CAOS 2020. The 20th Annual Meeting of the International Society for Computer Assisted Orthopaedic Surgery

68 articles315 pagesPublished: September 26, 2020

Papers

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Keyphrases

3D alignment, 3D pose estimation, 3D printing2, A-mode ultrasound, Accuracy2, acetabular fracture, Additive Manufacturing, alignment, anatomical landmarks, Anterior Pelvic Plane, Arthroplasty, Artificial Intelligence, Artificial Neural Network, Augmented mechanical instrumentation, Augmented Reality3, Automatic landmarks localization, balance, Biomechanical model, Biomechanics2, bone density, Bone Segmentation, C-arm, caos, CAOS augmentation, Central pivot, Classification, clinical outcomes, Component alignment2, Computed Tomography, computer assisted surgery4, computer vision, Computer-assisted orthopaedic surgery4, Computer-assisted orthopedic surgery3, Consultation, conventional TKA, Convolutional Neural Network2, cruciate-retaining, CT2, custom implant, data confidentiality, DDH, deep learning5, deformable registration, depth camera, depth sensor, DICOM-RTV, digital sensors, dislocation, display, femoral head coverage, Femoral roll back, fixation, Fluoroscopy, functional stability2, Gap balance, Generative Adversarial Networks, Geometric Parameter Analysis, HIP2, hip-spine, iliosacral screw insertion, Iliosacral screwing, image processing, imaging, IMD, Impingement2, implant, Implant fixation, in vivo validation, Intraoperative guidance, Intraoperative laxity curve, J-curve, Joint Balance3, joint replacement2, kinematic analysis, kinematics2, knee2, knee function, Knee MRI, knee replacement, knee surgery, landmarking, Laser Powder Bed Fusion, Lateral Decubitus Position, lateral knee., Lattice structures, learning curve, Lewinnek, ligament balancing4, ligament characterization, Ligament Laxity, Ligament tension2, load sensors, long term survivalship, Loosening, Low cost Navigation, Mako3, markerless, Markerless tracking, Measured Resection technique, Measured-resection, Medial pivot, medical robotics, Mid-flexion Instability, Midflexion Balance, Mobile bearing, mobile bearing dislocation, motion capture, Multicenter Trials, Muscle elongation, musculoskeletal model, Navigation6, Navigational TKA, numerical simulation, offset, Opioids, Orthosensor2, Osteochondral Defect Repair, outcome, outcomes2, Patient Specific Implants, Patient Specific Instrument, Patient Specific Instrumentation, Patient Specific Surgical Planning, pedicular screws, pelvic tilt2, pelvis2, Performance, periacetabular osteotomy, point cloud registration, pose estimation2, position control, Pre-operative planning, preferred surgical philosophy, preoperative planning4, Primary implants, Principal Component Analysis, Principle Component Analysis, projector, PROMS3, range of motion2, real-time control, registration4, resection accuracy, Robot assisted TKA, Robotic3, robotic knee arthroplasty, robotic surgery, Robotic TKA, Robotic-Assisted, Robotic-assisted surgery3, Robotic-assisted total hip arthroplasty, Robotic-assisted total knee arthroplasty, Robotics, robotics path planning, RRT algorithm, Safe Zone, Scapula, Secure processing, Segmentation5, sensor, Shoulder Arthroplasty, simulation, size, Soft Tissue Release, Soft-tissue balance, Spinal deformity, Spine surgery, statistical atlas generation, Statistical Shape Model4, stiff spine, subsidence, Surgery Planning Assistance, surgical instruments, surgical navigation, surgical simulation, surgical targeting, surgical training2, THA2, THR, three-dimensional, Tibia first gap balancing, Tibial fracture, tibiofemoral kinematics, time2, Time Synchronization, TKA4, total hip arthroplasty5, Total knee arthropalsty, Total knee arthroplasty23, Total knee arthroplasty (TKA), total knee replacement, Total knee revision, Tracking3, Transfer Learning, two-dimensional, Ultrasound2, Unicompartmental Knee Arthroplasty, User Authentication, Validation, variability, virtual planning