Abstract
Bovine caudal motion segments were used to investigate the loss of load-bearing ability of the intervertebral disc (IVD) under both quasi-static and cyclic compressive loading combined with torsion and flexion. While the response of the disc to both compressive hyper-flexion and hyper-torsion has been previously investigated much less is known about their individual and combined influence on compressive failure. Eighty motion segments dissected from 41 bovine tails were subjected to quasi-static and cyclic compression with added components of flexion and torsion. The four different combinations of flexion and torsion were 0° torsion/0° flexion, 10° torsion/15° flexion, 10° torsion/0° flexion and 0° torsion/15° flexion. Quasi-static compression failed to show any significant difference among the different combinations of torsion and flexion for failure stress, failure strain and compressive tangent modulus. Cyclic compression indicated a significant influence of torsion in reducing the disc's load-bearing ability. Cyclic loading provides a more sensitive tool for the assessment of potentially damaging mechanical parameters for the IVD.
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CITATION STYLE
Schechtman, H., Robertson, P. A., & Broom, N. D. (2012). Quasi-static and cyclic compressive loading studies of the intervertebral disc with combined flexion and torsion. Revista Brasileira de Engenharia Biomédica, 28(4), 311–318. https://doi.org/10.4322/rbeb.2012.038
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