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Mutually Improved Endoscopic Image Synthesis and Landmark Detection in Unpaired Image-to-Image Translation., , , , , , и . IEEE J. Biomed. Health Informatics, 26 (1): 127-138 (2022)Mitral Valve Quantification at a Glance - Flattening Patient-Specific Valve Geometry., , , , , , , и . Bildverarbeitung für die Medizin, стр. 296-301. Springer Vieweg, (2019)Flexible and comprehensive patient-specific mitral valve silicone models with chordae tendineae made from 3D-printable molds., , , , , и . Int. J. Comput. Assist. Radiol. Surg., 14 (7): 1177-1186 (2019)An ex-vivo and in-vitro dynamic simulator for surgical and transcatheter mitral valve interventions., , , , , , , , , и 4 other автор(ы). Int. J. Comput. Assist. Radiol. Surg., 19 (3): 411-421 (марта 2024)Comprehensive patient-specific information preprocessing for cardiac surgery simulations., , , , , , , и . Int. J. Comput. Assist. Radiol. Surg., 11 (6): 1051-1059 (2016)Improving Surgical Training Phantoms by Hyperrealism: Deep Unpaired Image-to-Image Translation from Real Surgeries., , , , и . MICCAI (1), том 11070 из Lecture Notes in Computer Science, стр. 747-755. Springer, (2018)Flexible and Comprehensive Patient-Specific Mitral Valve Silicone Models with Chordae Tendinae Made From 3D-Printable Molds., , , , , и . CoRR, (2019)Mitral valve flattening and parameter mapping for patient-specific valve diagnosis., , , , , , , и . Int. J. Comput. Assist. Radiol. Surg., 15 (4): 617-627 (2020)Comparing calibration approaches for 3D ultrasound probes., , , , , и . Int. J. Comput. Assist. Radiol. Surg., 4 (2): 203-213 (2009)Comparison of Depth Estimation Setups from Stereo Endoscopy and Optical Tracking for Point Measurements., , , , , , , , , и . Bildverarbeitung für die Medizin, стр. 160-165. Springer, (2022)