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Published on: August 7, 2017
Encoding Discordance in the Alzheimer's Disease A/T/N Framework
Lauren Nicole DeLong1,2, Yasamin Salimi3, Helena Balabin4,5
1The School of Informatics, University of Edinburgh, EH8 9AB, Edinburgh, United Kingdom.
Introduction:
The biomarker-based amyloid/ tau/ neurodegeneration (A/T/N) framework has become a popular staging method for Alzheimer's disease (AD) research. Previous studies use the framework either as a rule-based or data-driven approach but typically sacrifice either adaptivity or interpretability.
Methods:
We present an interpretable, hybrid method, called Neurosymodal Data Fusion, for predicting incident AD in the ADNI dataset. Specifically, we encode the A/T/N framework as a logic program, where the input biomarker features are extracted by one or more neural networks.
Results:
Our pipeline predicted four-year incident AD with a sensitivity of up to 0.84. Additionally, our models learned scores for each A/T/N profile, denoting relative importances to model predictions. These scores also indicated that empirically-derived cut-off values for the A and T criteria might be uninformative for the ADNI data.
Discussion:
Our pipeline provides a novel way to use the A/T/N framework that could potentially improve early AD screening years before clinical manifestations.
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