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Orthopaedics & Traumatology, Surgery & Research : OTSR|September 5, 2018
Minimally invasive screw fixation is as stable as anterior plating in acetabular T-Type fractures - a biomechanical studyChristopher A Becker, Christian Kammerlander, Adrian Cavalcanti Kußmaul, et al.
Journal of Orthopaedic Surgery and Research|July 31, 2020
Bone defect reconstruction with a novel biomaterial containing calcium phosphate and aluminum oxide reinforcementAlexander M Keppler, Maximilian M Saller, Paolo Alberton, et al.
Journal of Orthopaedic Surgery and Research|September 10, 2020
Correction to: Bone defect reconstruction with a novel biomaterial containing calcium phosphate and aluminum oxide reinforcementAlexander M Keppler, Maximilian M Saller, Paolo Alberton, et al.
Injury|February 9, 2020
Biomechanical stability of sacroiliac screw osteosynthesis with and without cement augmentationEduardo M Suero, Axel Greiner, Christopher A Becker, et al.
Journal of Orthopaedic Surgery and Research|December 29, 2019
Tape suture for stabilization of incomplete posterior pelvic ring fractures-biomechanical analysis of a new minimally invasive treatment for incomplete lateral compression pelvic ring fracturesChristopher Alexander Becker, Adrian Cavalcanti Kussmaul, Eduardo Manuel Suero, et al.
Journal of Computer Assisted Tomography|November 19, 2010
Texture analysis, bone mineral density, and cortical thickness of the proximal femur: fracture risk predictionAna Elvira Rodríguez-Soto, Karl D Fritscher, Benedikt Schuler, et al.
BMC Emergency Medicine|June 17, 2026
Pain has limited predictive value for fractures following falls in older people: insight from a retrospective studyVera Pedersen, Alina Lampart, Rebecca Wania, et al.
Biomedical Engineering Online|March 31, 2019
Modified less invasive anterior subcutaneous fixator for unstable Tile-C-pelvic ring fractures: a biomechanical studyChristopher A Becker, Christian Kammerlander, Adrian Cavalcanti Kußmaul, et al.
International Journal of Molecular Medicine|October 26, 2016
Impact of vitamin E-blended UHMWPE wear particles on the osseous microenvironment in polyethylene particle-induced osteolysisCarl Neuerburg, Theresa Loer, Lena Mittlmeier, et al.
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