Multisensory stimulation decreases phantom limb distortions and is optimally integrated


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Date

2022-04-15

Publication Type

Journal Article

ETH Bibliography

yes

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Data

Abstract

The multisensory integration of signals from different senses is crucial to develop an unambiguous percept of the environment and our body. Losing a limb causes drastic changes in the body, sometimes causing pain and distorted phantom limb perception. Despite the debate over why these phenomena arise, some researchers suggested that they might be linked to an impairment of multisensory signals inflow and integration. Therefore, reestablishing optimally integrated sensory feedback could be crucial. The related benefits on sensory performance and body self-representation are still to be demonstrated, particularly in lower-limb amputees. We present a multisensory framework combining Virtual reality and electro-cutaneous stimulation that allows the optimal integration of visuo-tactile stimuli in lower-limb amputees even if nonspatially matching. We also showed that this multisensory stimulation allowed faster sensory processing, higher embodiment, and reductions in phantom limb distortions. Our findings support the development of multisensory rehabilitation approaches, restoring a correct body representation.

Publication status

published

Editor

Book title

Journal / series

Volume

25 (4)

Pages / Article No.

104129

Publisher

Cell Press

Event

Edition / version

Methods

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Geographic location

Date collected

Date created

Subject

Organisational unit

09632 - Raspopovic, Stanisa (ehemalig) / Raspopovic, Stanisa (former) check_circle

Notes

Funding

759998 - Restoring natural feelings from missing or damaged peripheral nervous system by model-driven neuroprosthesis (EC)
197271 - Multimodal targeted neurotechnology for gait improvement and neuropathic pain suppression in diabetic neuropathy (MOVEIT) (SNF)

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