Alzheimer's disease neuroimaging initiative: a one-year follow up study using tensor-based morphometry correlating degenerative rates, biomarkers and cognition

AD Leow, I Yanovsky, N Parikshak, X Hua, S Lee… - Neuroimage, 2009 - Elsevier
Tensor-based morphometry can recover three-dimensional longitudinal brain changes over
time by nonlinearly registering baseline to follow-up MRI scans of the same subject. Here …

Alzheimer's Disease Neuroimaging Initiative: A one-year follow up study using tensor-based morphometry correlating degenerative rates, biomarkers and cognition.

AD Leow, I Yanovsky, N Parikshak, X Hua, S Lee… - NeuroImage, 2009 - psycnet.apa.org
Tensor-based morphometry can recover three-dimensional longitudinal brain changes over
time by nonlinearly registering baseline to follow-up MRI scans of the same subject. Here …

Alzheimer's Disease Neuroimaging Initiative: A one-year follow up study using tensor-based morphometry correlating degenerative rates, biomarkers and cognition

AD Leow, I Yanovsky, N Parikshak, X Hua, S Lee… - NeuroImage, 2009 - infona.pl
Tensor-based morphometry can recover three-dimensional longitudinal brain changes over
time by nonlinearly registering baseline to follow-up MRI scans of the same subject. Here …

[引用][C] Alzheimer's Disease Neuroimaging Initiative: A one-year follow up study using tensor-based morphometry correlating degenerative rates, biomarkers and …

AD Leow, I Yanovsky, N Parikshak, X Hua, S Lee… - NeuroImage, 2009 - cir.nii.ac.jp
Alzheimer's Disease Neuroimaging Initiative: A one-year follow up study using tensor-based
morphometry correlating degenerative rates, biomarkers and cognition | CiNii Research CiNii …

[PDF][PDF] Alzheimer's Disease Neuroimaging Initiative: A one-year follow up study using tensor-based morphometry correlating degenerative rates, biomarkers and …

AD Leowa, I Yanovskyc, N Parikshaka, X Huaa… - Neuroimage, 2009 - academia.edu
Tensor-based morphometry can recover three-dimensional longitudinal brain changes over
time by nonlinearly registering baseline to follow-up MRI scans of the same subject. Here …

Alzheimer's disease neuroimaging initiative: a one-year follow up study using tensor-based morphometry correlating degenerative rates, biomarkers and cognition.

AD Leow, I Yanovsky, N Parikshak, X Hua, S Lee… - Neuroimage, 2009 - europepmc.org
Tensor-based morphometry can recover three-dimensional longitudinal brain changes over
time by nonlinearly registering baseline to follow-up MRI scans of the same subject. Here …

Alzheimer's disease neuroimaging initiative: a one-year follow up study using tensor-based morphometry correlating degenerative rates, biomarkers and cognition

AD Leow, I Yanovsky, N Parikshak, X Hua… - …, 2009 - pubmed.ncbi.nlm.nih.gov
Tensor-based morphometry can recover three-dimensional longitudinal brain changes over
time by nonlinearly registering baseline to follow-up MRI scans of the same subject. Here …

[HTML][HTML] Alzheimer's Disease Neuroimaging Initiative: A one-year follow up study using tensor-based morphometry correlating degenerative rates, biomarkers and …

AD Leow, I Yanovsky, N Parikshak, X Hua, S Lee… - NeuroImage, 2009 - ncbi.nlm.nih.gov
Tensor-based morphometry can recover three-dimensional longitudinal brain changes over
time by nonlinearly registering baseline to follow-up MRI scans of the same subject. Here …

[PDF][PDF] Alzheimer's Disease Neuroimaging Initiative: A one-year follow up study using tensor-based morphometry correlating degenerative rates, biomarkers and …

AD Leow, I Yanovsky, N Parikshak, X Hua, S Lee… - …, 2009 - adni.loni.usc.edu
Alex D. Leow a, b,⁎, Igor Yanovsky c, Neelroop Parikshak a, Xue Hua a, Suh Lee a, Arthur
W. Toga a, Clifford R. Jack Jr. d, Matt A. Bernstein d, Paula J. Britson d, Jeffrey L. Gunter d …

[PDF][PDF] Alzheimer's Disease Neuroimaging Initiative: A one-year follow up study using tensor-based morphometry correlating degenerative rates, biomarkers and …

AD Leowa, I Yanovskyc, N Parikshaka, X Huaa, S Leea… - Neuroimage, 2009 - Citeseer
Tensor-based morphometry can recover three-dimensional longitudinal brain changes over
time by nonlinearly registering baseline to follow-up MRI scans of the same subject. Here …