2,834
Views
6
CrossRef citations to date
0
Altmetric
Research Article

Spinal biomechanics modeling and finite element analysis of surgical instrument interaction

, , , , , & show all

References

  • González ME, García-Cosamalón J, Cosamalón-Gan I, et al. Biology and mechanobiology of the intervertebral disc. Neurocirugía. 2017;28:135.
  • Peng X, Wang Y, Shi S, et al. Biomechanical analysis of lumbar interbody fusion with an anisotropic hyperelastic model for annulus fibrosis. Arch Appl Mech. 2013;83:579–590.
  • Low AL, Müller-Karger C, Zambrano L. Sensibility analysis of the material properties applied to an intervertebral disc model. Health Care Exchanges. IEEE. INSPEC Accession Number: 13681714. 2013;1–5.
  • Badilatti SD, Christen P, Parkinson I, et al. Load-adaptive bone remodeling simulations reveal osteoporotic microstructural and mechanical changes in whole human vertebrae. J Biomech. 2016;49:3770.
  • Virgin WJ. Experimental investigations into the physical properties of the intervertebral disc. J Bone Joint Surg British. 1951;33-B:607.
  • Brown T, Hansen RJ, Yorra AJ. Some mechanical tests on the lumbosacral spine with particular reference to the intervertebral discs; a preliminary report. J Bone Joint Surg Am Vol. 1957;39:1135–1164.
  • Farfan HF, Cossette JW, Robertson GH, et al. The effects of torsion on the lumbar intervertebral joints: the role of torsion in the production of disc degeneration. J Bone Joint Sur Am Vol. 1970;52:468.
  • Farfan HF, Huberdeau RM, Dubow HI. Lumbar intervertebral disc degeneration: the influence of geometrical features on the pattern of disc degeneration–a post mortem study. J Bone Joint Surg Am Vol. 1972;54:492.
  • Markolf KL. Deformation of the thoracolumbar intervertebral joints in response to external loads: a biomechanical study using autopsy material. J Bone Joint Surg Am Vol. 1972;54:511.
  • Markolf KL, Morris JM. The structural components of the intervertebral disc. A study of their contributions to the ability of the disc to withstand compressive forces. J Bone Joint Surg Am Vol. 1974;56:675.
  • Viviani GR, Ghista DN, Lozada PJ, et al. Biomechanical analysis and simulation of scoliosis surgical correction. Clin Orthop Related Res. 1986;208:40–47.
  • Sonnerup L. Stress and strain in the intervertebral disc in relation to spinal disorders. In: Ghista DN, editor. Osteoartho mechanics. New York: McGraw-Hiu; 1980. p. 27–35.
  • Belytschko T, Kulak RF, Schultz AB, et al. Finite element stress analysis of an intervertebral disc. J Biomech. 1974;7:277.
  • Liu YK, Ray G, Hirsch C. The resistance of the lumbar spine to direct shear. Orthopedic Clin North America. 1975;6:33–49.
  • Furlong DR, Palazotto AN. A finite element analysis of the influence of surgical herniation on the viscoelastic properties of the intervertebral disc. J Biomech. 1983;16:785–795.
  • Zander T, Rohlmann A, Calisse J, et al. Estimation of muscle forces in the lumbar spine during upper-body inclination. Clin Biomech. 2001;16:S73–S80.
  • Rohlmann A, Bauer L, Zander T, et al. Determination of trunk muscle forces for flexion and extension by using a validated finite element model of the lumbar spine and measured in vivo data. J Biomech. 2006;39:981–989.
  • Rohlmann A, Zander T, Schmidt H, et al. Analysis of the influence of disc degeneration on the mechanical behaviour of a lumbar motion segment using the finite element method. J Biomech. 2006;39:2484–2490.
  • Ruberte LM, Natarajan RN, Andersson GB. Influence of single-level lumbar degenerative disc disease on the behaviour of the adjacent segments-a finite element model study. J Biomech. 2009;42:341–348.
  • Goel VK, Monroe BT, Gilbertson LG, et al. Interlaminar shear stresses and laminae separation in a disc. Finite element analysis of the L3-L4 motion segment subjected to axial compressive loads. Spine (Phila Pa 1976). 1995;20:689–698.
  • Shirazi-Adl A, Ahmed AM, Shrivastava SC. Mechanical response of a lumbar motion segment in axial torque alone and combined with compression. Spine (Phila Pa 1976). 1986;11:914–927.
  • Ueno K, Liu YK. A three-dimensional nonlinear finite element model of lumbar intervertebral joint in torsion. J Biomech Eng. 1987;109:200–209.