Algorithmically and energetically efficient computational architectures that operate in real time are essential for clinically useful neural prosthetic devices. Such devices decode raw neural data to obtain direct control signals for external devices. They can also perform data compression and vastly reduce the bandwidth and consequently power expended in wireless transmission of raw data from implantable brain-machine interfaces. We describe a biomimetic algorithm and micropower analog circuit architecture for decoding neural cell ensemble signals. The decoding algorithm implements a continuous-time artificial neural network, using a bank of adaptive linear filters with kernels that emulate synaptic dynamics. The filters transform neural s...
This paper presents work on ultra-low-power circuits for brain-machine interfaces with applications ...
This paper presents work on ultra-low-power circuits for brain-machine interfaces with applications ...
Bidirectional brain-machine interfaces (BMIs) establish a two-way direct communication link between ...
Algorithmically and energetically efficient computational architectures that operate in real time ar...
in the statistical properties of neural signals recorded at the brain-machine interface (BMI) pose s...
Bidirectional brain-machine interfaces (BMIs) establish a two-way direct communication link between ...
Bidirectional brain-machine interfaces (BMIs) establish a two-way direct communication link between ...
Bidirectional brain-machine interfaces (BMIs) establish a two-way direct communication link between ...
Motor prostheses aim to restore function to disabled patients. Despite compelling proof of concept s...
Brain-computer interfaces (BCIs) are able to translate cerebral cortex neural activity into control ...
peer reviewedMotor prostheses aim to restore function to disabled patients. Despite compelling proof...
Objective. Cortically-controlled motor prostheses aim to restore functions lost to neurological dise...
Brain-computer interfaces (BCIs) are able to translate cerebral cortex neural activity into control ...
The ability to decode neural activity into meaningful control signals for prosthetic devices is crit...
This paper presents work on ultra-low-power circuits for brain-machine interfaces with applications ...
This paper presents work on ultra-low-power circuits for brain-machine interfaces with applications ...
This paper presents work on ultra-low-power circuits for brain-machine interfaces with applications ...
Bidirectional brain-machine interfaces (BMIs) establish a two-way direct communication link between ...
Algorithmically and energetically efficient computational architectures that operate in real time ar...
in the statistical properties of neural signals recorded at the brain-machine interface (BMI) pose s...
Bidirectional brain-machine interfaces (BMIs) establish a two-way direct communication link between ...
Bidirectional brain-machine interfaces (BMIs) establish a two-way direct communication link between ...
Bidirectional brain-machine interfaces (BMIs) establish a two-way direct communication link between ...
Motor prostheses aim to restore function to disabled patients. Despite compelling proof of concept s...
Brain-computer interfaces (BCIs) are able to translate cerebral cortex neural activity into control ...
peer reviewedMotor prostheses aim to restore function to disabled patients. Despite compelling proof...
Objective. Cortically-controlled motor prostheses aim to restore functions lost to neurological dise...
Brain-computer interfaces (BCIs) are able to translate cerebral cortex neural activity into control ...
The ability to decode neural activity into meaningful control signals for prosthetic devices is crit...
This paper presents work on ultra-low-power circuits for brain-machine interfaces with applications ...
This paper presents work on ultra-low-power circuits for brain-machine interfaces with applications ...
This paper presents work on ultra-low-power circuits for brain-machine interfaces with applications ...
Bidirectional brain-machine interfaces (BMIs) establish a two-way direct communication link between ...