Skip to main content
Top
Published in: BMC Musculoskeletal Disorders 1/2002

Open Access 01-12-2002 | Research article

Biomechanical evaluation of immediate stability with rectangular versus cylindrical interbody cages in stabilization of the lumbar spine

Authors: Dilip K Sengupta, SMH Mehdian, Robert C Mulholland, John K Webb, Donna D Ohnmeiss

Published in: BMC Musculoskeletal Disorders | Issue 1/2002

Login to get access

Abstract

Background

Recent cadaver studies show stability against axial rotation with a cylindrical cage is marginally superior to a rectangular cage. The purpose of this biomechanical study in cadaver spine was to evaluate the stability of a new rectangular titanium cage design, which has teeth similar to the threads of cylindrical cages to engage the endplates.

Methods

Ten motion segments (five L2-3, five L4-5) were tested. From each cadaver spine, one motion segment was fixed with a pair of cylindrical cages (BAK, Sulzer Medica) and the other with paired rectangular cages (Rotafix, Corin Spinal). Each specimen was tested in an unconstrained state, after cage introduction and after additional posterior translaminar screw fixation. The range of motion (ROM) in flexion-extension, lateral bending, and rotation was tested in a materials testing machine, with +/- 5 Nm cyclical load over 10 sec per cycle; data from the third cycle was captured for analysis.

Results

ROM in all directions was significantly reduced (p < 0.05) with both types of cages. There was no significant difference in reduction of ROM in flexion-extension (p = 0.6) and rotation (p = 0.92) between the two cage groups, but stability in lateral bending was marginally superior with the rectangular cages (p = 0.11). Additional posterior fixation further reduced the ROM significantly (p < 0.05) in most directions in both cage groups, but did not show any difference between the cage groups.

Conclusions

There was no significant difference in immediate stability in any direction between the threaded cylindrical cage and the new design of the rectangular cage with endplate teeth.
Appendix
Available only for authorised users
Literature
1.
go back to reference Ramani P, Singhania BK: Comparison of settlement of disc height in PLIF with and without metallic implants. In: Proc 7th International ICLFS Meeting; Budapest, Hungary. 1995 Ramani P, Singhania BK: Comparison of settlement of disc height in PLIF with and without metallic implants. In: Proc 7th International ICLFS Meeting; Budapest, Hungary. 1995
2.
go back to reference Dennis S, Watkins R, Landaker S, Dillin W, Springer D: Comparison of disc space heights after anterior lumbar interbody fusion. Spine. 1989, 14: 876-878.CrossRefPubMed Dennis S, Watkins R, Landaker S, Dillin W, Springer D: Comparison of disc space heights after anterior lumbar interbody fusion. Spine. 1989, 14: 876-878.CrossRefPubMed
3.
go back to reference Butts M, Kuslich S, Bechtold J: Biomechanical analysis of a new method for spinal interbody fixation. In: Advances in bioengineering. Edited by: Erdman A. 1987, New York: The American Society of Mechanical Engineers, 95-96. Butts M, Kuslich S, Bechtold J: Biomechanical analysis of a new method for spinal interbody fixation. In: Advances in bioengineering. Edited by: Erdman A. 1987, New York: The American Society of Mechanical Engineers, 95-96.
4.
go back to reference Lund T, Oxland TR, Jost B, Cripton P, Grassmann S, Etter C, Nolte LP: Interbody cage stabilisation in the lumbar spine: biomechanical evaluation of cage design, posterior instrumentation and bone density. J Bone Joint Surg Br. 1998, 80: 351-359. 10.1302/0301-620X.80B2.7693.CrossRefPubMed Lund T, Oxland TR, Jost B, Cripton P, Grassmann S, Etter C, Nolte LP: Interbody cage stabilisation in the lumbar spine: biomechanical evaluation of cage design, posterior instrumentation and bone density. J Bone Joint Surg Br. 1998, 80: 351-359. 10.1302/0301-620X.80B2.7693.CrossRefPubMed
5.
go back to reference Montesano PX, Magerl F, Jacobs RR, Jackson RP, Rauschning W: Translaminar facet joint screws. Orthopedics. 1988, 11: 1393-1397.PubMed Montesano PX, Magerl F, Jacobs RR, Jackson RP, Rauschning W: Translaminar facet joint screws. Orthopedics. 1988, 11: 1393-1397.PubMed
6.
go back to reference Chiba M, McLain RF, Yerby SA, Moseley TA, Smith TS, Benson DR: Short-segment pedicle instrumentation. Biomechanical analysis of supplemental hook fixation. Spine. 1996, 21: 288-294. 10.1097/00007632-199602010-00006.CrossRefPubMed Chiba M, McLain RF, Yerby SA, Moseley TA, Smith TS, Benson DR: Short-segment pedicle instrumentation. Biomechanical analysis of supplemental hook fixation. Spine. 1996, 21: 288-294. 10.1097/00007632-199602010-00006.CrossRefPubMed
7.
go back to reference Sandhu HS, Turner S, Kabo JM, Kanim LE, Liu D, Nourparvar A, Delamarter RB, Dawson EG: Distractive properties of a threaded interbody fusion device. An in vivo model. Spine. 1996, 21: 1201-1210. 10.1097/00007632-199605150-00013.CrossRefPubMed Sandhu HS, Turner S, Kabo JM, Kanim LE, Liu D, Nourparvar A, Delamarter RB, Dawson EG: Distractive properties of a threaded interbody fusion device. An in vivo model. Spine. 1996, 21: 1201-1210. 10.1097/00007632-199605150-00013.CrossRefPubMed
8.
go back to reference Brodke DS, Dick JC, Kunz DN, McCabe R, Zdeblick TA: Posterior lumbar interbody fusion. A biomechanical comparison, including a new threaded cage. Spine. 1997, 22: 26-31. 10.1097/00007632-199701010-00005.CrossRefPubMed Brodke DS, Dick JC, Kunz DN, McCabe R, Zdeblick TA: Posterior lumbar interbody fusion. A biomechanical comparison, including a new threaded cage. Spine. 1997, 22: 26-31. 10.1097/00007632-199701010-00005.CrossRefPubMed
9.
go back to reference Brantigan JW, Steffee AD, Geiger JM: A carbon fiber implant to aid interbody lumbar fusion. Mechanical testing. Spine. 1991, 16: S277-282.CrossRefPubMed Brantigan JW, Steffee AD, Geiger JM: A carbon fiber implant to aid interbody lumbar fusion. Mechanical testing. Spine. 1991, 16: S277-282.CrossRefPubMed
10.
go back to reference Jost B, Cripton PA, Lund T, Oxland TR, Lippuner K, Jaeger P, Nolte LP: Compressive strength of interbody cages in the lumbar spine: the effect of cage shape, posterior instrumentation and bone density. Eur Spine J. 1998, 7: 132-141. 10.1007/s005860050043.CrossRefPubMedPubMedCentral Jost B, Cripton PA, Lund T, Oxland TR, Lippuner K, Jaeger P, Nolte LP: Compressive strength of interbody cages in the lumbar spine: the effect of cage shape, posterior instrumentation and bone density. Eur Spine J. 1998, 7: 132-141. 10.1007/s005860050043.CrossRefPubMedPubMedCentral
11.
go back to reference Tsantrizos A, Andreou A, Aebi M, Steffen T: Biomechanical stability of five stand-alone anterior lumbar interbody fusion constructs. Eur Spine J. 2000, 9: 14-22. 10.1007/s005860050003.CrossRefPubMedPubMedCentral Tsantrizos A, Andreou A, Aebi M, Steffen T: Biomechanical stability of five stand-alone anterior lumbar interbody fusion constructs. Eur Spine J. 2000, 9: 14-22. 10.1007/s005860050003.CrossRefPubMedPubMedCentral
12.
go back to reference Rapoff AJ, Ghanayem AJ, Zdeblick TA: Biomechanical comparison of posterior lumbar interbody fusion cages. Spine. 1997, 22: 2375-2379. 10.1097/00007632-199710150-00010.CrossRefPubMed Rapoff AJ, Ghanayem AJ, Zdeblick TA: Biomechanical comparison of posterior lumbar interbody fusion cages. Spine. 1997, 22: 2375-2379. 10.1097/00007632-199710150-00010.CrossRefPubMed
13.
go back to reference Oxland TR, Hoffer Z, Nydegger T, Rathonyi GC, Nolte LP: A comparative biomechanical investigation of anterior lumbar interbody cages: central and bilateral approaches. J Bone Joint Surg Am. 2000, 82: 383-393. 10.1302/0301-620X.82B3.9887.CrossRefPubMed Oxland TR, Hoffer Z, Nydegger T, Rathonyi GC, Nolte LP: A comparative biomechanical investigation of anterior lumbar interbody cages: central and bilateral approaches. J Bone Joint Surg Am. 2000, 82: 383-393. 10.1302/0301-620X.82B3.9887.CrossRefPubMed
14.
go back to reference Tencer AF, Hampton D, Eddy S: Biomechanical properties of threaded inserts for lumbar interbody spinal fusion. Spine. 1995, 20: 2408-2414.CrossRefPubMed Tencer AF, Hampton D, Eddy S: Biomechanical properties of threaded inserts for lumbar interbody spinal fusion. Spine. 1995, 20: 2408-2414.CrossRefPubMed
15.
go back to reference Hitchon PW, Goel V, Rogge T, Dooris A, Drake J, Torner J: Spinal stability with anterior or posterior ray threaded fusion cages. J Neurosurg. 2000, 93: 102-108.PubMed Hitchon PW, Goel V, Rogge T, Dooris A, Drake J, Torner J: Spinal stability with anterior or posterior ray threaded fusion cages. J Neurosurg. 2000, 93: 102-108.PubMed
16.
go back to reference Tsantrizos A, Baramki HG, Zeidman S, Steffen T: Segmental stability and compressive strength of posterior lumbar interbody fusion implants. Spine. 2000, 25: 1899-1907. 10.1097/00007632-200008010-00007.CrossRefPubMed Tsantrizos A, Baramki HG, Zeidman S, Steffen T: Segmental stability and compressive strength of posterior lumbar interbody fusion implants. Spine. 2000, 25: 1899-1907. 10.1097/00007632-200008010-00007.CrossRefPubMed
17.
go back to reference Rathonyi GC, Oxland TR, Gerich U, Grassmann S, Nolte LP: The role of supplemental translaminar screws in anterior lumbar interbody fixation: a biomechanical study. Eur Spine J. 1998, 7: 400-407. 10.1007/s005860050097.CrossRefPubMedPubMedCentral Rathonyi GC, Oxland TR, Gerich U, Grassmann S, Nolte LP: The role of supplemental translaminar screws in anterior lumbar interbody fixation: a biomechanical study. Eur Spine J. 1998, 7: 400-407. 10.1007/s005860050097.CrossRefPubMedPubMedCentral
18.
go back to reference Weiner BK, Fraser RD: Spine update lumbar interbody cages. Spine. 1998, 23: 634-640. 10.1097/00007632-199803010-00020.CrossRefPubMed Weiner BK, Fraser RD: Spine update lumbar interbody cages. Spine. 1998, 23: 634-640. 10.1097/00007632-199803010-00020.CrossRefPubMed
19.
go back to reference Oxland TR, Lund T: Biomechanics of stand-alone cages and cages in combination with posterior fixation: a literature review. Eur Spine J. 2000, 9 (Suppl 1): S95-101.CrossRefPubMed Oxland TR, Lund T: Biomechanics of stand-alone cages and cages in combination with posterior fixation: a literature review. Eur Spine J. 2000, 9 (Suppl 1): S95-101.CrossRefPubMed
20.
go back to reference Guyer DW, Yuan HA, Werner FW, Frederickson BE, Murphy D: Biomechanical comparison of seven internal fixation devices for the lumbosacral junction. Spine. 1987, 12: 569-573.CrossRefPubMed Guyer DW, Yuan HA, Werner FW, Frederickson BE, Murphy D: Biomechanical comparison of seven internal fixation devices for the lumbosacral junction. Spine. 1987, 12: 569-573.CrossRefPubMed
21.
go back to reference Heggeness MH, Esses SI: Translaminar facet joint screw fixation for lumbar and lumbosacral fusion. A clinical and biomechanical study. Spine. 1991, 16: S266-269.CrossRefPubMed Heggeness MH, Esses SI: Translaminar facet joint screw fixation for lumbar and lumbosacral fusion. A clinical and biomechanical study. Spine. 1991, 16: S266-269.CrossRefPubMed
22.
go back to reference Panjabi MM: Biomechanical evaluation of spinal fixation devices: I. A conceptual framework. Spine. 1988, 13: 1129-1134.CrossRefPubMed Panjabi MM: Biomechanical evaluation of spinal fixation devices: I. A conceptual framework. Spine. 1988, 13: 1129-1134.CrossRefPubMed
Metadata
Title
Biomechanical evaluation of immediate stability with rectangular versus cylindrical interbody cages in stabilization of the lumbar spine
Authors
Dilip K Sengupta
SMH Mehdian
Robert C Mulholland
John K Webb
Donna D Ohnmeiss
Publication date
01-12-2002
Publisher
BioMed Central
Published in
BMC Musculoskeletal Disorders / Issue 1/2002
Electronic ISSN: 1471-2474
DOI
https://doi.org/10.1186/1471-2474-3-23

Other articles of this Issue 1/2002

BMC Musculoskeletal Disorders 1/2002 Go to the issue