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FastCPH: Efficient Survival Analysis for Neural Networks

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abstract

The Cox proportional hazards model is a canonical method in survival analysis for prediction of the life expectancy of a patient given clinical or genetic covariates -- it is a linear model in its original form. In recent years, several methods have been proposed to generalize the Cox model to neural networks, but none of these are both numerically correct and computationally efficient. We propose FastCPH, a new method that runs in linear time and supports both the standard Breslow and Efron methods for tied events. We also demonstrate the performance of FastCPH combined with LassoNet, a neural network that provides interpretability through feature sparsity, on survival datasets. The final procedure is efficient, selects useful covariates and outperforms existing CoxPH approaches.

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2025 1

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representative citing papers

Spectral Survival Analysis

cs.LG · 2025-05-28 · reject · novelty 5.0

A spectral method for CoxPH survival analysis that computes hazard scores via a Markov chain steady state, enabling deep models to train on ultra-high-dimensional data.

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  • Spectral Survival Analysis cs.LG · 2025-05-28 · reject · none · ref 79 · internal anchor

    A spectral method for CoxPH survival analysis that computes hazard scores via a Markov chain steady state, enabling deep models to train on ultra-high-dimensional data.