Audible Feedback Improves Internal Model Strength and Performance of Myoelectric Prosthesis Control.

scientific article

Audible Feedback Improves Internal Model Strength and Performance of Myoelectric Prosthesis Control. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1038/S41598-018-26810-W
P932PMC publication ID5986794
P698PubMed publication ID29867147

P50authorAhmed ShehataQ60961110
Erik SchemeQ61142206
P2093author name stringJonathon W Sensinger
P2860cites workEvaluating Internal Model Strength and Performance of Myoelectric Prosthesis Control StrategiesQ88645265
Short- and Long-Term Learning of Feedforward Control of a Myoelectric Prosthesis with Sensory Feedback by Amputees.Q50435355
GLIMPSE: Google Glass interface for sensory feedback in myoelectric hand prosthesesQ50448210
Spatial correlation of high density EMG signals provides features robust to electrode number and shift in pattern recognition for myocontrol.Q51013548
The optimal controller delay for myoelectric prostheses.Q51024800
Electrotactile EMG feedback improves the control of prosthesis grasping force.Q51190067
Validation of a selective ensemble-based classification scheme for myoelectric control using a three-dimensional Fitts' Law test.Q51295372
Small-sample characterization of stochastic approximation staircases in forced-choice adaptive threshold estimation.Q51912934
Human cerebellar activity reflecting an acquired internal model of a new tool.Q52171465
Points of significance: error bars.Q53128769
Performance of above elbow body-powered prostheses in visually guided unconstrained motion tasksQ72333278
Classification of the myoelectric signal using time-frequency based representationsQ73332418
An internal model for sensorimotor integrationQ28290085
Humans integrate visual and haptic information in a statistically optimal fashionQ29614805
Human-Machine Interface for the Control of Multi-Function Systems Based on Electrocutaneous Menu: Application to Multi-Grasp Prosthetic HandsQ30408842
Psycho-physiological assessment of a prosthetic hand sensory feedback system based on an auditory display: a preliminary study.Q30462182
Augmented visual, auditory, haptic, and multimodal feedback in motor learning: A reviewQ30477351
Issues in auditory displayQ30525431
EMG Biofeedback for online predictive control of grasping force in a myoelectric prosthesis.Q30656096
Audio-visual feedback improves the BCI performance in the navigational control of a humanoid robotQ33764946
User adaptation in Myoelectric Man-Machine Interfaces.Q33860815
Restoring natural sensory feedback in real-time bidirectional hand prostheses.Q34402616
Sampling, noise-reduction and amplitude estimation issues in surface electromyographyQ34502768
Vibrotactile sensory substitution elicits feeling of ownership of an alien handQ34505862
Is the cerebellum a smith predictor?Q35064626
Adaptation to random and systematic errors: Comparison of amputee and non-amputee control interfaces with varying levels of process noiseQ36310548
Myoelectric signal processing for control of powered limb prosthesesQ36625416
Upper limb prosthesis use and abandonment: a survey of the last 25 yearsQ36989615
Electrotactile and vibrotactile displays for sensory substitution systemsQ37712281
Sensory feedback for upper limb prosthesesQ37901758
Sensory feedback in upper limb prostheticsQ38070701
The effect of myoelectric prosthesis control strategies and feedback level on adaptation rate for a target acquisition task.Q38621977
Non-Invasive, Temporally Discrete Feedback of Object Contact and Release Improves Grasp Control of Closed-Loop Myoelectric Transradial Prostheses.Q38941061
Electromyogram pattern recognition for control of powered upper-limb prostheses: state of the art and challenges for clinical use.Q39705195
Closed-loop control in prosthetic systems: historical perspectiveQ40317362
Real-time and simultaneous control of artificial limbs based on pattern recognition algorithmsQ42653307
Motion Normalized Proportional Control for Improved Pattern Recognition-Based Myoelectric ControlQ42691086
Artificial redirection of sensation from prosthetic fingers to the phantom hand map on transradial amputees: vibrotactile versus mechanotactile sensory feedbackQ44570169
Support vector regression for improved real-time, simultaneous myoelectric controlQ45211639
Internal models of upper limb prosthesis users when grasping and lifting a fragile object with their prosthetic limbQ48593931
Investigation of rotational skin stretch for proprioceptive feedback with application to myoelectric systemsQ48826972
P275copyright licenseCreative Commons Attribution 4.0 InternationalQ20007257
P6216copyright statuscopyrightedQ50423863
P433issue1
P407language of work or nameEnglishQ1860
P304page(s)8541
P577publication date2018-06-04
P1433published inScientific ReportsQ2261792
P1476titleAudible Feedback Improves Internal Model Strength and Performance of Myoelectric Prosthesis Control
P478volume8

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cites work (P2860)
Q97519741A Review of Sensory Feedback in Upper-Limb Prostheses From the Perspective of Human Motor Control
Q91642465Evaluation of Optimal Vibrotactile Feedback for Force-Controlled Upper Limb Myoelectric Prostheses
Q90668167Improving internal model strength and performance of prosthetic hands using augmented feedback
Q60045823Joint Speed Discrimination and Augmentation For Prosthesis Feedback
Q94569472Tactile Feedback in Closed-Loop Control of Myoelectric Hand Grasping: Conveying Information of Multiple Sensors Simultaneously via a Single Feedback Channel
Q93061218When Less Is More - Discrete Tactile Feedback Dominates Continuous Audio Biofeedback in the Integrated Percept While Controlling a Myoelectric Prosthetic Hand

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