A Hierarchical Approach to Multi-Event Survival Analysis
Donna Tjandra, Yifei He, Jenna Wiens
Abstract
In multi-event survival analysis, one aims to predict the probability of multiple different events occurring over some time horizon. One typically assumes that the timing of events is drawn from some distribution conditioned on an individual's covariates. However, during training, one does not have access to this distribution, and the natural variation in the observed event times makes the task of survival prediction challenging, on top of the potential interdependence among events. To address this issue, we introduce a novel approach for multi-event survival analysis that models the probability of event occurrence hierarchically at different time scales, using coarse predictions (e.g., monthly predictions) to iteratively guide predictions at finer and finer grained time scales (e.g., daily predictions). We evaluate the proposed approach across several publicly available datasets in terms of both intra-event, inter-individual (global) and intra-individual, inter-event (local) consistency. We show that the proposed method consistently outperforms well-accepted and commonly used approaches to multi-event survival analysis. When estimating survival curves for Alzheimer's disease and mortality, our approach achieves a C-index of 0.91 (95% CI 0.88-0.93) and a local consistency score of 0.97 (95% CI 0.94-0.98) compared to a C-index of 0.75 (95% CI 0.70-0.80) and a local consistency score of 0.94 (95% CI 0.91-0.97) when modeling each event separately. Overall, our approach improves the accuracy of survival predictions by iteratively reducing the original task to a set of nested, simpler subtasks.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 9fc73a5d-4646-42cf-825d-324e0fc051d6Cited by top-tier papers1
Ask how each one uses itRelated papers
- Temporal Label Smoothing for Early Event PredictionHugo Yèche, Alizée Pace, Gunnar Rätsch, Rita KuznetsovaICML 2023 · 16 citations
- When Rigidity Hurts: Soft Consistency Regularization for Probabilistic Hierarchical Time Series ForecastingHarshavardhan Kamarthi, Lingkai Kong, Alexander Rodríguez, Chao Zhang et al.KDD 2023 · 1 citation
- Uncertainty-Calibrated Prediction of Randomly-Timed Biomarker Trajectories with Conformal BandsVasiliki Tassopoulou, Charis J. Stamouli, Haochang Shou, George J. Pappas et al.NeurIPS 2025 · 3 citations
- DeepAlerts: Deep Learning Based Multi-Horizon Alerts for Clinical Deterioration on Oncology Hospital WardsDingwen Li, Patrick G. Lyons, Chenyang Lu, Marin KollefAAAI 2020 · 18 citations
- Deep State-Space Generative Model For Correlated Time-to-Event PredictionsYuan Xue, Denny Zhou, Nan Du, Andrew M. Dai et al.KDD 2020 · 8 citations
