Author:Eric StindelPublications |
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| | | | | | | | | Prashant Pandey, Benjamin Hohlmann, Peter Brößner, Ilker Hacihaliloglu, Keiran Barr, Tamas Ungi, Oliver Zettinig, Raphael Prevost, Guillaume Dardenne, Zian Fanti, Wolfgang Wein, Eric Stindel, Fernando Arambula Cosio, Pierre Guy, Gabor Fichtinger, Klaus Radermacher and Antony J. Hodgson | | | | | | | |
Keyphrases3D mesh, 3D pose estimation2, 3D-printed implant, 3D printed model, anatomical landmarks, Anterior Pelvic Plane, Arthroplasty, Augmented Reality, Automated Detection, Automatic landmarks localization, Bone2, Bone Segmentation, challenge, Computer-assisted orthopaedic surgery, connectivity, CT scan, CT scans2, cup orientation, custom implant, custom implants, customized implant, deep learning3, depth camera2, discourse analysis, Discrete Choice Experiment, distal femoral landmark registration, Femoral landmarks, Implant Design, knee2, knee joint, knee joint replacement, knee surgery, Lateral Decubitus Position, Lewinnek, manual localization of anatomical landmarks, markerless2, measurement device, nnU-Net, Orthopaedics2, Orthopedic, patient-specific, Pelvic mobility, Pelvic parameters, pelvic tilt2, pelvis, pose estimation2, Precision, preoperative planning, range of motion, registration2, RGB-D sensors, Safe Zone2, Segmentation2, Statistical Shape Model2, SterEOS, surgeon's point-of-view, surgical instruments, surgical navigation, surgical planning, Technology Usage, THA3, total hip arthroplasty3, Total Knee Arthoplasty, Total knee arthroplasty3, U-Net, Ultrasound. |
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