Psychophysical correspondence between vibrotactile intensity and intracortical microstimulation for tactile neuroprostheses in rats
Explore this paper's citation graph
Summary
The psychometric correspondence model presented in this study was constructed based on surface functions which define psychophysical detection probability as a function of stimulus intensity and frequency and may be used for the real-time modulation of the frequency and intensity of ICMS pulses in somatosensory neuroprostheses.
- Type
- article
- Published
- 2017-02-01
- Cited by
- 13
- References
- 86
- Access
- Open access
- OpenAlex
- https://openalex.org/W2563285822
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:27803286
Keywords
Microstimulation, Phantom limb, Intensity (physics), Tactile stimuli, Computer science
References
- Asymmetric Versus Symmetric Pulses for Cortical Microstimulation
- A cognitive neuroprosthetic that uses cortical stimulation for somatosensory feedback
- Long-term stability of sensitivity to intracortical microstimulation of somatosensory cortex
- Direct inhibition evoked by whisker stimulation in somatic sensory (SI) barrel field cortex of the awake rat.
- Tactile receptor discharge and mechanical properties of glabrous skin.
- Tactile representation in somatosensory thalamus (VPL) and cortex (S1) of awake primate and the plasticity induced by VPL neuroprosthetic stimulation.
- Somatosensory discrimination based on cortical microstimulation
- The effects of chronic intracortical microstimulation on neural tissue and fine motor behavior
- Effects of passive and active movement on vibrotactile detection thresholds of the Pacinian channel and forward masking
- Behavioral assessment of sensitivity to intracortical microstimulation of primate somatosensory cortex
- Cutaneous sensory receptors in the rat foot.
- Reorganization in the auditory cortex of the rat induced by intracortical microstimulation: a multiple single-unit study
- Acute human brain responses to intracortical microelectrode arrays: challenges and future prospects
- Four channels mediate the mechanical aspects of touch.
- The vibrations of texture
- The Depth, Waveform and Pulse Rate for Electrical Microstimulation of the Auditory Cortex
- A comparison of neuronal and behavioral detection and discrimination performances in rat whisker system.
- Double nerve intraneural interface implant on a human amputee for robotic hand control.
- Vibro- and Electrotactile User Feedback on Hand Opening for Myoelectric Forearm Prostheses
- The effect of chronic intracortical microstimulation on the electrode–tissue interface
Cited by
- Real-Time Performance of a Tactile Neuroprosthesis on Awake Behaving Rats
- Intracortical microstimulation parameters modulate flight behavior in pigeon.
- Functional Frequency Discrimination From Cortical Somatosensory Stimulation in Humans
- Somatosensation Evoked by Cortical Surface Stimulation of the Human Primary Somatosensory Cortex
- Short reaction times in response to multi-electrode intracortical microstimulation may provide a basis for rapid movement-related feedback
- Effects of basal forebrain stimulation on the vibrotactile responses of neurons from the hindpaw representation in the rat SI cortex
- Characterizing the short-latency evoked response to intracortical microstimulation across a multi-electrode array
- Psychophysical Evaluation of Proprioceptive Feedback Through a Probe Sliding on the Forearm Skin of Healthy Humans
- Three Sliding Probes Placed on Forelimb Skin for Proprioceptive Feedback Differentially yet Complementarily Contribute to Hand Gesture Detection and Object-Size Discrimination
- Design of intracortical microstimulation patterns to control the location, intensity, and quality of evoked sensations in human and animal models
- Intracortical microstimulation for tactile feedback in awake behaving rats
- Touch restoration through electrical cortical stimulation in humans
- Introduction to somatosensory neuroprostheses
Related papers
- The functional consequences of chronic, physiologically effective intracortical microstimulation
- Visceral pain evoked by thalamic microstimulation in humans.
- Methods for microstimulation and recording of single neurons and evoked potentials in the human central nervous system.
- Generation of Locomotor-Like Activity in the Isolated Rat Spinal Cord Using Intraspinal Electrical Microstimulation Driven by a Digital Neuromorphic CPG
- Phantom sensations generated by thalamic microstimulation
- Causal Role of Neural Signals Transmitted From the Frontal Eye Field to the Superior Colliculus in Saccade Generation
- Development of an implantable transverse intrafascicular multichannel electrode (TIME) system for relieving phantom limb pain
- The role of human somatosensory cortex in tactile stimulus processing: fMRI responses to microstimulation of individual tactile afferents
- Mirror-touch synaesthesia in the phantom limbs of amputees.