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Articles

Finite element modeling and static/dynamic validation of thoracolumbar-pelvic segment

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Pages 69-80 | Received 15 Apr 2019, Accepted 27 Nov 2019, Published online: 09 Dec 2019

References

  • Ali K, Divya A, Hoy RW, Goel VK. 2012. Effect of graded facetectomy on biomechanics of Dynesys dynamic stabilization system. Spine. 37:E581–E589.
  • Ayturk UM, Puttlitz CM. 2011. Parametric convergence sensitivity and validation of a finite element model of the human lumbar spine. Comput Methods Biomech Biomed Eng. 14 (8):695–705.
  • Bellini CM, Galbusera F, Raimondi MT, Mineo GV, Brayda-Bruno M. 2007. Biomechanics of the lumbar spine after dynamic stabilization. Clin Spine Sur. 20:423–429.
  • Boccaccio A, Vena P, Gastaldi D, Franzoso G, Pietrabissa R, Pappalettere C. 2008. Finite element analysis of cancellous bone failure in the vertebral body of healthy and osteoporotic subjects. Proc Inst Mech Eng H. 222 (7):1023–1036.
  • Brown T, Hansen RJ, Yorra AJ. 1957. Some mechanical tests on the lumbosacral spine with particular reference to the intervertebral discs: a preliminary report. J Bone Jt Surg. 39 (5):1135–1164.
  • Costi JJ, Stokes IA, Gardner-Morse MG, Iatridis JC. 2008. Frequency-dependent behavior of the intervertebral disc in response to each of six degree of freedom dynamic loading: solid phase and fluid phase contributions. Spine. 33 (16):1731–1738.
  • Denis F. 1983. The three column spine and its significance in the classification of acute thoracolumbar spinal injuries. Spine. 8 (8):817–831.
  • Dreischarf M, Zander T, Bergmann G, Rohlmann A. 2010. A non-optimized follower load path may cause considerable intervertebral rotations. J Biomech. 43 (13):2625–2628.
  • Dvorák J, Panjabi MM, Chang DG, Theiler R, Grob D. 1991. Functional radiographic diagnosis of the lumbar spine. Flexion-extension and lateral bending. Spine. 16:562–571.
  • El-Rich M, Arnoux PJ, Wagnac E, Brunet C, Aubin CE. 2009. Finite element investigation of the loading rate effect on the spinal load-sharing changes under impact conditions. J Biomech. 42 (9):1252–1262.
  • Esses SI, Botsford DJ, Kostuik JP. 1990. Evaluation of surgical treatment for burst fractures. Spine. 15 (7):667–673.
  • Ezquerro F, Simón A, Prado M, Pérez A. 2004. Combination of finite element modeling and optimization for the study of lumbar spine biomechanics considering the 3D thorax–pelvis orientation. Med Eng Phys. 26 (1):11–22.
  • Guan Y, Yoganandan N, Zhang J, Pintar FA, Cusick JF, Wolfla CE, Maiman DJ. 2006. Validation of a clinical finite element model of the human lumbosacral spine. Med Bio Eng Comput. 44 (8):633–641.
  • Guo L-X, Teo E-C, Lee K-K, Zhang Q-H. 2005. Vibration characteristics of the human spine under axial cyclic loads: effect of frequency and damping. Spine. 30 (6):631–637.
  • Guo L-X, Zhang M, Teo E-C. 2007. Influences of denucleation on contact force of facet joints under whole body vibration. Ergonomics. 50 (7):967–978.
  • Heuer F, Schmidt H, Wilke H-J. 2008. The relation between intervertebral disc bulging and annular fiber associated strains for simple and complex loading. J Biomech. 41 (5):1086–1094.
  • Jaramillo H, Gomez L, García J. 2015. A finite element model of the L4-L5-S1 human spine segment including the heterogeneity and anisotropy of the discs. Acta Bioeng Biomech. 17 (2):15.
  • Kasra M, Shirazi-Adl A, Drouin G. 1992. Dynamics of human lumbar intervertebral joints. Experimental and finite-element investigations. Spine. 17 (1):93–102.
  • Kong WZ, Goel VK. 2003. Ability of the finite element models to predict response of the human spine to sinusoidal vertical vibration. Spine. 28 (17):1961–1967.
  • Kraemer WJ, Schemitsch EH, Lever J, Mcbroom RJ, Mckee MD, Waddell JP. 1996. Functional outcome of thoracolumbar burst fractures without neurological deficit. J Orthop Trauma. 10 (8):541–544.
  • Lee CK, Kim YE, Lee CS, Hong YM, Jung JM, Goel VK. 2000. Impact response of the intervertebral disc in a finite-element model. Spine. 25 (19):2431–2439.
  • Li JZ, Tan SHN, Cheong CH, Teo EC, Guo LX, Seng KY. 2009. Influence of component injury on dynamic characteristics on the spine using finite element method. Proceedings of the 13th International Conference on Biomedical Engineering; Springer.
  • Liu C-L, Zhong Z-C, Hsu H-W, Shih S-L, Wang S-T, Hung C, Chen C-S. 2011. Effect of the cord pretension of the Dynesys dynamic stabilisation system on the biomechanics of the lumbar spine: a finite element analysis. Eur Spine J. 20 (11):1850–1858.
  • Markolf KL. 1972. Deformation of the thoracolumbar intervertebral joints in response to external loads: a biomechanical study using autopsy material. Am J Bone Jt Surg. 54 (3):511–533.
  • Markolf KL, Morris JM. 1974. The structural components of the intervertebral disc: a study of their contributions to the ability of the disc to withstand compressive forces. J Bone Jt Surg. 56 (4):675–687.
  • Moramarco V, del Palomar AP, Pappalettere C, Doblaré M. 2010. An accurate validation of a computational model of a human lumbosacral segment. J Biomech. 43 (2):334–342.
  • Müller U, Berlemann U, Sledge J, Schwarzenbach O. 1999. Treatment of thoracolumbar burst fractures without neurologic deficit by indirect reduction and posterior instrumentation: bisegmental stabilization with monosegmental fusion. Eur Spine J. 8:284–289.
  • Niosi CA, Wilson DC, Qingan Z, Ory K, Wilson DR, Oxland TR. 2008. The effect of dynamic posterior stabilization on facet joint contact forces: an in vitro investigation. Spine. 33 (1):19.
  • Noailly J, Wilke H-J, Planell JA, Lacroix D. 2007. How does the geometry affect the internal biomechanics of a lumbar spine bi-segment finite element model? Consequences on the validation process. J Biomech. 40 (11):2414–2425.
  • Oxland TR, Lin RM, Panjabi MM. 1992. Three-dimensional mechanical properties of the thoracolumbar junction. J Orthop Res. 10 (4):573–580.
  • Panjabi MM, Goel V, Oxland T, Takata K, Duranceau J, Krag M, Price M. 1992. Human lumbar vertebrae. Quantitative three-dimensional anatomy. Spine. 17 (3):299–306.
  • Panjabi MM, Oxland TR, Yamamoto I, Crisco JJ. 1994. Mechanical behavior of the human lumbar and lumbosacral spine as shown by three-dimensional load-displacement curves. Am J Bone Jt Surg. 76 (3):413–424.
  • Park WM, Kim K, Kim YH. 2013. Effects of degenerated intervertebral discs on intersegmental rotations, intradiscal pressures, and facet joint forces of the whole lumbar spine. Comput Biol Med. 43 (9):1234–1240.
  • Parnianpour M, Nordin M, Kahanovitz N, Frankel V. 1988. The triaxial coupling of torque generation of trunk muscles during isometric exertions and the effect of fatiguing isoinertial movements on the motor output and movement patterns. Spine. 13 (9):982–992.
  • Pearcy M, Portek I, Shepherd J. 1984. Three-dimensional x-ray analysis of normal movement in the lumbar spine. Spine. 9 (3):294–297.
  • Pearcy MJ, Tibrewal SB. 1984. Axial rotation and lateral bending in the normal lumbar spine measured by three-dimensional radiography. Spine. 9 (6):582–587.
  • Pope M, Wilder D, Jorneus L, Broman H, Svensson M, Andersson G. 1987. The response of the seated human to sinusoidal vibration and impact. J Biomech Eng. 109 (4):279–284.
  • Qiu T-X, Tan K-W, Lee V-S, Teo E-C. 2006. Investigation of thoracolumbar T12–L1 burst fracture mechanism using finite element method. Med Eng Phys. 28 (7):656–664.
  • Raj PP. 2008. Intervertebral disc: anatomy-physiology-pathophysiology-treatment. Pain Pract. 8 (1):18–44.
  • Sandover J. 1988. Behaviour of the spine under shock and vibration: a review. Clin Biomech. 3 (4):249–256.
  • Sawa AGU, Crawford NR. 2008. The use of surface strain data and a neural networks solution method to determine lumbar facet joint loads during in vitro spine testing. J Biomech. 41 (12):2647–2653.
  • Schmidt H, Galbusera F, Rohlmann A, Zander T, Wilke HJ. 2012. Effect of multilevel lumbar disc arthroplasty on spine kinematics and facet joint loads in flexion and extension: a finite element analysis. Eur Spine J. 21 (S5):663–674.
  • Schmidt H, Heuer F, Claes L, Wilke H-J. 2008. The relation between the instantaneous center of rotation and facet joint forces—a finite element analysis. Clin Biomech. 23 (3):270–278.
  • Schroeder Y, Huyghe JM, Van Donkelaar CC, Ito K. 2010. A biochemical/biophysical 3D FE intervertebral disc model. Biomech Model Mechanobiol. 9 (5):641–650.
  • Sharma M, Langrana NA, Rodriguez J. 1995. Role of ligaments and facets in lumbar spinal stability. Spine. 20 (8):887.
  • Shirazi-Adl A, Ahmed AM, Shrivastava SC. 1986. Mechanical response of a lumbar motion segment in axial torque alone and combined with compression. Spine. 11 (9):914.
  • Stokes IA, Gardner MM. 2016. A database of lumbar spinal mechanical behavior for validation of spinal analytical models. J Biomech. 49 (5):780–785.
  • Tan SH, Teo EC, Chua HC. 2004. Quantitative three-dimensional anatomy of cervical, thoracic and lumbar vertebrae of Chinese Singaporeans. Eur Spine J. 13 (2):137–146.
  • Wagnac E, Arnoux PJ, Garo A, El-Rich M, Aubin CE. 2011. Calibration of hyperelastic material properties of the human lumbar intervertebral disc under fast dynamic compressive loads. J Biomech Eng. 133 (10):101007.
  • White AA, Panjabi MM. 1990. Clinical biomechanics of the spine. Philadelphia (PA): Lippincott.
  • Wilson DC, Niosi CA, Zhu QA, Oxland TR, Wilson D. 2006. Accuracy and repeatability of a new method for measuring facet loads in the lumbar spine. J Biomech. 39 (2):348–353.
  • Xu M, Yang J, Lieberman IH, Haddas R. 2017. Lumbar spine finite element model for healthy subjects: development and validation. Comput Methods Biomech Biomed Eng. 20 (1):1–15.
  • Yamamoto I, Panjabi MM, Crisco T, Oxland T. 1989. Three-dimensional movements of the whole lumbar spine and lumbosacral joint. Spine. 14 (11):1256–1260.
  • Yoganandan N, Kumaresan S, Voo L, Pintar FA. 1997. Finite element model of the human lower cervical spine: parametric analysis of the C4-C6 unit. J Biomech Eng. 119 (1):87–92.
  • Zander T, Rohlmann A, Bergmann G. 2009. Influence of different artificial disc kinematics on spine biomechanics. Clin Biomech. 24 (2):135–142.

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