HEad and neCK TumOR (HECKTOR) 2025: Benchmark of Segmentation, Diagnosis, and Prognosis in Multimodal PET/CT

June 18, 2026 ยท Grace Period ยท ๐Ÿ› MICCAI 2025

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Authors Numan Saeed, Salma Hassan, Shahad Hardan, Lishan Cai, Xinglong Liang, Moona Mazher, Abdul Qayyum, Yansong Bu, Mengye Lyu, Yue Lin, Mingyuan Meng, Chuanyi Huang, Lisheng Wang, Dalal Chamseddine, Shamimeh Ahrari, Beining Wu, Yifei Chen, Fuyou Mao, Hao Zhang, Baixiang Zhao, Surajit Ray, Muzi Guo, Lei Xiang, Jakob Dexl, Michael Ingrisch, Adrien Depeursinge, Arman Rahmim, Mathieu Hatt, Vincent Andrearczyk, Mohammad Yaqub arXiv ID 2606.20143 Category cs.CV: Computer Vision Citations 0 Venue MICCAI 2025
Abstract
Head and neck cancers (HNC) represent a significant global health burden, with accurate tumor delineation being essential for effective radiotherapy planning. The complexity of the oropharyngeal anatomy, combined with the heterogeneous appearance of tumors on imaging, makes manual segmentation time-intensive and subject to inter-observer variability. Beyond segmentation, predicting long-term clinical outcomes, such as recurrence-free survival (RFS), and determining human papillomavirus (HPV) status from noninvasive imaging, remain challenging yet clinically valuable goals. The HECKTOR 2025 challenge addresses these needs by establishing a comprehensive benchmark for automated HNC analysis using multimodal PET/CT imaging and electronic health records. Building on previous editions (2020-2022), this challenge features an expanded multi-institutional dataset comprising over 1,100 patients from 10 centers worldwide. Participants were tasked with three complementary objectives: (1) segmenting primary gross tumor volumes (GTVp) and metastatic lymph nodes (GTVn), (2) predicting recurrence-free survival, and (3) classifying HPV status. The challenge attracted 35 registered teams, with 15 final submissions evaluated on a held-out test set. Top-performing algorithms achieved a mean Dice similarity coefficient of 0.75 for segmentation, a concordance index of 0.66 for survival prediction, and a balanced accuracy of 0.56 for HPV classification. This paper presents a comprehensive analysis of the submitted methodologies, evaluates their performance across different lesion characteristics, and discusses their implications for clinical translation in automated oncology workflows and decision support systems.
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