Existing intracortical brain computer interfaces (iBCIs) transform neural activity into control signals capable of restoring movement to persons with paralysis. However, the accuracy of the "decoder" at the heart of the iBCI typically degrades over time due to turnover of recorded neurons. To compensate, decoders can be recalibrated, but this requires the user to spend extra time and effort to provide the necessary data, then learn the new dynamics. As the recorded neurons change, one can think of the underlying movement intent signal being expressed in changing coordinates. If a mapping can be computed between the different coordinate systems, it may be possible to stabilize the original decoder's mapping from brain to behavior without rec...
(This is the dataset used in Dynamic Structure Of Motor Cortical Neuron Co-Activity Carries Behavior...
The frontal cortex controls behavioral adaptation in environments governed by complex rules. Many st...
Brain-machine interface (BMI) systems give users direct neural control of robotic, communication, or...
Existing intracortical brain computer interfaces (iBCIs) transform neural activity into control sign...
General Description. This dataset consists of data from four BMI experiments performed on two adult ...
The brain has an incredible capacity to learn how to control various effectors, ranging from those e...
Learning a new skill requires one to produce new patterns of activity among networks of neurons. Thi...
To develop an optimal cognitive neural prosthetic to assist patients with motor dysfunction we must ...
Modern neural prostheses are promising medical devices that can be controlled exclusively by the use...
Balancing subject learning and decoder adaptation is central to increasing brain machine interface (...
Thesis (Ph.D.)--University of Washington, 2017-06The spiking activity of neurons encodes information...
Neural prosthetic technology has moved from the laboratory to clinical settings with human trials. T...
Brain-machine interfaces (BMIs) for upper limb movement restoration rely on motor cortical circuits ...
<p>Recent work using population decoding methods has shown that visual information in the inferior t...
Animals Two adult male monkeys (macaca mulatta) participated in the study. Single-unit recordings w...
(This is the dataset used in Dynamic Structure Of Motor Cortical Neuron Co-Activity Carries Behavior...
The frontal cortex controls behavioral adaptation in environments governed by complex rules. Many st...
Brain-machine interface (BMI) systems give users direct neural control of robotic, communication, or...
Existing intracortical brain computer interfaces (iBCIs) transform neural activity into control sign...
General Description. This dataset consists of data from four BMI experiments performed on two adult ...
The brain has an incredible capacity to learn how to control various effectors, ranging from those e...
Learning a new skill requires one to produce new patterns of activity among networks of neurons. Thi...
To develop an optimal cognitive neural prosthetic to assist patients with motor dysfunction we must ...
Modern neural prostheses are promising medical devices that can be controlled exclusively by the use...
Balancing subject learning and decoder adaptation is central to increasing brain machine interface (...
Thesis (Ph.D.)--University of Washington, 2017-06The spiking activity of neurons encodes information...
Neural prosthetic technology has moved from the laboratory to clinical settings with human trials. T...
Brain-machine interfaces (BMIs) for upper limb movement restoration rely on motor cortical circuits ...
<p>Recent work using population decoding methods has shown that visual information in the inferior t...
Animals Two adult male monkeys (macaca mulatta) participated in the study. Single-unit recordings w...
(This is the dataset used in Dynamic Structure Of Motor Cortical Neuron Co-Activity Carries Behavior...
The frontal cortex controls behavioral adaptation in environments governed by complex rules. Many st...
Brain-machine interface (BMI) systems give users direct neural control of robotic, communication, or...