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Updated: Jul 23, 2025

Assessing Cortical Cerebral Microinfarcts on High Resolution MR Images
Published on: November 20, 2015
Cerebral microinfarcts revisited: Detection, causes, and clinical relevance
Jiannan Huang1, Geert Jan Biessels2, Frank-Erik de Leeuw3
1Saw Swee Hock School of Public Health, National University of Singapore and National University Health System, Singapore.
Abstract:
Cerebral microinfarcts (CMIs) are small ischemic lesions invisible to the naked eye at brain autopsy, while the larger ones (0.5-4 mm in diameter) have been visualized in-vivo on magnetic resonance imaging (MRI). CMIs can be detected on diffusion-weighted imaging (DWI) as incidental small DWI-positive lesions (ISDPLs) and on structural MRI for those confined to the cortex and in the chronic phase. ISDPLs may evolve into old cortical-CMIs, white matter hyperintensities or disappear depending on their location and size. Novel techniques in neuropathology and neuroimaging facilitate the detection of CMIs, which promotes understanding of these lesions. CMIs have heterogeneous causes, involving both cerebral small- and large-vessel disease as well as heart diseases such as atrial fibrillation and congestive heart failure. The underlying mechanisms incorporate vascular remodeling, inflammation, blood-brain barrier leakage, penetrating venule congestion, cerebral hypoperfusion, and microembolism. CMIs lead to clinical outcomes, including cognitive decline, a higher risk of stroke and mortality, and accelerated neurobehavioral disturbances. It has been suggested that CMIs can impair brain function and connectivity beyond the microinfarct core and are also associated with perilesional and global cortical atrophy. This review aims to summarize recent progress in studies involving both cortical-CMIs and ISDPLs since 2017, including their detection, etiology, risk factors, MRI correlates, and clinical consequences.
Insights
Cerebral microinfarcts (CMIs) are small brain lesions detected by MRI. Recent advances improve CMI detection, revealing links to vascular disease, heart conditions, and negative neurological outcomes like cognitive decline.
Area of Science:
- Neurology
- Neuroimaging
- Pathology
Background:
- Cerebral microinfarcts (CMIs) are small ischemic lesions, often undetectable by autopsy but visible via MRI.
- Advanced neuroimaging techniques like diffusion-weighted imaging (DWI) detect incidental small DWI-positive lesions (ISDPLs), which can represent CMIs.
Purpose of the Study:
- To review recent advancements (since 2017) in understanding cerebral microinfarcts (CMIs).
- To cover CMI detection, causes, risk factors, MRI findings, and clinical impact.
Main Methods:
- Review of recent literature on cortical CMIs and ISDPLs.
- Focus on novel neuropathology and neuroimaging detection methods.
- Analysis of etiological factors, risk factors, MRI correlates, and clinical consequences.
Main Results:
- CMIs have diverse causes, including small/large vessel disease and cardiac conditions (e.g., atrial fibrillation).
- Mechanisms involve vascular remodeling, inflammation, blood-brain barrier issues, hypoperfusion, and microembolism.
- CMIs are associated with cognitive decline, increased stroke risk, mortality, and neurobehavioral disturbances.
Conclusions:
- Improved detection methods enhance CMI understanding.
- CMIs significantly impact brain function, connectivity, and contribute to atrophy.
- Further research is crucial for managing CMI-related neurological deficits.

