Biblio
Progress in Robot Assisted Fracture Reduction. Video-Proceedings - IEEE, International Conference on Robotics and Automation.
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2004. Robot assisted fracture reduction – a cadaver study. 5th Annual Meeting of CAOS International.
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2005. Robot assisted fracture reduction - A preliminary study in the femur shaft. 6th European Trauma Society.
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2004. Robot assisted fracture reduction – Future or phantasm? Küntscher Society: Osteosynthese International.
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2005. Robot assisted reduction of femur shaft fractures based on intraoperative 3D Imaging. CURAC 2006, 5. Jahrestagung der Gesellschaft für Computer- und Roboterassistierte Chirurgie.
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2006. Robot Guided Water Jet Cutting to Assist Osteotomies of Human Bones. Video-Proceedings - IEEE, International Conference on Robotics and Automation.
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2014. Robot-assisted displacement osteotomy by the abrasive waterjet - concept and technical realization. WJTA-IMCA Conference and Expo.
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2013. Roboterassistierte Frakturreposition des proximalen Femurs. Deutscher Kongress für Orthopädie und Unfallchirurgie.
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2009. Roboterassistierte Reponierung von Oberschenkelfrakturen. VDE/VDI GMA-Fachausschuss 4.13.
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2008. Roboterassistierte Reposition von Femurschaftfrakturen. 69. Jahrestagung der Deutschen Gesellschaft für Unfallchirurgie.
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2005. Roboterassistierte Umstellungsosteotomie mittels Wasserabrasivstahltechnik. CURAC 2013, 12. Jahrestagung der Gesellschaft für Computer- und Roboterassistierte Chirurgie.
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2012. .
2013. Semiautomatic robotic reduction of femoral shaft fractures with 3D visualization. 7th Annual Meeting of the International Society for Computer Assisted Orthopaedic Surgery.
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2007. Surface-matching can predict dislocation parameters of fracture fragments and might improve alignment in fractures of the femoral shaft. Küntscher Society: Osteosynthese International.
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2005. Surface-matching can predict dislocation parameters of fracture fragments and might improve alignment in fractures of the femoral shaft. 5th Annual Meeting of CAOS International.
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2005. Verringerung der Torsionsdifferenz bei Frakturen des Femurschaftes durch den Einsatz eines neuen auf Flouroskopie basierenden Navigationsmoduls. DGU 2005, 69 Jahrestagung Deutsche Gesellschaft für Unfallchirurgie.
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2005. Vollautomatische Reposition von Femurschaftfrakturen durch ein Robotersystem. 72. Jahrestagung Deutsche Gesellschaft für Unfallchirurgie.
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2008. X-ray based compensation of relative motions for non-invasive robotic reduction of femoral shaft fractures. 18th European Conference on Orthopaedics, the conference of the European Orthopaedic Research Society.
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2010. X-ray based compensation of relative motions for non-invasive surgical navigation (Poster). CARS 2010.
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2010. X-ray based drill guidance to support intramedullary nailing. CURAC 2006, 5. Jahrestagung der Gesellschaft für Computer- und Roboterassistierte Chirurgie.
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2006. 3D Visualized Robot Assisted Reduction of Femoral Shaft Fractures. Technol Health Care. 17(4):337–343.
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2009. Assessment of the accuracy of infrared and electromagnetic navigation using an industrial robot: Which factors are influencing the accuracy of navigation? J Orthop Res. 2011. :1476–1483.
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2011. Development of a fixation device for robot assisted fracture reduction of femoral shaft fractures: a biomechanical study. Technol Health Care. 18:207–216.
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2010. Effect of medial opening wedge high tibial osteotomy on intraarticular knee and ankle contact pressures. Journal of Orthopaedic Research, Wiley. 33:598–604.
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2015. Forces and torques during fracture reduction: Intraoperative measurements in the femur. J Orthop Res. 24:333–338.
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2006.