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Updated: Jun 11, 2026

Integrated Photoacoustic, Ultrasound, and Angiographic Tomography (PAUSAT) for NonInvasive Whole-Brain Imaging of Ischemic Stroke
Published on: June 2, 2023
Neuroimaging of stroke-like episodes in MELAS
Hiromichi Ito1, Kenji Mori, Shoji Kagami
1Department of Pediatrics, School of Medicine, University of Tokushima, Japan. michiito@lime.ocn.ne.jp
Abstract:
Mitochondrial myopathy, encephalopathy, lactic acidosis and stroke-like episodes (MELAS) shows sudden neurological deficits that are called 'stroke-like episodes'. With regard to the pathophysiology of stroke-like episodes, so-called mitochondrial angiopathy and cytopathy theories have been proposed, but the subject is still controversial. To clarify this matter and to contribute to the development of a treatment for MELAS, we review here current neuroimaging research and consider the pathophysiology of stroke-like lesions. With regard to diffusion-weighted imaging findings, early reports often showed an elevated apparent diffusion coefficient (ADC) in stroke-like lesions; this was considered to be mainly vasogenic edema in the acute phase and is a different pattern than that in stroke. However, there has recently been an increase in the number of reports of a decrease in ADC; these cases are considered to be cytotoxic edema in the acute phase, which is compatible with stroke. With regard to (1)H-magnetic resonance spectroscopy findings in stroke-like lesions, a decrease in N-acetylaspartate and an increase in lactate have been reported. With regard to single photon emission computed tomography findings for stroke-like lesions in MELAS, an overall trend is hyperperfusion in the acute stage (within 1 month) of stroke-like episodes and hypoperfusion in the chronic stage (several months later). With regard to positron emission tomography, nearly all of these reports are consistent with the mitochondrial cytopathy theory. With regard to neuropathology in MELAS, the most common findings during the chronic stage of stroke-like episodes include foci of necrosis and peculiar vascular changes (abnormalities of mitochondria in small arteries). Concerning the pathology of the acute stage of stroke-like episodes, extensive petechial hemorrhage along the gyri of the cortex corresponding to acute stroke-like lesions has been reported. To clarify the true pathophysiology of stroke-like episodes, we offer three suggestions. First, we must define the precise onset of stroke-like episodes. Second, current studies are limited by the difficulty of imaging just before and just after (within a few minutes) the onset of stroke-like episodes. Third, we hope to establish an experimental animal model. We should conduct a simultaneous multimodal imaging and histological study just before and just after (within a few minutes) the onset of stroke-like episodes in an experimental animal model.
Insights
Mitochondrial encephalopathy, lactic acidosis, and stroke-like episodes (MELAS) pathophysiology remains debated. Neuroimaging and pathology suggest complex vascular and cellular changes, necessitating precise onset definition and animal models for clarity.
Area of Science:
- Neurology
- Mitochondrial Diseases
- Neuroimaging
Background:
- Mitochondrial myopathy, encephalopathy, lactic acidosis, and stroke-like episodes (MELAS) is characterized by stroke-like episodes.
- The underlying pathophysiology of these episodes, involving mitochondrial angiopathy and cytopathy, is controversial.
Purpose of the Study:
- To review current neuroimaging research on MELAS stroke-like lesions.
- To consider the pathophysiology of these lesions and contribute to treatment development.
Main Methods:
- Review of diffusion-weighted imaging (DWI), (1)H-magnetic resonance spectroscopy (MRS), single photon emission computed tomography (SPECT), and positron emission tomography (PET) findings.
- Examination of neuropathological findings in acute and chronic stages.
Main Results:
- DWI findings for stroke-like lesions have evolved from vasogenic to cytotoxic edema patterns.
- (1)H-MRS shows decreased N-acetylaspartate and increased lactate.
- SPECT indicates acute hyperperfusion and chronic hypoperfusion.
- PET findings generally support the mitochondrial cytopathy theory.
- Neuropathology reveals necrosis, vascular changes, and petechial hemorrhage.
Conclusions:
- Clarifying MELAS pathophysiology requires precise definition of stroke-like episode onset.
- Limitations in acute-phase imaging necessitate the development of experimental animal models.
- Simultaneous multimodal imaging and histological studies in animal models are proposed.

