Peter J. Laz
Affiliations: | Mechanical Engineering | University of Denver, Denver, CO, United States |
Area:
Mechanical Engineering, Biomechanics BiophysicsGoogle:
"Peter Laz"
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Publications
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Andreassen TE, Laz PJ, Erdemir A, et al. (2023) Deciphering the "Art" in Modeling and Simulation of the Knee Joint: Assessing Model Calibration Workflows and Outcomes. Journal of Biomechanical Engineering. 1-35 |
Rooks NB, Schneider MTY, Erdemir A, et al. (2021) Deciphering the "Art" in Modeling and Simulation of the Knee Joint: Variations in Model Development. Journal of Biomechanical Engineering |
Myers CA, Fitzpatrick CK, Huff DN, et al. (2020) Development and calibration of a probabilistic finite element hip capsule representation. Computer Methods in Biomechanics and Biomedical Engineering. 1-10 |
Ali AA, Clary CW, Smoger LM, et al. (2020) Computational framework for population-based evaluation of TKR-implanted patellofemoral joint mechanics. Biomechanics and Modeling in Mechanobiology |
Myers CA, Laz PJ, Shelburne KB, et al. (2019) Simulated hip abductor strengthening reduces peak joint contact forces in patients with total hip arthroplasty. Journal of Biomechanics |
Erdemir A, Besier TF, Halloran JP, et al. (2019) Deciphering the "Art" in Modeling and Simulation of the Knee Joint: Overall Strategy. Journal of Biomechanical Engineering. 141 |
Burton WS, Sintini I, Chavarria JM, et al. (2019) Assessment of scapular morphology and bone quality with statistical models. Computer Methods in Biomechanics and Biomedical Engineering. 1-11 |
Conrad BP, Amos M, Sintini I, et al. (2019) Statistical shape modelling describes anatomic variation in the foot Footwear Science. 11: S203-S205 |
Sintini I, Burton WS, Sade P, et al. (2018) Investigating gender and ethnicity differences in proximal humeral morphology using a statistical shape model. Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society |
Myers CA, Laz PJ, Shelburne KB, et al. (2018) The impact of hip implant alignment on muscle and joint loading during dynamic activities. Clinical Biomechanics (Bristol, Avon). 53: 93-100 |