Intervertebral disc degeneration: an experimental and numerical study using a rabbit model
暂无分享,去创建一个
José Cegoñino | Amaya Pérez del Palomar | Andrea Calvo-Echenique | Laura Correa-Martín | Luciano Bances | J. Cegoñino | A. P. Palomar | A. Calvo-Echenique | L. Bances | L. Correa-Martín
[1] John J Costi,et al. Frequency-Dependent Behavior of the Intervertebral Disc in Response to Each of Six Degree of Freedom Dynamic Loading: Solid Phase and Fluid Phase Contributions , 2008, Spine.
[2] Sally Roberts,et al. Degeneration of the intervertebral disc , 2003, Arthritis research & therapy.
[3] H. Muir,et al. Vertebral osteophyte formation in experimental disc degeneration , 1980 .
[4] M. Schendel,et al. Magnetic Resonance Imaging and Biological Changes in Injured Intervertebral Discs Under Normal and Increased Mechanical Demands , 1996, Spine.
[5] H. Chun,et al. Percutaneous Needle Puncture Technique to Create a Rabbit Model with Traumatic Degenerative Disk Disease. , 2015, World neurosurgery.
[6] T. Vos,et al. Measuring the global burden of low back pain. , 2010, Best practice & research. Clinical rheumatology.
[7] Michael A. Adams,et al. 'Stress' distributions inside intervertebral discs , 1996 .
[8] A. Nerlich,et al. New In Vivo Animal Model to Create Intervertebral Disc Degeneration and to Investigate the Effects of Therapeutic Strategies to Stimulate Disc Regeneration , 2002, Spine.
[9] J. Ralphs,et al. Are animal models useful for studying human disc disorders/degeneration? , 2007, European Spine Journal.
[10] Brent L. Showalter,et al. Comparison of Animal Discs Used in Disc Research to Human Lumbar Disc: Torsion Mechanics and Collagen Content , 2012, Spine.
[11] C. Aubin,et al. Porcine spine finite element model: a complementary tool to experimental scoliosis fusionless instrumentation , 2017, European Spine Journal.
[12] J. Lotz,et al. Compression-induced degeneration of the intervertebral disc: an in vivo mouse model and finite-element study. , 1998, Spine.
[13] W. Lauerman,et al. Age-related disk degeneration: preliminary report of a naturally occurring baboon model. , 1992, Journal of spinal disorders.
[14] A. J. van der Veen,et al. Biomechanical and rheological characterization of mild intervertebral disc degeneration in a large animal model , 2013, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[15] Willie E. Rochefort,et al. Compressive properties of fibrous repair tissue compared to nucleus and annulus. , 2013, Journal of biomechanics.
[16] Harvey E. Smith,et al. Correlations between quantitative T2 and T1ρ MRI, mechanical properties and biochemical composition in a rabbit lumbar intervertebral disc degeneration model , 2016, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[17] Hendrik Schmidt,et al. Is the ovine intervertebral disc a small human one? A finite element model study. , 2013, Journal of the mechanical behavior of biomedical materials.
[18] H. An,et al. Animal models for human disc degeneration. , 2005, The spine journal : official journal of the North American Spine Society.
[19] J. Latour,et al. 2,3-Diphosphoglycerate in arterial and venous blood in normal individuals and in those with respiratory insufficiency. , 1978, Biochemical medicine.
[20] Manohar M. Panjabi,et al. Biomechanical evaluation of the New Zealand white rabbit lumbar spine: a physiologic characterization , 2000, European Spine Journal.
[21] D S McNally,et al. 'Stress' distributions inside intervertebral discs. The effects of age and degeneration. , 1996, The Journal of bone and joint surgery. British volume.
[22] Bing Wang,et al. Injection of AAV2-BMP2 and AAV2-TIMP1 into the nucleus pulposus slows the course of intervertebral disc degeneration in an in vivo rabbit model. , 2012, The spine journal : official journal of the North American Spine Society.
[23] G. Andersson,et al. Influence of single-level lumbar degenerative disc disease on the behavior of the adjacent segments--a finite element model study. , 2009, Journal of biomechanics.
[24] Marius Marusteri,et al. Comparing groups for statistical differences: how to choose the right statistical test? , 2010 .
[25] T. Smit,et al. Rheological characterization of the nucleus pulposus and dense collagen scaffolds intended for functional replacement , 2009, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[26] B. van Rietbergen,et al. Moderately degenerated lumbar motion segments: Are they truly unstable? , 2016, Biomechanics and modeling in mechanobiology.
[27] Dawn M Elliott,et al. Comparison of Animal Discs Used in Disc Research to Human Lumbar Disc: Axial Compression Mechanics and Glycosaminoglycan Content , 2008, Spine.
[28] Van C. Mow,et al. Is the Nucleus Pulposus a Solid or a Fluid? Mechanical Behaviors of the Nucleus Pulposus of the Human Intervertebral Disc , 1996, Spine.
[29] Dawn M Elliott,et al. The Effect of Relative Needle Diameter in Puncture and Sham Injection Animal Models of Degeneration , 2008, Spine.
[30] Alejandro F. Frangi,et al. On the Relative Relevance of Subject-Specific Geometries and Degeneration-Specific Mechanical Properties for the Study of Cell Death in Human Intervertebral Disk Models , 2015, Front. Bioeng. Biotechnol..
[31] V K Goel,et al. Effect of Disc Degeneration at One Level on the Adjacent Level in Axial Mode , 1991, Spine.
[32] H. Wilke,et al. Spinal fusion without instrumentation – Experimental animal study , 2017, Clinical biomechanics.
[33] B. Vernon‐roberts,et al. 1990 Volvo Award in Experimental Studies: Anulus Tears and Intervertebral Disc Degeneration: An Experimental Study Using an Animal Model , 1990, Spine.
[34] G. Balian,et al. A Fibronectin Fragment Stimulates Intervertebral Disc Degeneration In Vivo , 2003, Spine.
[35] J. P. Thompson,et al. Preliminary Evaluation of a Scheme for Grading the Gross Morphology of the Human Intervertebral Disc , 1990, Spine.
[36] Guangqian Zhou,et al. Shock Absorbing Function Study on Denucleated Intervertebral Disc with or without Hydrogel Injection through Static and Dynamic Biomechanical Tests In Vitro , 2014, BioMed research international.
[37] B. Vernon‐roberts,et al. 1990 Volvo Award in experimental studies. Anulus tears and intervertebral disc degeneration. An experimental study using an animal model. , 1990 .
[38] W. Hutton,et al. Disc Degeneration in the Rabbit: A Biochemical and Radiological Comparison Between Four Disc Injury Models , 2005, Spine.
[39] H. Wilke,et al. The mechanical response of the lumbar spine to different combinations of disc degenerative changes investigated using randomized poroelastic finite element models , 2011, European Spine Journal.
[40] Lloydine J. Jacobs,et al. An overview of underlying causes and animal models for the study of age‐related degenerative disorders of the spine and synovial joints , 2013, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[41] Fabio Galbusera,et al. The effect of degenerative morphological changes of the intervertebral disc on the lumbar spine biomechanics: a poroelastic finite element investigation , 2011, Computer methods in biomechanics and biomedical engineering.
[42] D. Jin,et al. Establishing a disc degeneration model using computed tomography-guided percutaneous puncture technique in the rabbit. , 2013, The Journal of surgical research.
[43] H. Muir,et al. Vertebral osteophyte formation in experimental disc degeneration. Morphologic and proteoglycan changes over time. , 1980, Arthritis and rheumatism.
[44] J. Cegoñino,et al. A Constitutive Model for the Annulus of Human Intervertebral Disc: Implications for Developing a Degeneration Model and Its Influence on Lumbar Spine Functioning , 2014, J. Appl. Math..
[45] M. Doblaré,et al. An accurate validation of a computational model of a human lumbosacral segment. , 2010, Journal of biomechanics.
[46] G. Andersson,et al. Intradiscal injections of osteogenic protein-1 restore the viscoelastic properties of degenerated intervertebral discs. , 2006, The spine journal : official journal of the North American Spine Society.
[47] K. Chawla,et al. Mechanical Behavior of Materials , 1998 .
[48] Anup A. Gandhi,et al. Sheep cervical spine biomechanics: a finite element study. , 2014, The Iowa orthopaedic journal.
[49] James D. Kang,et al. Needle Puncture in Rabbit Functional Spinal Units Alters Rotational Biomechanics , 2015, Journal of spinal disorders & techniques.
[50] A. E. Espinoza Orías,et al. Biomechanics of intervertebral disk degeneration. , 2011, The Orthopedic clinics of North America.
[51] T. Takala,et al. Collagens in the injured porcine intervertebral disc , 1994, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[52] J. C. Leahy,et al. Viscoelastic properties of the nucleus pulposus of the intervertebral disk in compression , 2001, Journal of materials science. Materials in medicine.
[53] V C Mow,et al. Alterations in the mechanical behavior of the human lumbar nucleus pulposus with degeneration and aging , 1997, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[54] M. Adams,et al. What is Intervertebral Disc Degeneration, and What Causes It? , 2006, Spine.
[55] Lars G Gilbertson,et al. A Slowly Progressive and Reproducible Animal Model of Intervertebral Disc Degeneration Characterized by MRI, X-Ray, and Histology , 2005, Spine.