Individualized survival predictions using state space model with longitudinal and survival data

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Abstract

Monitoring disease progression often involves tracking biomarker measurements over time. Joint models (JMs) for longitudinal and survival data provide a framework to explore the relationship between time-varying biomarkers and patients' event outcomes, offering the potential for personalized survival predictions. In this article, we introduce the linear state space dynamic survival model for handling longitudinal and survival data. This model enhances the traditional linear Gaussian state space model by including survival data. It differs from the conventional JMs by offering an alternative interpretation via differential or difference equations, eliminating the need for creating a design matrix. To showcase the model's effectiveness, we conduct a simulation case study, emphasizing its performance under conditions of limited observed measurements. We also apply the proposed model to a dataset of pulmonary arterial hypertension patients, demonstrating its potential for enhanced survival predictions when compared with conventional risk scores.

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Cauchi, M., Mills, A. R., Lawrie, A., Kiely, D. G., & Kadirkamanathan, V. (2024). Individualized survival predictions using state space model with longitudinal and survival data. Journal of the Royal Society Interface, 21(216). https://doi.org/10.1098/rsif.2023.0682

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