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Explainable machine learning framework to predict personalized physiological aging

delete2023-06-10
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OA
AI
D
David Bernard
E
Emmanuel Doumard
I
Isabelle Ader
P
Philippe Kémoun
J
Jean‐Christophe Pagès
A
Anne Galinier
S
Sylvain Cussat‐Blanc
F
Félix Furger
L
Luigi Ferrucci
J
Julien Aligon
C
Cyrille Delpierre
L
Luc Pénicaud
P
Paul Monsarrat
L
Louis Casteilla *
DOI:10.1111/acel.13872delete
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摘要

摘要

En 中文
Attaining personalized healthy aging requires accurate monitoring of physiological changes and identifying subclinical markers that predict accelerated or delayed aging. Classic biostatistical methods most rely on supervised variables to estimate physiological aging and do not capture the full complexity of inter-parameter interactions. Machine learning (ML) is promising, but its black box nature eludes direct understanding, substantially limiting physician confidence and clinical usage. Using a broad population dataset from the National Health and Nutrition Examination Survey (NHANES) study including routine biological variables and after selection of XGBoost as the most appropriate algorithm, we created an innovative explainable ML framework to determine a Personalized physiological age (PPA). PPA predicted both chronic disease and mortality independently of chronological age. Twenty-six variables were sufficient to predict PPA. Using SHapley Additive exPlanations (SHAP), we implemented a precise quantitative associated metric for each variable explaining physiological (i.e., accelerated or delayed) deviations from age-specific normative data. Among the variables, glycated hemoglobin (HbA1c) displays a major relative weight in the estimation of PPA. Finally, clustering profiles of identical contextualized explanations reveal different aging trajectories opening opportunities to specific clinical follow-up. These data show that PPA is a robust, quantitative and explainable ML-based metric that monitors personalized health status. Our approach also provides a complete framework applicable to different datasets or variables, allowing precision physiological age estimation.
Keyword:
artificial intelligence
biological age
Explainability
healthy aging
machine learning
personalized medicine
physiological age
Rejuvenative therapy
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Aging Cell 封面图
Aging Cell
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centre national de la recherche scientifique (cnrs)
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U
universite toulouse iii - paul sabatier
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U
universite de toulouse
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