learning and adaptation can be directly probe...
Intracortical brain-machine interfaces (BMIs) aim to provide motor functions via high-performance ne...
Brain-machine interfaces (BMIs) are an emerging field of research that seeks to interface the brain ...
International audience—Sensorimotor control requires an accurate estimate of the state of the body. ...
The brain has an incredible capacity to learn how to control various effectors, ranging from those e...
Neurophysiological studies in monkeys show that activity of neurons in primary cortex (M1), pre-moto...
Although animal studies provided significant insights in understanding the neural basis of learning ...
Neurons in macaque primary motor cortex and dorsal premotor cortex are tuned to movement direction. ...
Brain-machine interface (BMI) systems attempt to restore motor function lost due to injury or neurod...
Neurophysiological studies in monkeys show that activity of neurons in primary cortex (M1), pre-moto...
Humans can adapt their motor behaviors to deal with ongoing changes. To achieve this, the nervous sy...
The closed-loop operation of brain-machine interfaces (BMI) provides a context to discover foundatio...
Abstract—In the design of brain-machine interface (BMI) algo-rithms, the activity of hundreds of chr...