English

Shifting to Machine Supervision: Annotation-Efficient Semi and Self-Supervised Learning for Automatic Medical Image Segmentation and Classification

Computer Vision and Pattern Recognition 2024-05-20 v6 Artificial Intelligence

Abstract

Advancements in clinical treatment are increasingly constrained by the limitations of supervised learning techniques, which depend heavily on large volumes of annotated data. The annotation process is not only costly but also demands substantial time from clinical specialists. Addressing this issue, we introduce the S4MI (Self-Supervision and Semi-Supervision for Medical Imaging) pipeline, a novel approach that leverages advancements in self-supervised and semi-supervised learning. These techniques engage in auxiliary tasks that do not require labeling, thus simplifying the scaling of machine supervision compared to fully-supervised methods. Our study benchmarks these techniques on three distinct medical imaging datasets to evaluate their effectiveness in classification and segmentation tasks. Notably, we observed that self supervised learning significantly surpassed the performance of supervised methods in the classification of all evaluated datasets. Remarkably, the semi-supervised approach demonstrated superior outcomes in segmentation, outperforming fully-supervised methods while using 50% fewer labels across all datasets. In line with our commitment to contributing to the scientific community, we have made the S4MI code openly accessible, allowing for broader application and further development of these methods.

Keywords

Cite

@article{arxiv.2311.10319,
  title  = {Shifting to Machine Supervision: Annotation-Efficient Semi and Self-Supervised Learning for Automatic Medical Image Segmentation and Classification},
  author = {Pranav Singh and Raviteja Chukkapalli and Shravan Chaudhari and Luoyao Chen and Mei Chen and Jinqian Pan and Craig Smuda and Jacopo Cirrone},
  journal= {arXiv preprint arXiv:2311.10319},
  year   = {2024}
}

Comments

Seventeen pages (incl. references), five figures, and one table. Accepted and published in Scientific Reports 14.1 (2024): 10820

R2 v1 2026-06-28T13:23:58.801Z