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Published on: April 14, 2014
Hippocampal atrophy rates in Alzheimer disease: added value over whole brain volume measures
W J P Henneman1, J D Sluimer, J Barnes
1Department of Radiology, VU University Medical Center, Amsterdam, The Netherlands. w.henneman@vumc.nl
Objective:
To investigate the added value of hippocampal atrophy rates over whole brain volume measurements on MRI in patients with Alzheimer disease (AD), patients with mild cognitive impairment (MCI), and controls.
Methods:
We included 64 patients with AD (67 +/- 9 years; F/M 38/26), 44 patients with MCI (71 +/- 6 years; 21/23), and 34 controls (67 +/- 9 years; 16/18). Two MR scans were performed (scan interval: 1.8 +/- 0.7 years; 1.0 T), using a coronal three-dimensional T1-weighted gradient echo sequence. At follow-up, 3 controls and 23 patients with MCI had progressed to AD. Hippocampi were manually delineated at baseline. Hippocampal atrophy rates were calculated using regional, nonlinear fluid registration. Whole brain baseline volumes and atrophy rates were determined using automated segmentation and registration tools.
Results:
All MRI measures differed between groups (p < 0.005). For the distinction of MCI from controls, larger effect sizes of hippocampal measures were found compared to whole brain measures. Between MCI and AD, only whole brain atrophy rate differed significantly. Cox proportional hazards models (variables dichotomized by median) showed that within all patients without dementia, hippocampal baseline volume (hazard ratio [HR]: 5.7 [95% confidence interval: 1.5-22.2]), hippocampal atrophy rate (5.2 [1.9-14.3]), and whole brain atrophy rate (2.8 [1.1-7.2]) independently predicted progression to AD; the combination of low hippocampal volume and high atrophy rate yielded a HR of 61.1 (6.1-606.8). Within patients with MCI, only hippocampal baseline volume and atrophy rate predicted progression.
Conclusion:
Hippocampal measures, especially hippocampal atrophy rate, best discriminate mild cognitive impairment (MCI) from controls. Whole brain atrophy rate discriminates Alzheimer disease (AD) from MCI. Regional measures of hippocampal atrophy are the strongest predictors of progression to AD.
Insights
Hippocampal atrophy rates on MRI are better than whole brain volume for distinguishing mild cognitive impairment (MCI) from controls. Hippocampal measures strongly predict progression to Alzheimer disease (AD).
Area of Science:
- Neurology
- Radiology
- Neuroimaging
Background:
- Alzheimer disease (AD) and mild cognitive impairment (MCI) are characterized by neurodegeneration.
- Magnetic Resonance Imaging (MRI) is crucial for assessing brain structure changes.
Purpose of the Study:
- To evaluate the diagnostic and prognostic value of hippocampal atrophy rates compared to whole brain volume measurements.
- To determine the added value of hippocampal atrophy in predicting disease progression.
Main Methods:
- Included 64 AD, 44 MCI patients, and 34 controls.
- Two MRI scans over ~1.8 years to calculate atrophy rates.
- Manual hippocampal delineation and automated whole brain volumetry.
Main Results:
- Hippocampal measures showed larger effect sizes than whole brain measures for distinguishing MCI from controls.
- Hippocampal baseline volume and atrophy rates independently predicted progression to AD in non-demented patients.
- Combination of low hippocampal volume and high atrophy rate significantly increased AD progression risk.
Conclusions:
- Hippocampal atrophy rate is a key differentiator between MCI and controls.
- Whole brain atrophy rate distinguishes AD from MCI.
- Regional hippocampal measures are the strongest predictors of progression to Alzheimer disease.
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