Seizure-induced reversible MRI abnormalities in patients with single seizures: a systematic review
Frederick P Mariajoseph1, Subramanian Muthusamy2, Shalini Amukotuwa3
1School of Clinical Sciences at Monash Health, Department of Medicine, Monash University, Melbourne, Victoria, Australia.
Abstract:
Differentiating seizure-induced reversible MRI abnormalities from MRI changes secondary to underlying cerebral pathologies can be challenging for clinicians in the investigation of seizures. The aim of this study was to delineate the characteristic features of reversible seizure-induced MRI abnormalities. A systematic search of the databases Medline (1946-2020), PubMed (1996-2020), and Embase (1947-2020) was performed in keeping with the Preferred Items Reporting for Systematic Reviews and Meta-Analyses (PRISMA) guidelines. All publications in English, including case reports, of single unprovoked seizure patients with seizure-induced MRI abnormalities demonstrating complete resolution, were included. Two authors extracted data using a predefined template and evaluated the quality of the included studies. MRI data were additionally reviewed by a neuroradiologist. All data were synthesised qualitatively. There were 11 publications altogether, yielding a total of 27 cases that were pertinent to our research question. Abnormalities were most commonly observed on T2-weighted sequences. The most commonly observed constellations of MRI features ("composite pattern") included the following: cortical or subcortical signal change with or without leptomeningeal enhancement, signal abnormality in the splenium of the corpus callosum, and hippocampal signal abnormality. Seizure-induced reversible MRI abnormalities were observed as early as six hours from seizure onset and resolved completely as early as five days from seizure onset. A key limitation of this systematic review was the variability and incomplete reporting of clinical data, especially with regards to seizure semiology and MRI sequences performed, which may have limited our ability to make more definitive conclusions. Seizure-induced reversible MRI changes may appear within hours of seizure onset and resolve within a variable time frame, ranging from days to weeks. Bilateral seizure-induced reversible MRI abnormalities tend to be associated with generalised seizures while unilateral seizure-induced reversible MRI abnormalities may be associated with focal seizures, usually ipsilateral to the seizure focus.
Insights
Reversible MRI abnormalities after seizures can mimic other brain conditions. This review outlines characteristic imaging patterns and timelines for these temporary seizure-induced changes.
Area of Science:
- Neuroradiology
- Neurology
- Medical Imaging
Background:
- Distinguishing seizure-induced MRI abnormalities from pathology-related changes is clinically challenging.
- Understanding reversible MRI findings aids accurate seizure diagnosis.
Purpose of the Study:
- To characterize reversible MRI abnormalities following seizures.
- To identify key imaging features and temporal evolution of these transient changes.
Main Methods:
- Systematic literature search (Medline, PubMed, Embase) following PRISMA guidelines.
- Inclusion of English case reports of seizures with fully resolved MRI abnormalities.
- Qualitative synthesis of data, including neuroradiologist review of MRI findings.
Main Results:
- Eleven publications identified 27 relevant cases.
- Abnormalities most frequent on T2-weighted sequences.
- Common patterns include cortical/subcortical signal change, splenium/hippocampal abnormalities, and leptomeningeal enhancement.
- Changes observed as early as 6 hours post-seizure, resolving within 5 days to weeks.
- Bilateral changes associated with generalized seizures; unilateral with focal seizures.
Conclusions:
- Seizure-induced reversible MRI changes present specific patterns and timelines.
- These transient abnormalities can appear rapidly and resolve over days to weeks.
- Correlation between laterality of MRI findings and seizure type (focal vs. generalized) is noted.
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