Comparative Morphometry of L4 Vertebrae: Comparison of Large Animal Models for the Human Lumbar Spine
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[1] S. Boonen,et al. Interspecies differences in bone composition, density, and quality: potential implications for in vivo bone research. , 1998, Endocrinology.
[2] H. Malluche,et al. Animal models for the study of bone loss after cessation of ovarian function. , 1993, Bone.
[3] R Barth,et al. Evaluation of bone‐grafting materials in a new canine segmental spinal fusion model , 1993, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[4] W. Lauerman,et al. Vertebrodiatasis Experimental Lengthening of the Juvenile Goat Spine , 1993, Spine.
[5] D. Bradford,et al. In Vivo Facet Joint Loading of the Canine Lumbar Spine , 1992, Spine.
[6] B. T. Field,et al. A biomechanical study of intrapeduncular screw fixation in the lumbosacral spine. , 1986, Clinical orthopaedics and related research.
[7] I. Stokes,et al. Intersegmental Spinal Flexibility with Lumbosacral Instrumentation: An In Vitro Biomechanical Investigation , 1990, Spine.
[8] J. Moran,et al. A Morphometric Study of Human Lumbar and Selected Thoracic Vertebrae , 1987, Spine.
[9] M H Krag,et al. Morphometry of the Thoracic and Lumbar Spine Related to Transpedicular Screw Placement for Surgical Spinal Fixation , 1988, Spine.
[10] Pathomechanical Analysis of Thoracolumbar Burst Fracture Reduction: A Calf Spine Model , 1993, Spine.
[11] B. Digiovanni,et al. Anterior Extension of the Thoracic Vertebral Bodies in Scheuermann's Kyphosis: An Anatomic Study , 1989, Spine.
[12] T A Zdeblick,et al. Quantitative Histologic Study of the Influence of Anterior Spinal Instrumentation and Biodegradable Polymer on Lumbar Interbody Fusion After Corpectomy; A Canine Model , 1992, Spine.
[13] D. Allan,et al. Vertebral end‐plate failure in porcine‐and bovine models of spinal fracture instrumentation , 1990, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[14] F. M. Carter,et al. The Mechanical Properties of the Canine Lumbar Disc and Motion Segment , 1992, Spine.
[15] L. Claes,et al. Anatomy of the sheep spine and its comparison to the human spine , 1997, The Anatomical record.
[16] J. Moran,et al. Transpedicular screw fixation , 1989, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[17] T N Bernard,et al. Pedicle Diameter Determined by Computed Tomography: Its Relevance to Pedicle Screw Fixation in the Lumbar Spine , 1992, Spine.
[18] M M Panjabi,et al. Thoracic Human Vertebrae Quantitative Three‐Dimensional Anatomy , 1991, Spine.
[19] M M Panjabi,et al. Human Lumbar Vertebrae: Quantitative Three-Dimensional Anatomy , 1992, Spine.
[20] L. Wiltse,et al. Anatomic Analysis of Pedicle Cortical and Cancellous Diameter as Related to Screw Size , 1989, Spine.
[21] G R Fernie,et al. An anatomical comparison of the human and bovine thoracolumbar spine , 1986, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[22] G. Onik,et al. Percutaneous lumbar diskectomy using a new aspiration probe: porcine and cadaver model. , 1985, Radiology.
[23] M. Ripani,et al. Morphometry of the lumbar vertebrae. An anatomic study in two caucasoid ethnic groups. , 1983, Clinical orthopaedics and related research.
[24] B Latimer,et al. Vertebral Body and Posterior Element Morphology: The Normal Spine in Middle Life , 1988, Spine.
[25] J. Lumsden. Clinical Biochemistry of Domestic Animals. , 1998 .
[26] A. Valdevit,et al. Characteristics of pullout failure in conical and cylindrical pedicle screws after full insertion and back-out. , 2001, The spine journal : official journal of the North American Spine Society.