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Journal of Biomechanics|July 19, 2015
Loads in the hip joint during physically demanding occupational tasks: A motion analysis studyPatrick Aljoscha Varady, Ulrich Glitsch, Peter AugatAge and Ageing|August 24, 2006
The role of cortical bone and its microstructure in bone strengthPeter Augat, Sandra SchorlemmerInternational Journal of Environmental Research and Public Health|October 3, 2019
Exposure-Response Relationship and Doubling Risk Doses-A Systematic Review of Occupational Workload and Osteoarthritis of the HipYi Sun, Annette Nold, Ulrich Glitsch, et al.International Journal of Environmental Research and Public Health|January 27, 2019
Hip Osteoarthritis and Physical Workload: Influence of Study Quality on Risk Estimations-A Meta-Analysis of Epidemiological FindingsYi Sun, Annette Nold, Ulrich Glitsch, et al.Bone|July 1, 2008
Increased cortical remodeling after osteotomy causes posttraumatic osteopeniaPeter Augat, Lutz ClaesAnnual Review of Biomedical Engineering|May 10, 2008
Quantitative imaging of musculoskeletal tissuePeter Augat, Felix EcksteinInjury|June 23, 2018
Evolution of fracture treatment with bone platesPeter Augat, Christian von RüdenInjury|June 25, 2016
Failure of fracture fixation in osteoporotic boneChristian von Rüden, Peter AugatMedical Engineering & Physics|September 27, 2012
An investigation to determine if a single validated density-elasticity relationship can be used for subject specific finite element analyses of human long bonesSebastian Eberle, Michael Göttlinger, Peter AugatJournal of Biomechanics|July 31, 2013
Individual density-elasticity relationships improve accuracy of subject-specific finite element models of human femursSebastian Eberle, Michael Göttlinger, Peter AugatPageof 21