Prosthesis with neuromorphic multilayered e-dermis perceives touch and pain

Протез с нейроморфной многослойной электронной дермой воспринимает прикосновение и боль
Luke E. Osborn, Andrei Dragomir, Joseph Betthauser, Christopher L. Hunt, Harrison Nguyen, Rahul R. Kaliki, Nitish V. Thakor
2018-06-20

mechanoreceptors and nociceptorsneuromorphic e-dermisprosthetic handtactile and pain perceptiontranscutaneous electrical nerve stimulation
The human body is a template for many state-of-the-art prosthetic devices and sensors. Perceptions of touch and pain are fundamental components of our daily lives that convey valuable information about our environment while also providing an element of protection from damage to our bodies. Advances in prosthesis designs and control mechanisms can aid an amputee's ability to regain lost function but often lack meaningful tactile feedback or perception. Through transcutaneous electrical nerve stimulation (TENS) with an amputee, we discovered and quantified stimulation parameters to elicit innocuous (non-painful) and noxious (painful) tactile perceptions in the phantom hand. Electroencephalography (EEG) activity in somatosensory regions confirms phantom hand activation during stimulation. We invented a multilayered electronic dermis (e-dermis) with properties based on the behavior of mechanoreceptors and nociceptors to provide neuromorphic tactile information to an amputee. Our biologically inspired e-dermis enables a prosthesis and its user to perceive a continuous spectrum from innocuous to noxious touch through a neuromorphic interface that produces receptor-like spiking neural activity. In a Pain Detection Task (PDT), we show the ability of the prosthesis and amputee to differentiate non-painful or painful tactile stimuli using sensory feedback and a pain reflex feedback control system. In this work, an amputee can use perceptions of touch and pain to discriminate object curvature, including sharpness. This work demonstrates possibilities for creating a more natural sensation spanning a range of tactile stimuli for prosthetic hands.
1
A biologically inspired multilayered e-dermis generated receptor-like spiking activity encoding a continuous spectrum from non-painful to painful touch.
2
Combined touch and pain perception enabled the amputee to discriminate object curvature, including sharpness, supporting more natural prosthetic sensation.
3
Electroencephalography confirmed activation of somatosensory regions corresponding to the phantom hand during stimulation.
4
In a Pain Detection Task, the prosthesis and amputee differentiated painful from non-painful stimuli using sensory feedback and reflexive control.
5
Transcutaneous electrical nerve stimulation elicited and quantified innocuous and noxious tactile perceptions in an amputee’s phantom hand.

A prosthetic hand with a neuromorphic multilayered electronic dermis interfaced with an amputee's phantom hand

Neuromorphic perception and discrimination of innocuous versus noxious touch, including object curvature and sharpness, through sensory and pain-reflex feedback

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2018-06-20
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Luke E. Osborn
Andrei Dragomir
Joseph Betthauser
Christopher L. Hunt
Harrison Nguyen
Rahul R. Kaliki
Nitish V. Thakor
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