This article reviews neural interface technology and its relationship with neuroplasticity. Two types of neural interface technology are reviewed, highlighting specific technologies that the authors directly work with: (1) neural interface technology for neural recording, such as the micro-ECoG BCI system for hand prosthesis control, and the comprehensive rehabilitation paradigm combining MEG-BCI, action observation, and motor imagery training; (2) neural interface technology for functional neural stimulation, such as somatosensory neural stimulation for restoring somatosensation, and non-invasive cortical stimulation using rTMS and tDCS for modulating cortical excitability and stroke rehabilitation. The close interaction between neural int...
Microscale neural technologies interface with the nervous system to record and stimulate brain tissu...
Restoration of motor functions of patients with loss of mobility constitutes a yet unsolved medical ...
Summary: The development of brain-machine interface tech-nology is a logical next step in the overal...
This article reviews neural interface technology and its relationship with neuroplasticity. Two type...
This article reviews neural interface technology and its relationship with neuroplasticity. Two type...
The restoration and rehabilitation of human movement are of great interest to the field of neural in...
Neural interface (NI) systems hold the potential to return lost functions to persons with paralysis....
Development of neural interface and brain-machine interface (BMI) systems enables the treatment of n...
International audienceThe idea of using brain computer interfaces (BCI) for rehabilitation emerged r...
AbstractThe idea of using brain computer interfaces (BCI) for rehabilitation emerged relatively rece...
Brain‐computer interfaces (BCIs) designed for motor rehabilitation use brain signals associated with...
Neurological pathologies damaging communication between central nervous system (CNS) and peripheral ...
Implantable neurostimulation devices provide a direct therapeutic link to the nervous system and can...
The 2020's decade will likely witness an unprecedented development and deployment of neurotechnologi...
A brain–computer interface (BCI), sometimes called a direct neural interface or a brain–machine inte...
Microscale neural technologies interface with the nervous system to record and stimulate brain tissu...
Restoration of motor functions of patients with loss of mobility constitutes a yet unsolved medical ...
Summary: The development of brain-machine interface tech-nology is a logical next step in the overal...
This article reviews neural interface technology and its relationship with neuroplasticity. Two type...
This article reviews neural interface technology and its relationship with neuroplasticity. Two type...
The restoration and rehabilitation of human movement are of great interest to the field of neural in...
Neural interface (NI) systems hold the potential to return lost functions to persons with paralysis....
Development of neural interface and brain-machine interface (BMI) systems enables the treatment of n...
International audienceThe idea of using brain computer interfaces (BCI) for rehabilitation emerged r...
AbstractThe idea of using brain computer interfaces (BCI) for rehabilitation emerged relatively rece...
Brain‐computer interfaces (BCIs) designed for motor rehabilitation use brain signals associated with...
Neurological pathologies damaging communication between central nervous system (CNS) and peripheral ...
Implantable neurostimulation devices provide a direct therapeutic link to the nervous system and can...
The 2020's decade will likely witness an unprecedented development and deployment of neurotechnologi...
A brain–computer interface (BCI), sometimes called a direct neural interface or a brain–machine inte...
Microscale neural technologies interface with the nervous system to record and stimulate brain tissu...
Restoration of motor functions of patients with loss of mobility constitutes a yet unsolved medical ...
Summary: The development of brain-machine interface tech-nology is a logical next step in the overal...