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Synthesizing Mixed-type Electronic Health Records using Diffusion Models

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arxiv 2302.14679 v2 pith:OQ7B4E7I submitted 2023-02-28 cs.LG cs.CL

classification cs.LGcs.CL
keywords datamodelsprivacydiffusionehrselectronicgansgenerating
verification ladder T0 review T1 audit T2 compute T3 formal
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Electronic Health Records (EHRs) contain sensitive patient information, which presents privacy concerns when sharing such data. Synthetic data generation is a promising solution to mitigate these risks, often relying on deep generative models such as Generative Adversarial Networks (GANs). However, recent studies have shown that diffusion models offer several advantages over GANs, such as generation of more realistic synthetic data and stable training in generating data modalities, including image, text, and sound. In this work, we investigate the potential of diffusion models for generating realistic mixed-type tabular EHRs, comparing TabDDPM model with existing methods on four datasets in terms of data quality, utility, privacy, and augmentation. Our experiments demonstrate that TabDDPM outperforms the state-of-the-art models across all evaluation metrics, except for privacy, which confirms the trade-off between privacy and utility.

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  1. RaMark: Radioactive Watermarking for Generated Tabular Data

    cs.CR 2026-07 conditional novelty 7.0 of 10

    A sinusoidal dependency embedded as part of the tabular distribution remains detectable after generative retraining and data-modification attacks while utility is preserved.

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