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Increased Visual Response Delay Impact on Sensorimotor Control in Persons With Multiple Sclerosis

Julie C Wagner, Frankie M Ingram, Vincenzo Daniele Boccia

    IEEE Transactions on Neural Systems and Rehabilitation Engineering : a Publication of the IEEE Engineering in Medicine and Biology Society
    |June 4, 2025
    PubMed

    Abstract:

    Multiple Sclerosis negatively affects hand function in 60% of cases. Upper extremity dysfunction in persons with Multiple Sclerosis (PwMS) has previously been linked to slower, more variable movement, increased visual response delays (Tv), and neuroimaging evidence of altered brain activity; yet no one knows how these aspects relate to each other. This work combines clinical, kinematic, sensorimotor control, and neural imaging techniques to gain a more complete understanding of how upper extremity dysfunction arises in PwMS. Twenty PwMS and 20 Controls completed a reach and hold task with simultaneous electroencephalography recorded to determine if increased Tv in PwMS was associated with greater levels of kinematic and neurologic impairment. Compared to Controls, PwMS moved slower and with greater variability, had increased sensory response delays, and decreased neural responses in occipital and parietal regions. Increased Tv was correlated with the Nine Hole Peg Test (NHPT) performance for PwMS who had more impairment (assessed via NHPT) and showed varying effects on the neurologic response to the task. Specifically, Tv was correlated with temporal delays in parietal channels for PwMS with less impairment while Tv of more impaired PwMS was inversely correlated with peak amplitude across parietal, somatosensory, and frontal channels. It could be that PwMS with less impairment are able to compensate for increased processing delays by moving slower, while those with greater impairment are more limited in how compensation may occur.

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    Multiple Sclerosis l: Introduction01:19

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    Multiple sclerosis is a chronic autoimmune disease of the central nervous system (CNS) that affects the brain, spinal cord, and optic nerves. It is an inflammatory demyelinating disorder and a leading cause of neurological disability in young adults.EpidemiologyMS commonly begins between 20 and 40 years of age and is twice as common in women. Its exact cause remains unclear, but genetic susceptibility contributes, with higher risk in first-degree relatives and identical twins. A greater...
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