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Cognitive Function in People With Pediatric Multiple Sclerosis Over 2 Years
Kimberly A O'Neill1, Leigh Charvet1, Michael Waltz2
1Department of Neurology, NYU Grossman School of Medicine, New York.
Insights
Most children with pediatric multiple sclerosis (MS) maintained stable cognitive function over two years, similar to healthy peers. However, a small group experienced declines in processing speed, highlighting the need for monitoring cognitive health in pediatric MS patients.
Area of Science:
- Neurology
- Pediatrics
- Cognitive Science
Background:
- Pediatric multiple sclerosis (MS) impacts children's neurological and cognitive development.
- Longitudinal studies on cognitive function in pediatric MS are limited.
- Cognitive impairment is a known concern in pediatric MS.
Purpose of the Study:
- To longitudinally assess cognitive functioning in children with MS over two years.
- To compare cognitive changes in pediatric MS patients with age-matched healthy controls (HCs).
- To investigate cognitive changes in pediatric MS compared to adults with early-onset MS.
Main Methods:
- Recruited three cohorts: pediatric MS, pediatric HCs, and adult MS patients across seven US sites.
- Administered Cogstate Brief Battery (CBB) and Brief International Cognition Assessment for MS (BICAMS) at baseline and follow-up.
- Analyzed changes in composite z-scores and individual cognitive measures, calculating reliable change indices (RCIs).
Main Results:
- No significant differences in CBB composite z-score changes between pediatric MS and pediatric HCs (p=0.113).
- Pediatric MS and adult MS groups also showed similar cognitive change (p=0.987).
- While 80% of pediatric MS patients were stable or improved, 19.7% declined cognitively compared to 5.1% of controls (p=0.022).
Conclusions:
- Most pediatric MS patients exhibit stable cognitive function over a two-year period.
- Cognitive changes in pediatric MS are largely comparable to those in healthy pediatric controls.
- A subset of pediatric MS patients may experience a decline in cognitive processing speed over time.
Background And Objectives:
Pediatric multiple sclerosis (MS) affects children and adolescents at an important time for neurologic and cognitive development. Although cognitive impairment has been described, few longitudinal studies of cognitive functioning in pediatric MS with matched controls are available. Here, we report the 2-year follow-up cognitive results of a cohort of participants with MS and healthy controls (HCs) recruited from multiple regions of the United States.
Methods:
Three cohorts-participants with pediatric MS, age-matched pediatric HC, and adults with early-onset MS-were recruited across 7 sites through the United States Network of Pediatric MS Centers. Two cognitive batteries, Cogstate Brief Battery (CBB) and Brief International Cognition Assessment for MS (BICAMS), were administered at baseline and follow-up. The primary outcome was the change in CBB composite z-score compared between groups. Change in BICAMS composite z-score was also compared, as were change in z-scores of individual measures. Reliable change indices (RCIs) were calculated to determine meaningful change over time.
Results:
A total of 63/72 (87.5%) of participants with pediatric MS, 81/99 (81.8%) of pediatric controls, and 48/66 (72.7%) of adults with MS returned for follow-up a mean 2.15 ± 0.27 years later. Participants with pediatric MS were median 17.4 years [IQR 16.0-18.3] at time of follow-up with median disease duration of 3.9 years [IQR 2.8-5.6]. 71% were female. There were no significant differences in change in CBB composite z-scores among pediatric MS and pediatric HC groups (0.10 vs 0.31, p = 0.113) or between the pediatric and adult MS groups (0.10 vs 0.00, p = 0.987). Although on RCI of the CBB, 80% of participants with pediatric MS were either stable or improved, more of the pediatric MS group declined relative to the control group 19.7% vs 5.1%, p = 0.022.
Discussion:
Most individuals with pediatric MS early in their disease showed stable cognitive function over a 2-year period and had longitudinal changes that were largely similar to pediatric controls. A subset of participants with pediatric MS declined in cognitive processing speed relative to pediatric controls.
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