A somatotopic bidirectional hand prosthesis with transcutaneous electrical nerve stimulation based sensory feedback
Соматотопический двунаправленный протез кисти с сенсорной обратной связью на основе чрескожной электрической стимуляции нервов
2017-09-01
SCID: 54.1/b776tcqx
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bidirectional prosthesis controlphantom hand sensationssensory feedbacksomatotopic hand prosthesistranscutaneous electrical nerve stimulation
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Abstract (AI)
According to amputees, sensory feedback is amongst the most important features lacking from commercial prostheses. Although restoration of touch by means of implantable neural interfaces has been achieved, these approaches require surgical interventions, and their long-term usability still needs to be fully investigated. Here, we developed a non-invasive alternative which maintains some of the advantages of invasive approaches, such as a somatotopic sensory restitution scheme. We used transcutaneous electrical nerve stimulation (TENS) to induce referred sensations to the phantom hand of amputees. These sensations were characterized in four amputees over two weeks. Although the induced sensation was often paresthesia, the location corresponded to parts of the innervation regions of the median and ulnar nerves, and electroencephalographic (EEG) recordings confirmed the presence of appropriate responses in relevant cortical areas. Using these sensations as feedback during bidirectional prosthesis control, the patients were able to perform several functional tasks that would not be possible otherwise, such as applying one of three levels of force on an external sensor. Performance during these tasks was high, suggesting that this approach could be a viable alternative to the more invasive solutions, offering a trade-off between the quality of the sensation, and the invasiveness of the intervention.
Key Findings
1
A non-invasive bidirectional hand prosthesis was developed using transcutaneous electrical nerve stimulation to provide somatotopic sensory feedback.
2
Across four amputees tested for two weeks, stimulation elicited phantom-hand sensations whose locations corresponded to median- and ulnar-nerve innervation regions, although sensations were often paresthetic.
3
EEG recordings confirmed appropriate responses in cortical areas relevant to the stimulated sensory representations.
4
Sensory feedback enabled amputees to perform functional prosthesis-control tasks, including applying one of three force levels to an external sensor, which was otherwise impossible.
5
The approach achieved high task performance and may provide a viable less-invasive alternative to implantable neural interfaces, trading sensation quality against invasiveness.
Research Object
a somatotopic bidirectional hand prosthesis with transcutaneous electrical nerve stimulation-based sensory feedback used by amputees
Research Subject
the non-invasive restoration of somatotopic phantom-hand sensations and their use as sensory feedback for bidirectional prosthesis control and force-level discrimination
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2017-09-01
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