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1.
Proc Natl Acad Sci U S A ; 112(8): 2605-10, 2015 Feb 24.
Article in English | MEDLINE | ID: mdl-25675477

ABSTRACT

When multiple fingertips experience force sensations, how does the brain interpret the combined sensation? In particular, under what conditions are the sensations perceived as separate or, alternatively, as an integrated whole? In this work, we used a custom force-feedback device to display force signals to two fingertips (index finger and thumb) as they traveled along collinear paths. Each finger experienced a pattern of forces that, taken individually, produced illusory virtual bumps, and subjects reported whether they felt zero, one, or two bumps. We varied the spatial separation between these bump-like force-feedback regions, from being much greater than the finger span to nearly exactly the finger span. When the bump spacing was the same as the finger span, subjects tended to report only one bump. We found that the results are consistent with a quantitative model of perception in which the brain selects a structural interpretation of force signals that relies on minimizing coincidence stemming from accidental alignments between fingertips and inferred surface structures.


Subject(s)
Avoidance Learning , Touch Perception/physiology , Touch/physiology , Adolescent , Adult , Bayes Theorem , Biomechanical Phenomena , Female , Humans , Male , Young Adult
2.
Brain ; 134(Pt 3): 747-58, 2011 Mar.
Article in English | MEDLINE | ID: mdl-21252109

ABSTRACT

Existing prosthetic limbs do not provide amputees with cutaneous feedback. Tactile feedback is essential to intuitive control of a prosthetic limb and it is now clear that the sense of body self-identification is also linked to cutaneous touch. Here we have created an artificial sense of touch for a prosthetic limb by coupling a pressure sensor on the hand through a robotic stimulator to surgically redirected cutaneous sensory nerves (targeted reinnervation) that once served the lost limb. We hypothesize that providing physiologically relevant cutaneous touch feedback may help an amputee incorporate an artificial limb into his or her self image. To investigate this we used a robotic touch interface coupled with a prosthetic limb and tested it with two targeted reinnervation amputees in a series of experiments fashioned after the Rubber Hand Illusion. Results from both subjective (self-reported) and objective (physiological) measures of embodiment (questionnaires, psychophysical temporal order judgements and residual limb temperature measurements) indicate that returning physiologically appropriate cutaneous feedback from a prosthetic limb drives a perceptual shift towards embodiment of the device for these amputees. Measurements provide evidence that the illusion created is vivid. We suggest that this may help amputees to more effectively incorporate an artificial limb into their self image, providing the possibility that a prosthesis becomes not only a tool, but also an integrated body part.


Subject(s)
Amputation Stumps/innervation , Perception/physiology , Phantom Limb/psychology , Prosthesis Implantation/psychology , Robotics/methods , Touch/physiology , Amputation Stumps/physiopathology , Biofeedback, Psychology , Hand/innervation , Hand/physiopathology , Humans , Illusions/psychology , Judgment , Male , Sensory Thresholds/physiology , Surveys and Questionnaires , Temperature , Young Adult
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