Related Experiment Video
Updated: Jul 3, 2026

Determining Immune System Suppression versus CNS Protection for Pharmacological Interventions in Autoimmune Demyelination
Published on: September 12, 2016
Prognostic factors after a first attack of inflammatory CNS demyelination in children
R F Neuteboom1, M Boon, C E Catsman Berrevoets
1Department of Neurology, Erasmus MC, Rotterdam, The Netherlands.
Insights
Predicting pediatric multiple sclerosis (MS) conversion after a first demyelinating attack is crucial. Specific MRI criteria and cerebrospinal fluid (CSF) markers show promise, but sensitivity varies by age.
Area of Science:
- Pediatric Neurology
- Neuroimmunology
- Demyelinating Diseases
Background:
- First demyelinating events in children can herald multiple sclerosis (MS).
- Identifying predictors of conversion to MS is essential for early diagnosis and treatment.
Purpose of the Study:
- To identify clinical, radiologic, and cerebrospinal fluid (CSF) factors predicting MS conversion after a first inflammatory demyelinating attack in children.
Main Methods:
- Nationwide retrospective multicenter study including 117 children (<16 years).
- Classification into monofocal clinically isolated syndrome (CIS) and polyfocal CIS (PCIS).
- Analysis of MRI findings, CSF analysis (IgG index, oligoclonal bands), and clinical outcomes.
Main Results:
- Higher MS conversion rate in CIS (43%) vs. PCIS (21%).
- Basal ganglia/thalamic lesions and large MRI lesions (>2 cm) observed in PCIS.
- Elevated IgG index and CSF oligoclonal bands associated with MS development.
- Barkhof and KIDMUS MRI criteria demonstrated high specificity and positive predictive value for MS conversion.
Conclusions:
- Barkhof and KIDMUS MRI criteria are specific predictors of MS conversion in children.
- MRI criteria sensitivity is limited, particularly in children under 10.
- Basal ganglia lesions may occur in children who develop MS.
- Some children with polyfocal onset without encephalopathy remain monophasic.
Objective:
To identify clinical, radiologic, or CSF factors that predict conversion to multiple sclerosis (MS) after a first attack of inflammatory demyelination in children.
Methods:
In this nationwide retrospective multicenter study in the Netherlands, 117 children below age 16 were included. Fifty-four children presented with a monofocal clinically isolated syndrome (CIS) and 63 children with a polyfocal CIS (PCIS).
Results:
A second MS-defining attack occurred in 43% of the CIS cases, compared to 21% of the patients with PCIS onset (p < 0.006). Basal ganglia and thalamic lesions and lesions larger than 2 cm on MRI (considered typical of ADEM) were observed during PCIS, irrespective of the presence of encephalopathy. No significant difference in developing MS was found in children with PCIS with or without encephalopathy. Elevated IgG index and presence of oligoclonal CSF bands were more often observed in children who developed MS. Both Barkhof and KIDMUS MRI criteria shared a high specificity and had a high positive predictive value for conversion to MS. In children under the age of 10, the Barkhof criteria had a higher sensitivity than the KIDMUS criteria, but still lower than in older children.
Conclusions:
Barkhof and KIDMUS MRI criteria share a high specificity and positive prognostic value for conversion to multiple sclerosis (MS). Sensitivity of these criteria is poor, especially in children below 10 years of age. Basal ganglia lesions can occur in patients who later develop MS. A substantial number of patients presenting with polyfocal onset and no encephalopathy remained monophasic.
More Related Videos
09:46Rat Model of Widespread Cerebral Cortical Demyelination Induced by an Intracerebral Injection of Pro-Inflammatory Cytokines
Published on: September 21, 2021
12:23Dynamic Visual Tests to Identify and Quantify Visual Damage and Repair Following Demyelination in Optic Neuritis Patients
Published on: April 14, 2014
Related Concept Videos
Multiple Sclerosis l: Introduction
Encephalitis ll: Pathophysiology
Encephalitis l: Introduction
Secondary Spinal Cord Injury llI: Pathophysiology