Browse > Article

Change in Kinematics of the Spine after Insertion of an Interspinous Spacer for the Treatment of the Lumbar Spinal Stenosis  

Lee H. S. (Department of Biomedical Engineering, Inje University)
Moon S. J. (Department of Biomedical Engineering, Inje University)
Kwon S. Y. (Department of Biomedical Engineering, Inje University)
Jung T. G. (Department of Biomedical Engineering, Inje University)
Shin K. C. (Cheil Orthopaedic Hospital)
Lee K. Y. (Department of Mechanical Engineering, Sejong, University)
Lee S. J. (Department of Biomedical Engineering, Inje University)
Publication Information
Journal of Biomedical Engineering Research / v.26, no.3, 2005 , pp. 151-155 More about this Journal
Abstract
Interspinous spacers have been developed as an alternative surgical treatment for laminectomy or fusion with pedicle screws and rods for the treatment of lumbar spinal stenosis. However, its biomedical efficacies are well not known. In this study, we evaluated kinematic behaviors of the surgical and the adjacent levels before and after inserting interspinous spacers. Three porcine lumbar spines were prepared. On each specimen, an interspinous spacer was inserted at the L4-L5. Flexion-extension moments (0, 2.5, 5.0, 7.5, 10Nm) were applied. A stereophotogrammetric set-up with DLT algorithm was used to assess the three-dimensional motions of the specimen where three markers $({\square}0.8mm)$ were attached to each vertebra. Results showed that extension motion decreased by $15-24\%$ at the surgical level (L4-L5) after insertion of interspinous spacer. At the adjacent levels, the range of motion remained unchanged. In flexion, no significant changes in motion were observed regardless of levels. Therefore, our experimental results demonstrated the interspinous spacer is very effective in limiting the extension motion that may cause narrowing of the spinal canal and vertebral foramen while maintaining kinematic behaviors at the adjacent levels. Further, these results suggested that the use of interspinous spacer may be able to prevent lower back pain at the surgical level and to lower the incidence of degenerative changes at the adjacent levels.
Keywords
Interspinous spacer; Degenerative lumbar spinal stenosis (DLSS); Kinematic; Biomechanics; Range of motion (ROM);
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 G. F. Giles, 'Mechanisms of Neurovascular Compression Within the Spinal and Intervertebral Canals', JMPT, Vol. 23, pp. 107-111, 2000   DOI   PUBMED   ScienceOn
2 Y. Inui, M. Doita, K. Ouchi, M. Tsukuda, N. Fujita, M. Kurosaka, 'Clinical and Radiologic Features of Lumbar Spinal Stenosis and Disc Herniation With Neuropathic Bladder', Spine, 29, pp. 869-873, 2004   DOI   ScienceOn
3 N. Crawford, G. Yamaguchi, C. Dickman, 'Methods for determining spinal flexion/ extension, lateral bending, and axial rotation from marker coordinate data: Analysis and Refinement', Human Movement Science, Vol. 15, pp. 55-78, 1996   DOI   ScienceOn
4 M. M. Panjabi, T. R. Oxland, I. Yamamoto, J. J. Crisco, 'Mechanical Behaviors of the Human Lumbar and Lumbosacral Spine as Shown by Three-Dimensional Load-Displacement Curves', JBJS, Vol. 76, pp. 413-424, 1994   DOI
5 I. Yamamoto, M. M. Panjabi, T. Crisco, T. Oxland, 'Three-Dimensional Movements of the Whole Lumbar Spine and Lumbosacral Joint', Spine, Vol. 14, pp. 1256-1260, 1989   DOI   ScienceOn
6 J. Dickey, G. Damus, D. Bender, 'Comparison of porcine and human lumbar spine flexion mechanics', Vet. Comp. Orthop. Traumatol, Vol. 16, pp. 44-49, 2003
7 D. Lindsey, K. Swanson, P. Fuchs, K. Hsu, J. Zucherman, S. Yerby, 'The effects of an interspinous implant on the kinematic of the instrumented and adjacent levels in the lumbar spine', Spine, Vol. 28, pp. 2192-2197, 2003   DOI   ScienceOn
8 K. Yamashita, J. Hayashi, K. Ohzono, K. Hiroshima, 'Correlation of patient satisfaction with symptom severity and walking ability after surgical treatment for degenerative lumbar spinal stenosis', Spine, Vol. 28, pp. 2477-2481, 2003   DOI   ScienceOn
9 P. Pourcelot, F. Audigie, C. Degueurce, D. Geiger, J. Denoix, 'A method to synchronise cameras using the direct linear transformation technique', J. of Biomechanics, Vol. 33, pp.1751-1754, 2000   DOI   ScienceOn
10 R. Rao, M. Wang, P. Singhal, L. McGray, S. Rao, 'Intradiscal pressure and kinematic behaviour of lumbar spine after bilateral laminotomy and laminectomy', Spine, Vol. 2, pp. 320-326, 2002   DOI   ScienceOn
11 J. Lysack, D. Yen, G. Dumas, 'In vitro flexibility of an experimental pedicle screw and plate instrumentation system on the porcine lumbar spine', Medical Eng. & Phys., Vol. 22, pp. 461-468, 2000   DOI   ScienceOn
12 D. Chow, K. Luk, J. Evans, J. Leong, 'Effects of short anterior lumbar interbody fusion on biomechanics of neighboring unfused segments', Spine, Vol. 21, pp. 549-555, 1996   DOI   ScienceOn