Authors
Sital Dash, Kailas Patil
Published in
Journal of visualized experiments : JoVE. Issue 235. Sep 15, 2026. Epub Sep 15, 2026.
Abstract
Artificial intelligence (AI) is increasingly being adopted as a valuable tool for clinical decision-making, disease prediction, medical diagnosis, and personalized healthcare. However, a lack of transparency, inconsistent implementation of explainable artificial intelligence (XAI) methods, and limited reproducibility remain major barriers to the trustworthy deployment of AI models in clinical settings. This paper proposes a systematic, reproducible, and transparent protocol for developing, evaluating, and interpreting explainable AI models for healthcare applications. The workflow begins with computational environment setup, followed by data acquisition and characterization, preprocessing, feature engineering, model development, hyperparameter optimization, predictive performance evaluation, explainability analysis, statistical validation, and reproducibility assessment. The protocol incorporates XAI methods such as SHapley Additive exPlanations (SHAP), Local Interpretable Model-agnostic Explanations (LIME), Gradient-weighted Class Activation Mapping (Grad-CAM), Integrated Gradients, attention visualization, and counterfactual explanations to generate both global and local model interpretations. The protocol emphasizes several key components, including the preparation of standardized healthcare datasets, the development of stable machine learning models, the evaluation of predictive performance, the generation of clinically relevant explanations, and the statistical assessment of reproducibility across repeated experiments. By integrating model development, explainability, quantitative and qualitative evaluation, statistical validation, and reproducibility assessment into a unified workflow, this protocol provides a comprehensive framework for developing transparent and reproducible AI models for healthcare applications.
PMID:
42747065
Bibliographic data and abstract were imported from PubMed on 16 Sep 2026.
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