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Published on: November 20, 2015
Multimodal MRI in cerebral small vessel disease: its relationship with cognition and sensitivity to change over time
Arani Nitkunan1, Tom R Barrick, Rebecca A Charlton
1Centre for Clinical Neuroscience, St George's, University of London, Cranmer Terrace, London SW17 0RE, UK.
Background And Purpose:
Cerebral small vessel disease is the most common cause of vascular dementia. Interest in using MRI parameters as surrogate markers of disease to assess therapies is increasing. In patients with symptomatic sporadic small vessel disease, we determined which MRI parameters best correlated with cognitive function on cross-sectional analysis and which changed over a period of 1 year.
Methods:
Thirty-five patients with lacunar stroke and leukoaraiosis were recruited. They underwent multimodal MRI (brain volume, fluid-attenuated inversion recovery lesion load, lacunar infarct number, fractional anisotropy, and mean diffusivity from diffusion tensor imaging) and neuropsychological testing. Twenty-seven agreed to reattend for repeat MRI and neuropsychology at 1 year.
Results:
An executive function score correlated most strongly with diffusion tensor imaging (fractional anisotropy histogram, r=-0.640, P=0.004) and brain volume (r=0.501, P=0.034). Associations with diffusion tensor imaging were stronger than with all other MRI parameters. On multiple regression of all imaging parameters, a model that contained brain volume and fractional anisotropy, together with age, gender, and premorbid IQ, explained 74% of the variance of the executive function score (P=0.0001). Changes in mean diffusivity and fractional anisotropy were detectable over the 1-year follow-up; in contrast, no change in other MRI parameters was detectable over this time period.
Conclusions:
A multimodal MRI model explains a large proportion of the variation in executive function in cerebral small vessel disease. In particular, diffusion tensor imaging correlates best with executive function and is the most sensitive to change. This supports the use of MRI, in particular diffusion tensor imaging, as a surrogate marker in treatment trials.
Insights
Diffusion tensor imaging best correlates with executive function in small vessel disease. This MRI technique is sensitive to change, supporting its use as a surrogate marker for therapy assessment in vascular dementia.
Area of Science:
- Neurology
- Radiology
- Neuroimaging
Background:
- Cerebral small vessel disease is a primary cause of vascular dementia.
- Magnetic Resonance Imaging (MRI) parameters are increasingly explored as surrogate markers for assessing therapies.
- Understanding the relationship between MRI findings and cognitive function is crucial for treatment development.
Purpose of the Study:
- To identify MRI parameters that best correlate with cognitive function in patients with symptomatic sporadic small vessel disease.
- To determine which MRI parameters show changes over a 1-year period in these patients.
Main Methods:
- Thirty-five patients with lacunar stroke and leukoaraiosis underwent multimodal MRI, including diffusion tensor imaging (DTI).
- Neuropsychological testing assessed cognitive function, particularly executive function.
- Twenty-seven patients completed a 1-year follow-up with repeat MRI and cognitive assessments.
Main Results:
- Executive function scores showed the strongest correlation with DTI (fractional anisotropy) and brain volume.
- DTI parameters demonstrated stronger associations with executive function than other MRI measures.
- Changes in mean diffusivity and fractional anisotropy were detectable over 1 year, unlike other MRI parameters.
Conclusions:
- A multimodal MRI model, particularly DTI, effectively explains executive function variance in cerebral small vessel disease.
- DTI is the most sensitive MRI parameter to changes over time, supporting its role as a surrogate marker.
- MRI, especially DTI, shows promise as a surrogate marker in clinical trials for small vessel disease therapies.
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