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Assessing Cortical Cerebral Microinfarcts on High Resolution MR Images
Published on: November 20, 2015
Microbleed and microinfarct detection in amyloid angiopathy: a high-resolution MRI-histopathology study
Susanne J van Veluw1,2, Andreas Charidimou3, Andre J van der Kouwe4
11 J. Philip Kistler Stroke Research Center, Department of Neurology, Massachusetts General Hospital and Harvard Medical School, Boston, MA, USA svanveluw@mgh.harvard.edu.
Abstract:
Cerebral amyloid angiopathy is a common neuropathological finding in the ageing human brain, associated with cognitive impairment. Neuroimaging markers of severe cerebral amyloid angiopathy are cortical microbleeds and microinfarcts. These parenchymal brain lesions are considered key contributors to cognitive impairment. Therefore, they are important targets for therapeutic strategies and may serve as surrogate neuroimaging markers in clinical trials. We aimed to gain more insight into the pathological basis of magnetic resonance imaging-defined microbleeds and microinfarcts in cerebral amyloid angiopathy, and to explore the pathological burden that remains undetected, by using high and ultra-high resolution ex vivo magnetic resonance imaging, as well as detailed histological sampling. Brain samples from five cases (mean age 85 ± 6 years) with pathology-proven cerebral amyloid angiopathy and multiple microbleeds on in vivo clinical magnetic resonance imaging were subjected to high-resolution ex vivo 7 T magnetic resonance imaging. On the obtained high-resolution (200 μm isotropic voxels) ex vivo magnetic resonance images, 171 microbleeds were detected compared to 66 microbleeds on the corresponding in vivo magnetic resonance images. Of 13 sampled microbleeds that were matched on histology, five proved to be acute and eight old microhaemorrhages. The iron-positive old microhaemorrhages appeared approximately four times larger on magnetic resonance imaging compared to their size on histology. In addition, 48 microinfarcts were observed on ex vivo magnetic resonance imaging in three out of five cases (two cases exhibited no microinfarcts). None of them were visible on in vivo 1.5 T magnetic resonance imaging after a retrospective analysis. Of nine sampled microinfarcts that were matched on histology, five were confirmed as acute and four as old microinfarcts. Finally, we explored the proportion of microhaemorrhage and microinfarct burden that is beyond the detection limits of ex vivo magnetic resonance imaging, by scanning a smaller sample at ultra-high resolution, followed by serial sectioning. At ultra-high resolution (75 μm isotropic voxels) magnetic resonance imaging we observed an additional 48 microbleeds (compared to high resolution), which proved to correspond to vasculopathic changes (i.e. morphological changes to the small vessels) instead of frank haemorrhages on histology. After assessing the serial sections of this particular sample, no additional haemorrhages were observed that were missed on magnetic resonance imaging. In contrast, nine microinfarcts were found in these sections, of which six were only retrospectively visible at ultra-high resolution. In conclusion, these findings suggest that microbleeds on in vivo magnetic resonance imaging are specific for microhaemorrhages in cerebral amyloid angiopathy, and that increasing the resolution of magnetic resonance images results in the detection of more 'non-haemorrhagic' pathology. In contrast, the vast majority of microinfarcts currently remain under the detection limits of clinical in vivo magnetic resonance imaging.
Insights
High-resolution MRI reveals more microbleeds and microinfarcts in cerebral amyloid angiopathy than previously detected. Increased MRI resolution identifies non-hemorrhagic changes, but most microinfarcts remain undetectable in vivo.
Area of Science:
- Neuropathology
- Neuroimaging
- Vascular Neurology
Background:
- Cerebral amyloid angiopathy (CAA) is common in aging brains and linked to cognitive impairment.
- Cortical microbleeds and microinfarcts are key neuroimaging markers of severe CAA.
- These lesions are crucial targets for therapies and clinical trial biomarkers.
Purpose of the Study:
- To investigate the pathological basis of MRI-defined microbleeds and microinfarcts in CAA.
- To explore the extent of pathology missed by standard in vivo MRI.
- To correlate ex vivo high-resolution MRI findings with detailed histology.
Main Methods:
- Utilized high (200 μm) and ultra-high (75 μm) resolution ex vivo MRI on human brain samples (n=5) with confirmed CAA.
- Performed detailed histological sampling and matching with MRI findings.
- Retrospectively analyzed in vivo 1.5 T MRI scans for comparison.
Main Results:
- Ex vivo MRI detected significantly more microbleeds (171) than in vivo MRI (66).
- Histology confirmed 5/13 sampled microbleeds as acute and 8/13 as old microhemorrhages.
- Ex vivo MRI identified 48 microinfarcts, none visible on in vivo MRI; histology confirmed 5/9 as acute and 4/9 as old.
- Ultra-high resolution MRI revealed additional microbleeds corresponding to vasculopathy, not frank hemorrhage.
- Serial sectioning identified 9 microinfarcts, 6 of which were only visible retrospectively at ultra-high resolution MRI.
Conclusions:
- In vivo MRI microbleeds in CAA are specific for microhemorrhages.
- Higher MRI resolution detects more non-hemorrhagic pathology, potentially related to vasculopathy.
- The majority of microinfarcts in CAA remain undetected by current clinical in vivo MRI techniques.

