Assessing atrophy measurement techniques in dementia: Results from the MIRIAD atrophy challenge

David M Cash1, Chris Frost2, Leonardo O Iheme3

  • 1Dementia Research Centre, UCL Institute of Neurology, London, UK; Translational Imaging Group, Centre for Medical Image Computing, UCL, London, UK.

Neuroimage
|August 16, 2015
PubMed

Insights

The MIRIAD atrophy challenge compared brain atrophy measurement techniques using identical Alzheimer's disease data. Ventricle and whole brain measures were most stable, impacting clinical trial sample size estimates.

Area of Science:

  • Neuroimaging
  • Neurodegenerative Disorders
  • Quantitative MRI

Background:

  • Structural MRI is crucial for assessing brain atrophy in neurodegenerative diseases.
  • Comparing atrophy measurement techniques is complex due to varied data exclusions and statistical models.
  • Standardized comparisons are needed to improve the reliability of clinical trial sample size estimations.

Purpose of the Study:

  • To formally compare the capabilities of various atrophy measurement techniques using a standardized dataset.
  • To assess the repeatability, symmetry, and transitivity of different atrophy measurement methods.
  • To estimate atrophy rates and determine sample size requirements for clinical trials across different brain structures.

Main Methods:

  • The MIRIAD atrophy challenge utilized data from 69 subjects (46 with Alzheimer's disease) with multiple MRI scans over 1-2 years.
  • Nine international groups provided volumetric measurements of whole brain, lateral ventricles, and hippocampi.
  • Statistical analysis employed linear mixed-effect models and bootstrap methods for comparisons and sample size estimations.

Main Results:

  • Lateral ventricles and whole brain showed the most stable measurements; hippocampi exhibited higher variability.
  • Annualized atrophy rates varied significantly across techniques and brain regions.
  • Sample size requirements for detecting a 25% treatment effect differed substantially between techniques, with ventricles requiring the fewest participants for a 12-month trial.

Conclusions:

  • The MIRIAD challenge provided a robust, head-to-head comparison of atrophy measurement techniques on identical data.
  • Significant differences in sample size requirements highlight the impact of technique choice on clinical trial design.
  • The challenge data remains available for ongoing assessment of neuroimaging analysis methods.

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