Towards Visual-Tactile Integration of Shoulder and Hand Using Immersive Virtual Reality
Date
2023
Authors
Cardoso, L.R.L.
Melendez-Calderon, A.
Bochkezanian, V.
Forner-Cordero, A.
Bo, A.P.L.
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Conference paper
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Conference proceedings : ... Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual Conference, 2023, vol.2023, pp.1-4
Statement of Responsibility
Lucas R. L. Cardoso, Alejandro Melendez-Calderon, Vanesa Bochkezanian, Arturo Forner-Cordero, Antonio P. L. Bo
Conference Name
45th Annual International Conference of the IEEE Engineering in Medicine & Biology Society (EMBC) (24 Jul 2023 - 27 Jul 2023 : Sydney, Australia)
Abstract
Shoulder-controlled hand neuroprostheses are wearable devices designed to assist hand function in people with cervical spinal cord injury (SCI). They use preserved shoulder movements to control artificial actuators. Due to the concurrent afferent (i.e., shoulder proprioception) and visual (i.e., hand response) feedback, these wearables may affect the user's body somatosensory representation. To investigate this effect, we propose an experimental paradigm that uses immersive virtual reality (VR) environment to emulate the use of a shoulder-controlled hand neuroprostheses and an adapted version of a visual-tactile integration task (i.e., Crossmodal Congruency Task) as an assessment tool. Data from seven non-disabled participants validates the experimental setup, with preliminary statistical analysis revealing no significant difference across the means of VR and visual-tactile integration tasks. The results serve as a proof-of-concept for the proposed paradigm, paving the way for further research with improvements in the experimental design and a larger sample size.
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©2023 IEEE