Acute Disseminated Encephalomyelitis (ADEM)
Acute disseminated encephalomyelitis (ADEM) is a monophasic (in most cases), immune-mediated, demyelinating disorder of the CNS that classically follows a viral infection or vaccination — characterized by multifocal white and grey matter demyelination with encephalopathy, predominantly affecting children.
Table of Contents
ToggleAt a Glance
|
Domain |
Practical Point |
|
Definition |
CNS demyelinating syndrome, almost always monophasic, typically postinfectious or post-vaccination. |
|
Age |
Mainly children; peak onset 3–7 years. M:F ≈ 1.8:1. |
|
Trigger |
Viral illness in 50–75% of pediatric cases. Post-vaccination <5% of cases. |
|
Hallmark feature |
Encephalopathy (obligatory) + polyfocal deficits. |
|
Imaging |
Large, poorly circumscribed, bilateral T2/FLAIR lesions in white AND grey matter; most enhance. |
|
CSF |
Lymphocytic pleocytosis, mildly ↑ protein; OCBs usually absent/transient. |
|
Treatment |
High-dose IV methylprednisolone → oral taper. Refractory: IVIG or plasma exchange. |
|
Prognosis |
Mostly favorable; mortality ~7.8%, residual deficits in ~47.5%. |
Epidemiology
|
Parameter |
Detail |
|
Annual incidence |
0.07–0.60 per 100,000 individuals/year |
|
Regional variation |
Asia: 0.47–0.64/100,000 children (higher) vs Europe/US: 0.07–0.30/100,000 (lower) |
|
Seasonality |
More common in winter/spring, often after upper respiratory tract infection |
|
Ethnic predisposition |
None clearly identified |
Genetics & Susceptibility
|
Factor |
Detail |
|
HLA associations |
HLA-DRB1*1501, DRB1*1503, DQB1*0602, DRB1*01, DRB1*017(03) — linked to ADEM susceptibility |
|
Post-transplant ADEM |
Rare; reported after BMT, PBSCT, liver/renal transplant — thought to involve donor-antigen exposure or opportunistic infection |
|
Paraneoplastic ADEM |
Reported with multiple myeloma, small-cell lung carcinoma, hepatic epithelioid hemangioendothelioma |
|
Other reported triggers |
Folate deficiency, chronic cannabis abuse, herbal preparations (Echinacea, Aconitum, Adonis vernalis) |
Etiology
|
Category |
Agents / Notes |
|
Post-infectious — viral |
Mumps, rubella, influenza, parainfluenza, HIV, dengue, Zika |
|
Post-infectious — special mention |
Chicken pox — high chance of cerebellar involvement |
|
Post-infectious — bacterial |
Mycoplasma pneumoniae (most common bacterial trigger), Borrelia burgdorferi, Leptospira |
|
Post-vaccinal — mechanism |
Aberrant immune response to vaccine components |
|
Post-vaccinal — implicated vaccines |
Old-generation rabies vaccine (Pasteur, spinal-cord derived), measles vaccine |
|
Post-vaccinal — timing |
Onset typically 8–21 days post-immunization; usually after the primary dose |
|
Vaccine risk data |
No significant increase in ADEM risk with most current vaccines; small excess risk noted with Tdap |
Virus-Specific Features
|
Pathogen |
Characteristic Features |
|
HIV |
Occurs during seroconversion or mild-moderate immunodeficiency; more aggressive, multiphasic course; atypical tumefactive/corpus callosum lesions |
|
Dengue (DENV) |
Rare (~0.4% of dengue patients); higher mortality than other viral triggers; worse outcome with higher admission fever |
|
Measles (MV) |
Historically high mortality; 25–40% of survivors develop permanent neurological sequelae |
|
EBV |
Linked to anti-MOG antibody induction → more severe MOG-positive ADEM; improves with rituximab (B-cell depletion) |
|
SARS-CoV-2 |
~10% of neuro-COVID patients show ADEM/ADEM-like lesions; longer latency, worse recovery, more periventricular/corpus callosum involvement, less deep grey matter involvement |
|
CMV |
May progress to acute hemorrhagic leukoencephalitis if diagnosis delayed |
|
HSV |
Atypical presentations incl. transverse myelitis; marker of poor prognosis |
|
VZV |
Rare complication; associated with anti-MOG-positive ADEM |
Pathogenesis
|
Mechanism |
Detail |
|
Molecular mimicry |
Pathogen epitopes resemble myelin autoantigens — MOG, PLP, MBP, MOBP, OSP — triggering cross-reactive antibodies |
|
Anti-MOG antibodies |
Most common antibody; more frequent in younger patients; IgG1 subclass; ↑ relapse risk, earlier onset |
|
BBB disruption |
Direct CNS infection releases CNS-restricted autoantigens into systemic circulation → loss of self-tolerance |
|
Acute phase cytokines |
Th1 dominant — IL-1β, IL-6, IL-8, TNF-α, IFN-γ → lymphocyte migration across BBB |
|
Remission phase cytokines |
Shift to Th2 — IL-4, IL-10, TGF-β |
Diagnostic Criteria (IPMSSG 2013)
|
Requirement |
Detail |
|
Core requirement |
Encephalopathy — behavioral change or altered consciousness not explained by fever/postictal state (obligatory) |
|
Plus |
Polyfocal neurological deficits |
|
Exclusions needed |
No history of prior neurological disorder; must exclude viral/bacterial encephalitis |
|
History to collect |
Recent viral infection or vaccination |
|
Timing rule |
New/recurring symptoms within 3 months of onset = same initial event, not a relapse |
|
Multiphasic ADEM defined as |
A new qualifying episode occurring ≥3 months after the initial event |
Clinical Features
|
Phase |
Features |
|
Prodromal |
Fever, headache, myalgia |
|
Full-blown ADEM |
Fever, encephalopathy (obligatory), seizures, quadriparesis/paraparesis, bilateral optic neuritis |
Symptom Frequency
|
Symptom |
Frequency |
|
Encephalopathy |
100% |
|
Fever |
12–80% |
|
Headache |
6–64% |
|
Bladder dysfunction |
10–61% |
|
Pyramidal signs |
18–60% |
|
Ataxia |
36–53.5% |
|
Seizures |
18.5–50% |
|
Cranial nerve dysfunction |
6.6–45% |
|
Optic neuritis |
6.6–27% |
|
Sensory disorders |
0–17% |
Imaging Findings
|
Feature |
Detail |
|
Modality |
MRI brain with contrast |
|
Lesion character |
Large, fluffy, poorly circumscribed / blurred edges |
|
Distribution |
Involves grey AND white matter |
|
Enhancement |
Great majority of T2 lesions enhance → suggests recent onset, consistent with monophasic illness |
|
Follow-up pattern |
Partial resolution over weeks without new lesions appearing (unlike MS) |
ADEM vs MS — MRI
|
Feature |
ADEM |
MS |
|
Single well-defined lesions |
No |
Yes |
|
Perpendicular to corpus callosum |
No |
Yes |
|
Black holes |
No |
Yes |
|
Poorly circumscribed lesions |
Yes |
No |
|
≥1 Gadolinium-enhancing lesion |
No |
Yes |
|
Basal ganglia / thalamus involvement |
Yes |
No |
Investigations
|
Test |
Finding |
|
MRI brain with contrast |
Large fluffy lesions, grey + white matter, contrast enhancing |
|
CSF study |
Lymphocytic pleocytosis, moderately increased protein count |
|
VEP |
Increased distal latency (optic nerve involvement) |
|
EEG |
Non-specific slowing; rules out non-convulsive status epilepticus |
Emerging Diagnostics (2026 data)
|
Method |
Application |
|
MRS (Cho/NAA ratio) |
Distinguishes tumefactive demyelinating lesions from gliomas — high-grade gliomas show significantly higher Cho/NAA than TDLs |
|
Machine learning (MRI radiomics) |
Differentiates MOGAD ADEM-like presentation from classic ADEM using FLAIR features; accuracy >78.6%, AUC >89% |
|
MOG-IgG + OCT + orbital imaging |
MOG-IgG positive children (~71.1%) more often show optic nerve involvement and persistent MRI lesions vs MOG-IgG negative (lesions resolve completely in 75.5%) |
Differential Diagnosis
|
Feature |
ADEM |
Tumefactive MS |
Baló’s Concentric Sclerosis |
|
Course |
Usually monophasic |
Chronic, relapsing |
Monophasic or relapsing |
|
MRI |
Multiple lesions, no mass effect (except tumefactive ADEM) |
Few large lesions, mass effect |
Concentric ring lesions |
|
CSF OCBs |
Usually absent |
Usually positive |
Variable |
Treatment
|
Line |
Regimen |
|
Acute (first-line) |
IV Methylprednisolone 1 g IV OD × 5 days (weight-based: 10–30 mg/kg/day, max 1000 mg/day) |
|
Following steroids |
Oral prednisone taper over 4–6 weeks |
|
Refractory disease |
Plasma exchange OR IVIG (2 g/kg over 2–5 days) |
|
Fulminant / refractory raised ICP |
Decompressive craniectomy (life-saving) |
|
Steroid duration caution |
Premature withdrawal (<3 weeks) → increased relapse risk |
Disease Course Terminology
|
Term |
Definition |
|
Monophasic ADEM |
Single episode; ~70–75% of cases |
|
Multiphasic ADEM |
New episode ≥3 months after initial event |
|
MOG IgG disease |
ADEM-like presentation; associated with higher relapse risk |
|
ADEM-ON |
Multiphasic variant with optic neuritis; usually anti-MOG positive |
Course & Prognosis
|
Parameter |
Detail |
|
Symptom onset |
1–2 weeks post-infection; peak intensity over 4–7 days |
|
Recovery |
Most patients achieve substantial/complete recovery within weeks |
|
Mortality |
~7.8% overall |
|
Residual deficits |
~47.5% (worse outcomes in adults) |
|
Fulminant variant |
Acute Hemorrhagic Leukoencephalitis (Hurst disease) — hyperacute, necrotizing/hemorrhagic; ~47% mortality |
|
Follow-up imaging |
Recommended ~3 months post-acute event |
Adult vs Pediatric ADEM
|
Feature |
Children |
Adults |
|
Fever |
More common |
Less common |
|
Impaired consciousness |
46–73% |
20–56% |
|
MRI lesion pattern |
Thalamus, basal ganglia |
Periventricular predominant |
|
Gadolinium-enhancing lesions |
~30% |
55–60% |
|
ICU admission / disease course |
Less severe |
More aggressive, higher ICU rates |
|
Overall diagnostic clarity |
IPMSSG criteria validated |
No accepted adult criteria — >50% left undiagnosed |
References
- Bradley’s Neurology in Clinical Practice. 8th ed. Chapter 80: Multiple Sclerosis and Other Inflammatory Demyelinating Diseases of the Central Nervous System. Fabian MT, Krieger SC, Lublin FD.
- Harrison’s Principles of Internal Medicine. 22nd ed. Chapter 456: Neuromyelitis Optica. Cree BAC, Hauser SL.
- Ferenc K, Semik P, Paprocka J. Acute Disseminated Encephalomyelitis (ADEM): Current View into Etiopathogenesis and Clinical Features. Brain Sci. 2026;16(2):201.
