English

Tumor Detection, Segmentation and Classification Challenge on Automated 3D Breast Ultrasound: The TDSC-ABUS Challenge

Image and Video Processing 2025-01-28 v1 Computer Vision and Pattern Recognition

Abstract

Breast cancer is one of the most common causes of death among women worldwide. Early detection helps in reducing the number of deaths. Automated 3D Breast Ultrasound (ABUS) is a newer approach for breast screening, which has many advantages over handheld mammography such as safety, speed, and higher detection rate of breast cancer. Tumor detection, segmentation, and classification are key components in the analysis of medical images, especially challenging in the context of 3D ABUS due to the significant variability in tumor size and shape, unclear tumor boundaries, and a low signal-to-noise ratio. The lack of publicly accessible, well-labeled ABUS datasets further hinders the advancement of systems for breast tumor analysis. Addressing this gap, we have organized the inaugural Tumor Detection, Segmentation, and Classification Challenge on Automated 3D Breast Ultrasound 2023 (TDSC-ABUS2023). This initiative aims to spearhead research in this field and create a definitive benchmark for tasks associated with 3D ABUS image analysis. In this paper, we summarize the top-performing algorithms from the challenge and provide critical analysis for ABUS image examination. We offer the TDSC-ABUS challenge as an open-access platform at https://tdsc-abus2023.grand-challenge.org/ to benchmark and inspire future developments in algorithmic research.

Keywords

Cite

@article{arxiv.2501.15588,
  title  = {Tumor Detection, Segmentation and Classification Challenge on Automated 3D Breast Ultrasound: The TDSC-ABUS Challenge},
  author = {Gongning Luo and Mingwang Xu and Hongyu Chen and Xinjie Liang and Xing Tao and Dong Ni and Hyunsu Jeong and Chulhong Kim and Raphael Stock and Michael Baumgartner and Yannick Kirchhoff and Maximilian Rokuss and Klaus Maier-Hein and Zhikai Yang and Tianyu Fan and Nicolas Boutry and Dmitry Tereshchenko and Arthur Moine and Maximilien Charmetant and Jan Sauer and Hao Du and Xiang-Hui Bai and Vipul Pai Raikar and Ricardo Montoya-del-Angel and Robert Marti and Miguel Luna and Dongmin Lee and Abdul Qayyum and Moona Mazher and Qihui Guo and Changyan Wang and Navchetan Awasthi and Qiaochu Zhao and Wei Wang and Kuanquan Wang and Qiucheng Wang and Suyu Dong},
  journal= {arXiv preprint arXiv:2501.15588},
  year   = {2025}
}