Quantitative evaluation of facet deflection, stiffness, strain and failure load during simulated cervical spine trauma
Author:
Publisher
Elsevier BV
Subject
Rehabilitation,Biomedical Engineering,Orthopedics and Sports Medicine,Biophysics
Reference39 articles.
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3. Biomechanics of the cervical spine 4: major injuries;Cusick;Clin. Biomech.,2002
4. Cyron, B.M., Hutton, W.C., 1978. The fatigue strength of the lumbar neural arch in spondylolysis. The Journal of Bone and Joint Surgery 60-B, 234–238.
5. Cyron, B.M., Hutton, W.C., Troup, J.D., 1976. Spondylolytic fractures. The Journal of Bone and Joint Surgery 58-B, 462-466.
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1. Facet deflection and strain are dependent on axial compression and distraction in C5–C7 spinal segments under constrained flexion;JOR SPINE;2024-07-25
2. Kinematics, kinetics, and new insights from a contemporary analysis of the first experiments to produce cervical facet dislocations in the laboratory;JOR SPINE;2024-05-27
3. Applied use of biomechanical measurements from human tissues for the development of medical skills trainers: a scoping review;JBI Evidence Synthesis;2023-09-19
4. The Effect of Axial Compression and Distraction on Cervical Facet Cartilage Apposition During Shear and Bending Motions;Annals of Biomedical Engineering;2022-03-07
5. Estimating Facet Joint Apposition with Specimen-Specific Computer Models of Subaxial Cervical Spine Kinematics;Annals of Biomedical Engineering;2021-11-17
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