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Published on: August 24, 2013
Longitudinal anatomic, functional, and molecular characterization of Pick disease phenotypes
Jennifer L Whitwell1, Nirubol Tosakulwong2, Christopher C Schwarz2
1From the Departments of Radiology (J.L.W., C.C.S., M.L.S., A.J.S., V.J.L., C.R.J.), Health Sciences Research (N.T.), Neurology (J.R.D., J.G.-R., B.F.B., D.S.K., R.C.P., K.A.J.), Psychiatry and Psychology (M.M.M.), and Neuropathology (J.E.P.), Mayo Clinic, Rochester, MN; and Department of Neuropathology (D.W.D.), Mayo Clinic, Jacksonville, FL. Whitwell.jennifer@mayo.edu.
Objective:
To characterize longitudinal MRI and PET abnormalities in autopsy-confirmed Pick disease (PiD) and determine how patterns of neurodegeneration differ with respect to clinical syndrome.
Methods:
Seventeen patients with PiD were identified who had antemortem MRI (8 with behavioral variant frontotemporal dementia [bvFTD-PiD], 6 with nonfluent/agrammatic primary progressive aphasia [naPPA-PiD], 1 with semantic primary progressive aphasia, 1 with unclassified primary progressive aphasia, and 1 with corticobasal syndrome). Thirteen patients had serial MRI for a total of 56 MRIs, 7 had [18F]fluorodeoxyglucose PET, 4 had Pittsburgh compound B (PiB) PET, and 1 patient had [18F]flortaucipir PET. Cross-sectional and longitudinal comparisons of gray matter volume and metabolism were performed between bvFTD-PiD, naPPA-PiD, and controls. Cortical PiB summaries were calculated to determine β-amyloid positivity.
Results:
The bvFTD-PiD and naPPA-PiD groups showed different foci of volume loss and hypometabolism early in the disease, with bvFTD-PiD involving bilateral prefrontal and anterior temporal cortices and naPPA-PiD involving left inferior frontal gyrus, insula, and orbitofrontal cortex. However, patterns merged over time, with progressive spread into prefrontal and anterior temporal lobe in naPPA-PiD, and eventual involvement of posterior temporal lobe, motor cortex, and parietal lobe in both groups. Rates of frontotemporal atrophy were faster in bvFTD-PiD than naPPA-PiD. One patient was β-amyloid-positive on PET with low Alzheimer neuropathologic changes at autopsy. Flortaucipir PET showed elevated uptake in frontotemporal white matter.
Conclusion:
Patterns of atrophy and hypometabolism differ in PiD according to presenting syndrome, although patterns of neurodegeneration appear to converge over time.
Insights
Neuroimaging in Pick disease (PiD) reveals distinct early atrophy patterns based on clinical presentation, which converge over time. This study characterizes longitudinal MRI and PET findings in autopsy-confirmed PiD cases.
Area of Science:
- Neurodegenerative diseases
- Neuroimaging
- Neuropathology
Background:
- Pick disease (PiD) is a form of frontotemporal dementia characterized by tau pathology.
- Understanding the in vivo neurodegenerative patterns associated with different clinical syndromes in PiD is crucial for diagnosis and management.
Purpose of the Study:
- To characterize longitudinal MRI and PET abnormalities in autopsy-confirmed Pick disease.
- To determine how neurodegeneration patterns in PiD differ based on clinical presentation.
Main Methods:
- Seventeen patients with autopsy-confirmed PiD underwent antemortem MRI and PET scans.
- Serial MRI, [18F]fluorodeoxyglucose PET, Pittsburgh compound B (PiB) PET, and [18F]flortaucipir PET were utilized.
- Cross-sectional and longitudinal analyses compared gray matter volume and metabolism between behavioral variant FTD-PiD, naPPA-PiD, and controls.
Main Results:
- Early disease stages showed distinct atrophy and hypometabolism foci: bvFTD-PiD involved prefrontal and anterior temporal cortices, while naPPA-PiD affected the left inferior frontal gyrus, insula, and orbitofrontal cortex.
- Over time, neurodegeneration patterns converged, with widespread involvement of prefrontal, temporal, motor, and parietal lobes in both groups.
- Frontotemporal atrophy progressed faster in bvFTD-PiD than naPPA-PiD. One patient was amyloid-positive but had minimal Alzheimer pathology at autopsy.
Conclusions:
- Neuroimaging reveals distinct patterns of atrophy and hypometabolism in PiD that vary with the initial clinical syndrome.
- These neurodegenerative patterns tend to converge over the course of the disease.
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