Advantages of closed-loop calibration in intracortical brain-computer interfaces for people with tetraplegia.
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A Review of Control Strategies in Closed-Loop Neuroprosthetic SystemsToward more versatile and intuitive cortical brain-machine interfacesDecoding methods for neural prostheses: where have we reached?Clinical translation of a high-performance neural prosthesisNeural Point-and-Click Communication by a Person With Incomplete Locked-In SyndromeClosed-loop brain-machine-body interfaces for noninvasive rehabilitation of movement disordersIntention estimation in brain-machine interfaces.Adaptive offset correction for intracortical brain-computer interfaces.Reliability of directional information in unsorted spikes and local field potentials recorded in human motor cortex.Comparing temporal aspects of visual, tactile, and microstimulation feedback for motor controlNon-causal spike filtering improves decoding of movement intention for intracortical BCIs.The emergence of single neurons in clinical neurology.Reprint of "Non-causal spike filtering improves decoding of movement intention for intracortical BCIs".Virtual typing by people with tetraplegia using a self-calibrating intracortical brain-computer interface.Making brain-machine interfaces robust to future neural variability.Retrospectively supervised click decoder calibration for self-calibrating point-and-click brain-computer interfaces.Review: Human Intracortical recording and neural decoding for brain-computer interfaces.Simulating the human brain: Scientists have started various major projects to simulate and understand the brain, but many neuroscientists remain sceptical about their scope and aims.Brain-computer interface control along instructed paths.Brain-state classification and a dual-state decoder dramatically improve the control of cursor movement through a brain-machine interface.Rapid calibration of an intracortical brain-computer interface for people with tetraplegia.Feedback control policies employed by people using intracortical brain-computer interfaces.Data-Driven Transducer Design and Identification for Internally-Paced Motor Brain Computer Interfaces: A Review
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Advantages of closed-loop calibration in intracortical brain-computer interfaces for people with tetraplegia.
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article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 10 July 2013
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Advantages of closed-loop cali ...... s for people with tetraplegia.
@en
Advantages of closed-loop cali ...... s for people with tetraplegia.
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type
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Advantages of closed-loop cali ...... s for people with tetraplegia.
@en
Advantages of closed-loop cali ...... s for people with tetraplegia.
@nl
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Advantages of closed-loop cali ...... s for people with tetraplegia.
@en
Advantages of closed-loop cali ...... s for people with tetraplegia.
@nl
P2093
P2860
P356
P1476
Advantages of closed-loop cali ...... s for people with tetraplegia.
@en
P2093
Beata Jarosiewicz
Daniel Bacher
Emad Eskandar
Gerhard Friehs
John P Donoghue
Leigh R Hochberg
Nicolas Y Masse
Sydney S Cash
P2860
P304
P356
10.1088/1741-2560/10/4/046012
P577
2013-07-10T00:00:00Z