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Updated: Jan 23, 2026

Dendrochronological Dating and Provenancing of String Instruments
Published on: October 6, 2022
Comparative validation of surgical phase recognition, instrument keypoint estimation, and instrument instance
Tobias Rueckert1, David Rauber2, Raphaela Maerkl2
1Regensburg Medical Image Computing (ReMIC), OTH Regensburg, Regensburg, Germany; AKTORmed Robotic Surgery, Neutraubling, Germany; Research Group MITI, TUM University Hospital, School of Medicine and Health, Technical University of Munich, Munich, Germany.
Abstract:
Reliable recognition and localization of surgical instruments in endoscopic video recordings are foundational for a wide range of applications in computer- and robot-assisted minimally invasive surgery (RAMIS), including surgical training, skill assessment, and autonomous assistance. However, robust performance under real-world conditions remains a significant challenge. Incorporating surgical context - such as the current procedural phase - has emerged as a promising strategy to improve robustness and interpretability. To address these challenges, we organized the Surgical Procedure Phase, Keypoint, and Instrument Recognition (PhaKIR) sub-challenge as part of the Endoscopic Vision (EndoVis) challenge at MICCAI 2024. We introduced a novel, multi-center dataset comprising thirteen full-length laparoscopic cholecystectomy videos collected from three distinct medical institutions, with unified annotations for three interrelated tasks: surgical phase recognition, instrument keypoint estimation, and instrument instance segmentation. Unlike existing datasets, ours enables joint investigation of instrument localization and procedural context within the same data while supporting the integration of temporal information across entire procedures. We report results and findings in accordance with the BIAS guidelines for biomedical image analysis challenges. The PhaKIR sub-challenge advances the field by providing a unique benchmark for developing temporally aware, context-driven methods in RAMIS and offers a high-quality resource to support future research in surgical scene understanding.
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