Measurement and analyses of the effects of adjacent end plate curvatures on vertebral stresses.
暂无分享,去创建一个
[1] Stephen J. Ferguson,et al. The importance of the endplate for interbody cages in the lumbar spine , 2003, European Spine Journal.
[2] T. Keaveny,et al. Finite Element Modeling of the Human Thoracolumbar Spine , 2003, Spine.
[3] S. Yerby,et al. Comparative Morphometry of L4 Vertebrae: Comparison of Large Animal Models for the Human Lumbar Spine , 2002, Spine.
[4] H Weinans,et al. Osteoporosis Changes the Amount of Vertebral Trabecular Bone at Risk of Fracture but Not the Vertebral Load Distribution , 2001, Spine.
[5] King H. Yang,et al. Load Sharing Within a Human Lumbar Vertebral Body Using the Finite Element Method , 2001, Spine.
[6] A. E. Engin,et al. Viscoelastic Finite-Element Analysis of a Lumbar Motion Segment in Combined Compression and Sagittal Flexion: Effect of Loading Rate , 2000, Spine.
[7] G B Andersson,et al. The influence of lumbar disc height and cross-sectional area on the mechanical response of the disc to physiologic loading. , 1999, Spine.
[8] E Schneider,et al. Structure and Function of Vertebral Trabecular Bone , 1997, Spine.
[9] D. W. Overaker. Micromechanical modeling of open cell structures with application in finite element analysis of vertebral body mechanics , 1997 .
[10] N. Langrana,et al. Role of Ligaments and Facets in Lumbar Spinal Stability , 1995, Spine.
[11] R. Yeasting,et al. Morphology of the Second Cervical Vertebra and the Posterior Projection of the C2 Pedicle Axis , 1995, Spine.
[12] J Mizrahi,et al. Finite‐Element Stress Analysis of the Normal and Osteoporotic Lumbar Vertebral Body , 1993, Spine.
[13] J. Weinstein,et al. The Lumbar Spine , 1990 .
[14] M H Krag,et al. Internal deformations of intact and denucleated human lumbar discs subjected to compression, flexion, and extension loads , 1989, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[15] J. Moran,et al. A Morphometric Study of Human Lumbar and Selected Thoracic Vertebrae , 1987, Spine.
[16] W C Hayes,et al. Variation of lumbar spine stiffness with load. , 1987, Journal of biomechanical engineering.
[17] P Brinckmann,et al. The Influence of Vertebral Body Fracture, Intradiscal Injection, and Partial Discectomy on the Radial Bulge and Height of Human Lumbar Discs , 1985, Spine.
[18] A. M. Ahmed,et al. Some static mechanical properties of the lumbar intervertebral joint, intact and injured. , 1982, Journal of biomechanical engineering.
[19] A. Schultz,et al. Mechanical Properties of Human Lumbar Spine Motion Segments: Influences of Age, Sex, Disc Level, and Degeneration , 1979, Spine.
[20] K. Markolf. Deformation of the thoracolumbar intervertebral joints in response to external loads: a biomechanical study using autopsy material. , 1972, The Journal of bone and joint surgery. American volume.
[21] T. Brown,et al. Some mechanical tests on the lumbosacral spine with particular reference to the intervertebral discs; a preliminary report. , 1957, The Journal of bone and joint surgery. American volume.
[22] W J VIRGIN,et al. Experimental investigations into the physical properties of the intervertebral disc. , 1951, The Journal of bone and joint surgery. British volume.
[23] N. Langrana,et al. A Study on Human, Chimpanzee and Canine Lumbar Vertebral Endplates , 2003 .
[24] T. Keller,et al. Mechanical behavior of the human lumbar spine. II. Fatigue strength during dynamic compressive loading , 1987, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[25] Manohar M. Panjabi,et al. Clinical Biomechanics of the Spine , 1978 .
[26] C HIRSCH,et al. New observations on the mechanical behavior of lumbar discs. , 1954, Acta orthopaedica Scandinavica.