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A comparison of Bayesian accelerated failure time models with spatially varying coefficients

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arxiv 2002.03251 v1 pith:XR7K5W3D submitted 2020-02-08 stat.AP

classification stat.AP
keywords modelvaryingdataspatiallyacceleratedcoefficientsdifferentfailure
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The accelerated failure time (AFT) model is a commonly used tool in analyzing survival data. In public health studies, data is often collected from medical service providers in different locations. Survival rates from different locations often present geographically varying patterns. In this paper, we focus on the accelerated failure time model with spatially varying coefficients. We compare three types of the priors for spatially varying coefficients. A model selection criterion, logarithm of the pseudo-marginal likelihood (LPML), is developed to assess the fit of AFT model with different priors. Extensive simulation studies are carried out to examine the empirical performance of the proposed methods. Finally, we apply our model to SEER data on prostate cancer in Louisiana and demonstrate the existence of spatially varying effects on survival rates from prostate cancer data.

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