Microstructural damage pattern of vascular cognitive impairment: a comparison between moyamoya disease and

Jia-Bin Su1, Si-Da Xi2, Shu-Yi Zhou3

  • 1Department of Neurosurgery, Huashan Hospital, Fudan University, Shanghai, China.

Insights

Moyamoya disease and cerebrovascular atherosclerotic disease cause similar cognitive impairment due to brain microstructural damage. Both conditions show gray and white matter deterioration, particularly in moyamoya disease.

Area of Science:

  • Neuroscience
  • Neurology
  • Radiology

Background:

  • Moyamoya disease and cerebrovascular atherosclerotic disease present similarly with vascular cognitive impairment.
  • Understanding the specific microstructural damage patterns in each disease is crucial.

Purpose of the Study:

  • To investigate and compare the patterns of microstructural brain damage associated with vascular cognitive impairment in moyamoya disease and cerebrovascular atherosclerotic disease.

Main Methods:

  • Recruited 34 moyamoya disease patients, 27 cerebrovascular atherosclerotic disease patients, and 31 controls.
  • Assessed cognitive function using standard neuropsychological tests.
  • Utilized single-photon emission-computed tomography (SPECT) for cerebral perfusion and voxel-based morphometry/tract-based spatial statistics for microstructural analysis.

Main Results:

  • Cognitive impairment severity was comparable between moyamoya disease and cerebrovascular atherosclerotic disease.
  • Both diseases exhibited disturbed supratentorial hemodynamics and gray matter atrophy (middle cingulate cortex, frontal gyrus), more severe in moyamoya disease.
  • Significant white matter deterioration (corpus callosum, corona radiata, thalamic radiation) was observed in both, with greater severity and diffusion in moyamoya disease.

Conclusions:

  • Vascular cognitive impairment is linked to regional gray and white matter microstructural damage in both moyamoya disease and cerebrovascular atherosclerotic disease.
  • Moyamoya disease shows more diffuse and severe microstructural damage compared to cerebrovascular atherosclerotic disease.
  • Findings offer insights into the pathophysiology of vascular cognitive impairment.

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