Research ArticleBiomechanics
Lumbar Intervertebral Spacer With Cement Augmentation of Endplates and Integrated Screws as a Fixation Device in an Osteoporotic Model: An In Vitro Kinematic and Load-to-Failure Study
Rayshad Oshtory, Jonathan A. Harris, Pavan D. Patel, Belin A. Mirabile and Brandon S. Bucklen
International Journal of Spine Surgery April 2021, 15 (2) 324-333; DOI: https://doi.org/10.14444/8042
Rayshad Oshtory
1Pacific Heights Spine Center, San Francisco, California
MD, MBAJonathan A. Harris
2Musculoskeletal Education and Research Center (MERC), a Division of Globus Medical, Inc, Audubon, Pennsylvania
MSPavan D. Patel
3School of Biomedical Engineering, Science, and Health Systems, Drexel University, Philadelphia, Pennsylvania
BSBelin A. Mirabile
4Department of Aerospace and Mechanical Engineering, University of Notre Dame, Notre Dame, Indiana
BSBrandon S. Bucklen
2Musculoskeletal Education and Research Center (MERC), a Division of Globus Medical, Inc, Audubon, Pennsylvania
PHDIn this issue
Lumbar Intervertebral Spacer With Cement Augmentation of Endplates and Integrated Screws as a Fixation Device in an Osteoporotic Model: An In Vitro Kinematic and Load-to-Failure Study
Rayshad Oshtory, Jonathan A. Harris, Pavan D. Patel, Belin A. Mirabile, Brandon S. Bucklen
International Journal of Spine Surgery Apr 2021, 15 (2) 324-333; DOI: 10.14444/8042
Lumbar Intervertebral Spacer With Cement Augmentation of Endplates and Integrated Screws as a Fixation Device in an Osteoporotic Model: An In Vitro Kinematic and Load-to-Failure Study
Rayshad Oshtory, Jonathan A. Harris, Pavan D. Patel, Belin A. Mirabile, Brandon S. Bucklen
International Journal of Spine Surgery Apr 2021, 15 (2) 324-333; DOI: 10.14444/8042
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