Acute Cortical Lesions in MELAS Syndrome: Anatomic Distribution, Symmetry, and Evolution
K D Bhatia1, P Krishnan2, H Kortman3
1From the Division of Neuroradiology (K.D.B., H.K., J.K., T.K.), Joint Department of Medical Imaging, Toronto Western Hospital, Toronto, Ontario, Canada Kartik.bhatia@uhn.ca.
Background And Purpose:
Mitochondrial encephalomyopathy with lactic acidosis and stroke-like episodes (MELAS) syndrome is a rare mitochondrial disorder affecting children and young adults. Stroke-like episodes are often associated with acute cortical lesions in the posterior cerebral cortex and are classically described as asymmetric and transient. In this study we assessed the anatomic distribution of acute cortical lesions, the incidence of symmetry, and the temporal evolution of lesions.
Materials And Methods:
This was a retrospective cohort study of patients who had a confirmed genetic diagnosis of a pathogenic variant associated with MELAS and MR imaging performed at our center (2006-2018). Each MR imaging study was assessed for new lesions using T1, T2, FLAIR, DWI, ADC, and SWI. The anatomic location, symmetry, and temporal evolution of lesions were analyzed.
Results:
Eight patients with the same pathogenic variant of MELAS (MT-TL1 m.3243A>G) with 31 MR imaging studies were included. Forty-one new lesions were identified in 17 of the studies (5 deep, 36 cortical). Cortical lesions most commonly affected the primary visual cortex, the middle-third of the primary somatosensory cortex, and the primary auditory cortex. Thirty of 36 cortical lesions had acute cortical diffusion restriction, of which 21 developed cortical laminar necrosis on subacute imaging. Six of 11 studies with multiple lesions showed symmetric cortical involvement.
Conclusions:
Acute cortical lesions in MELAS most commonly affect the primary visual, somatosensory, and auditory cortices, all regions of high neuronal density and metabolic demand. The most common pattern of temporal evolution is acute cortical diffusion restriction with subacute cortical laminar necrosis and chronic volume loss. Symmetric involvement is more common than previously described.
Insights
Mitochondrial encephalomyopathy with lactic acidosis and stroke-like episodes (MELAS) causes cortical lesions primarily in visual, somatosensory, and auditory areas. These lesions show diffusion restriction, laminar necrosis, and symmetric involvement more often than previously thought.
Area of Science:
- Neurology
- Radiology
- Mitochondrial Diseases
Background:
- Mitochondrial encephalomyopathy with lactic acidosis and stroke-like episodes (MELAS) is a rare disorder.
- Stroke-like episodes in MELAS are typically linked to acute cortical lesions, often in the posterior cerebral cortex.
- These lesions are classically described as asymmetric and transient.
Purpose of the Study:
- To assess the anatomic distribution of acute cortical lesions in MELAS.
- To determine the incidence of symmetry in these lesions.
- To analyze the temporal evolution of MELAS-related lesions.
Main Methods:
- Retrospective cohort study of MELAS patients with confirmed pathogenic variants.
- Analysis of MR imaging studies (T1, T2, FLAIR, DWI, ADC, SWI) from 2006-2018.
- Detailed assessment of lesion location, symmetry, and temporal changes.
Main Results:
- Eight patients with the MT-TL1 m.3243A>G variant and 31 MR imaging studies were analyzed.
- Forty-one new lesions were identified, predominantly cortical (36/41).
- Cortical lesions frequently affected visual, somatosensory, and auditory cortices; 30/36 showed diffusion restriction, and 21/30 developed laminar necrosis. Symmetric involvement occurred in 6/11 studies.
Conclusions:
- Acute cortical lesions in MELAS predominantly impact high-demand sensory cortices (visual, somatosensory, auditory).
- The typical lesion evolution involves diffusion restriction, followed by laminar necrosis and volume loss.
- Symmetric cortical involvement in MELAS is more common than previously recognized.
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