A cognitive neuroprosthetic that uses cortical stimulation for somatosensory feedback
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Summary
A closed-loop BMI that utilizes intracortical microstimulation to provide ‘tactile’ sensation to a non-human primate is tested and it is found that this form of feedback can be used in BMI tasks.
- Type
- article
- Published
- 2014-09-22
- Cited by
- 102
- References
- 66
- Access
- Open access
- OpenAlex
- https://openalex.org/W25242377
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:162579
Keywords
Drainage, Environmental science, Spillage, Water table, Garbage
References
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- Neural control of computer cursor velocity by decoding motor cortical spiking activity in humans with tetraplegia
- Virtual Active Touch Using Randomly Patterned Intracortical Microstimulation
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- Artifact-free recordings in human bidirectional brain–computer interfaces
- Brain control and information transfer
- Toward more versatile and intuitive cortical brain machine interfaces
- The difference between electrical microstimulation and direct electrical stimulation – towards new opportunities for innovative functional brain mapping?
- Single-trial decoding of intended eye movement goals from lateral prefrontal cortex neural ensembles.
- Restoring Behavior via Inverse Neurocontroller in a Lesioned Cortical Spiking Model Driving a Virtual Arm
- New Perspectives on Neuroengineering and Neurotechnologies: NSF-DFG Workshop Report
- Artificial feedback for invasive brain–computer interfaces
- Invasive vs. Non-Invasive Neuronal Signals for Brain-Machine Interfaces: Will One Prevail?
- Task-Specific Somatosensory Feedback via Cortical Stimulation in Humans
- The Evolution of Neuroprosthetic Interfaces
- Somatosensory Encoding with Cuneate Nucleus Microstimulation: Detection of Artificial Stimuli
- Psychophysical correspondence between vibrotactile intensity and intracortical microstimulation for tactile neuroprostheses in rats
- Interfacing to the brain's motor decisions.
- Ownership of an artificial limb induced by electrical brain stimulation
- Brain-Machine Interfaces: From Basic Science to Neuroprostheses and Neurorehabilitation.
- A review of invasive and non-invasive sensory feedback in upper limb prostheses
- Strategies for Autonomous Sensor-Brain Interfaces for Closed-Loop Sensory Reanimation of Paralyzed Limbs.
- Engineered Axonal Tracts as “Living Electrodes” for Synaptic-Based Modulation of Neural Circuitry
- Central nervous system microstimulation: Towards selective micro-neuromodulation
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