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Interpretable temporal graph neural network for prognostic prediction of Alzheimer's disease using longitudinal neuroimaging data

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Author(s)
Kim, MansuKim, JaesikQu, JeffreyHuang, HengLong, QiSohn, Kyung-AhKim, DokyoonShen, Li
Type
Conference Paper
Citation
2021 IEEE International Conference on Bioinformatics and Biomedicine, BIBM 2021, pp.1381 - 1384
Issued Date
2021-12-09
Abstract
Alzheimer's disease (AD) is a progressive neurodegenerative brain disorder characterized by memory loss and cognitive decline. Early detection and accurate prognosis of AD is an important research topic, and numerous machine learning methods have been proposed to solve this problem. However, traditional machine learning models are facing challenges in effectively integrating longitudinal neuroimaging data and biologically meaningful structure and knowledge to build accurate and interpretable prognostic predictors. To bridge this gap, we propose an interpretable graph neural network (GNN) model for AD prognostic prediction based on longitudinal neuroimaging data while embracing the valuable knowledge of structural brain connectivity. In our empirical study, we demonstrate that 1) the proposed model outperforms several competing models (i.e., DNN, SVM) in terms of prognostic prediction accuracy, and 2) our model can capture neuroanatomical contribution to the prognostic predictor and yield biologically meaningful interpretation to facilitate better mechanistic understanding of the Alzheimer's disease. Source code is available at https://github.com/JaesikKim/temporal-GNN. © 2021 IEEE.
Publisher
Institute of Electrical and Electronics Engineers Inc.
Conference Place
US
Virtual, Online
URI
https://scholar.gist.ac.kr/handle/local/34183
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