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Estimating and Improving Fairness with Adversarial Learning

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arxiv 2103.04243 v2 pith:TBBCNAMY submitted 2021-03-07 cs.CV cs.AIcs.CY

classification cs.CVcs.AIcs.CY
keywords fairnessadversarialattributesbiasdeepmoduletraininganalysis
verification ladder T0 review T1 audit T2 compute T3 formal
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Fairness and accountability are two essential pillars for trustworthy Artificial Intelligence (AI) in healthcare. However, the existing AI model may be biased in its decision marking. To tackle this issue, we propose an adversarial multi-task training strategy to simultaneously mitigate and detect bias in the deep learning-based medical image analysis system. Specifically, we propose to add a discrimination module against bias and a critical module that predicts unfairness within the base classification model. We further impose an orthogonality regularization to force the two modules to be independent during training. Hence, we can keep these deep learning tasks distinct from one another, and avoid collapsing them into a singular point on the manifold. Through this adversarial training method, the data from the underprivileged group, which is vulnerable to bias because of attributes such as sex and skin tone, are transferred into a domain that is neutral relative to these attributes. Furthermore, the critical module can predict fairness scores for the data with unknown sensitive attributes. We evaluate our framework on a large-scale public-available skin lesion dataset under various fairness evaluation metrics. The experiments demonstrate the effectiveness of our proposed method for estimating and improving fairness in the deep learning-based medical image analysis system.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Enhancing Fairness in Skin Lesion Classification for Medical Diagnosis Using Prune Learning

    cs.CV 2025-08 conditional novelty 5.0 of 10

    A skewness-guided pruning method removes skin-tone-related components in skin lesion classifiers, improving fairness and reducing computational cost.

  2. Evaluating Fairness and Mitigating Bias in Machine Learning: A Novel Technique using Tensor Data and Bayesian Regression

    cs.CV 2025-06 reject novelty 5.0 of 10

    A new annotation-free pipeline converts skin pixels into ITA distributions, measures skin-tone differences with a signed distance, and reweights the loss to reduce the correlation between skin tone and model performance.

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