PURPOSE Alzheimer's disease (AD) is a heterogeneous disease that presents a broad spectrum of clinicopathologic profiles. To date, objective subtyping of AD independent of disease progression using brain imaging has been required. Our study aimed to extract representations of unique brain metabolism patterns different from disease progression to identify objective subtypes of AD. METHODS A total of 3620 FDG brain PET images with AD, mild cognitive impairment (MCI), and cognitively normal (CN) were obtained from the ADNI database from 1607 participants at enrollment and follow-up visits. A conditional variational autoencoder model was trained on FDG brain PET images of AD patients with the corresponding condition of AD severity scor...
Accumulating evidence suggests that Alzheimer's disease (AD) is heterogenous and can be classified i...
Alzheimer Disease (AD) is defined by amyloid (A) and tau (T) pathologies, with T better correlated t...
Purpose: The purpose of this study is to develop and validate a 3D deep learning model that predicts...
Previous research has described distinct subtypes of Alzheimer's disease (AD) based on the differenc...
Alzheimer’s Disease Neuroimaging Initiative.[Background] Previous research has described distinct su...
While advances in Deep Learning have improved the state-of-the-art for classification of neurologica...
International audienceAlzheimer's Disease (AD), one of the main causes of death in elderly people, i...
Dementia is broadly characterized by cognitive and psychological dysfunction that significantly impa...
International audienceThe analysis of positron emission tomography (PET) scan image is challenging d...
Statistical methods are increasingly used in the analysis of FDG-PET images for the early diagnosis ...
Statistical methods are increasingly used in the analysis of FDG-PET images for the early diagnosis ...
Alzheimer Disease (AD) is defined by amyloid (A) and tau (T) pathologies, with T better correlated t...
Disentangling biologically distinct subgroups of Alzheimer’s disease (AD) may facilitate a deeper un...
Purpose The purpose of this study is to develop and validate a 3D deep learning model that predicts ...
Purpose: The purpose of this study is to develop and validate a 3D deep learning model that predicts...
Accumulating evidence suggests that Alzheimer's disease (AD) is heterogenous and can be classified i...
Alzheimer Disease (AD) is defined by amyloid (A) and tau (T) pathologies, with T better correlated t...
Purpose: The purpose of this study is to develop and validate a 3D deep learning model that predicts...
Previous research has described distinct subtypes of Alzheimer's disease (AD) based on the differenc...
Alzheimer’s Disease Neuroimaging Initiative.[Background] Previous research has described distinct su...
While advances in Deep Learning have improved the state-of-the-art for classification of neurologica...
International audienceAlzheimer's Disease (AD), one of the main causes of death in elderly people, i...
Dementia is broadly characterized by cognitive and psychological dysfunction that significantly impa...
International audienceThe analysis of positron emission tomography (PET) scan image is challenging d...
Statistical methods are increasingly used in the analysis of FDG-PET images for the early diagnosis ...
Statistical methods are increasingly used in the analysis of FDG-PET images for the early diagnosis ...
Alzheimer Disease (AD) is defined by amyloid (A) and tau (T) pathologies, with T better correlated t...
Disentangling biologically distinct subgroups of Alzheimer’s disease (AD) may facilitate a deeper un...
Purpose The purpose of this study is to develop and validate a 3D deep learning model that predicts ...
Purpose: The purpose of this study is to develop and validate a 3D deep learning model that predicts...
Accumulating evidence suggests that Alzheimer's disease (AD) is heterogenous and can be classified i...
Alzheimer Disease (AD) is defined by amyloid (A) and tau (T) pathologies, with T better correlated t...
Purpose: The purpose of this study is to develop and validate a 3D deep learning model that predicts...