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Survival Mixture Density Networks

About

Survival analysis, the art of time-to-event modeling, plays an important role in clinical treatment decisions. Recently, continuous time models built from neural ODEs have been proposed for survival analysis. However, the training of neural ODEs is slow due to the high computational complexity of neural ODE solvers. Here, we propose an efficient alternative for flexible continuous time models, called Survival Mixture Density Networks (Survival MDNs). Survival MDN applies an invertible positive function to the output of Mixture Density Networks (MDNs). While MDNs produce flexible real-valued distributions, the invertible positive function maps the model into the time-domain while preserving a tractable density. Using four datasets, we show that Survival MDN performs better than, or similarly to continuous and discrete time baselines on concordance, integrated Brier score and integrated binomial log-likelihood. Meanwhile, Survival MDNs are also faster than ODE-based models and circumvent binning issues in discrete models.

Xintian Han, Mark Goldstein, Rajesh Ranganath• 2022

Related benchmarks

TaskDatasetResultRank
Survival PredictionFLCHAIN--
26
Survival AnalysisMETABRIC
D-Calibration Score0.00e+0
17
Survival AnalysisNWTCO--
10
Survival AnalysisCOVID-19 NY
Ctd (Full)68.89
8
Survival AnalysisC4KC-KiTS
Ctd (Full)0.523
8
Survival AnalysisBraTS
Ctd (Full)0.5333
8
Survival AnalysisSynthetic Exponential Distribution
L1 Error of S^0.0155
7
Instantaneous hazard estimationSimulation Study Exponential (test)
L1 Error0.0568
7
Instantaneous hazard estimationSimulation Study Weibull (test)
L1 Error0.0644
7
Instantaneous hazard estimationSimulation Study Gamma (test)
L1 Error0.5646
7
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