Neuronal ensemble control of prosthetic devices by a human with tetraplegia
Explore this paper's citation graph
Summary
Initial results for a tetraplegic human using a pilot NMP suggest that NMPs based upon intracortical neuronal ensemble spiking activity could provide a valuable new neurotechnology to restore independence for humans with paralysis.
- Type
- article
- Published
- 2006-07-01
- Cited by
- 3,431
- References
- 53
- OpenAlex
- https://openalex.org/W2114004602
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4347367
Keywords
Neuroprosthetics, Neuroscience, Tetraplegia, Motor cortex, Spinal cord
References
- EEG-based neuroprosthesis control: a step towards clinical practice.
- Motor control : concepts and issues
- Sensorimotor Cortical Activity in Patients with Complete Spinal Cord Injury: A Functional Magnetic Resonance Imaging Study
- Handbook of physiology
- Motor-cortical activity in tetraplegics
- Neural discharge and local field potential oscillations in primate motor cortex during voluntary movements.
- Operantly conditioned patterns on precentral unit activity and correlated responses in adjacent cells and contralateral muscles.
- On the relations between the direction of two-dimensional arm movements and cell discharge in primate motor cortex
- Using human extra-cortical local field potentials to control a switch
- Reshaping the cortical motor map by unmasking latent intracortical connections
- Adaptation in the motor cortex following cervical spinal cord injury
- Cortical correlates of learning in monkeys adapting to a new dynamical environment.
- International Standards for Neurological and Functional Classification of Spinal Cord Injury
- The Utah intracortical Electrode Array: a recording structure for potential brain-computer interfaces.
- Brain-machine interface: Instant neural control of a movement signal
- A demographic profile of new traumatic spinal cord injuries: change and stability over 30 years.
- Brain-computer interface technology: a review of the Second International Meeting.
- A 100-channel system for real time detection and storage of extracellular spike waveforms.
- Learning to Control a Brain–Machine Interface for Reaching and Grasping by Primates
- Restoration of neural output from a paralyzed patient by a direct brain connection
Cited by
- Reading your own mind: dynamic visualization of real-time neural signals
- Review on tactile sensory feedback of prosthetic hands for the upper-limb amputees by sensory afferent stimulation
- Nanotexturisation of gold surfaces and its application to neural implants
- Can histology solve the riddle of the nonfunctioning electrode? Factors influencing the biocompatibility of brain machine interfaces.
- How to Pass Information and Deliver Energy to a Network of Implantable Devices within the Human Body
- Neuroprotection at the Nanolevel—Part I
- Clasificación de características de electroencefalogramas en sistemas Brain Computer Interface basados en ritmos sensoriomotores
- Microtube-based electrode arrays for low invasive extracellular recording with a high signal-to-noise ratio
- Hemicraniectomy: A New Model for Human Electrophysiology with High Spatio-Temporal Resolution
- Neural Correlates of Skill Acquisition with a Cortical Brain–Machine Interface
- Neural prosthesis: concept and progress.
- In the spotlight: Neuroengineering
- Potential for unreliable interpretation of EEG recorded with microelectrodes
- Brain-Machine Interface Enables Bimanual Arm Movements in Monkeys
- Creating new functional circuits for action via brain-machine interfaces
- Adaptive real-time decoding of brain signals for long-term control of a neuro-prosthetic device
- A cognitive neuroprosthetic that uses cortical stimulation for somatosensory feedback
- Brain-machine interfaces in neurorehabilitation of stroke.
- Long-term decoding of arm movement using Spatial Distribution of Neural Patterns
- Improving data quality in neuronal population recordings
Related papers
- Needs of individuals with tetraplegia and expectations regarding implanted neuroprosthesis.
- Preliminary performance of a surgically implanted neuroprosthesis for standing and transfers--where do we stand?
- A neuroprosthesis for restoration of shoulder function in C5-C6 tetraplegia
- Patient selection for an upper extremity neuroprosthesis in tetraplegic individuals
- Investigating Upper Limb Movement Classification on Users with Tetraplegia as a Possible Neuroprosthesis Interface
- Model-Based FES Muscle Selection for Restoring Arm Movement in High SCI
- Musculoskeletal modeling to assess the feasibility of neuroprosthesis for high cervical spinal cord injury