Effects of backward bending on lumbar intervertebral discs - Relevance to physical therapy treatments for low back pain

被引:86
作者
Adams, MA
May, S
Freeman, BJC
Morrison, HP
Dolan, P
机构
[1] Univ Bristol, Dept Anat, Bristol BS2 8EJ, Avon, England
[2] Walton Hosp, Chesterfield, England
[3] Queens Med Ctr, Nottingham NG7 2UH, England
关键词
intervertebral disc; in vitro; manual therapy; mechanics; pain; posture; pressure;
D O I
10.1097/00007632-200002150-00007
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Study Design. Mechanical testing of cadaveric motion segments. Objectives. To test the hypothesis that backward bending of the lumbar spine can reduce compressive stresses within lumbar intervertebral discs. Summary of Background Data. Lumbar extension affects the distribution of compressive stress inside normal cadaveric discs, but little is known about its effect on mechanically disrupted and degenerated discs. Methods. Nineteen lumbar motion segments (mean donor age, 48 years) were subjected to complex mechanical loading to simulate the following postures: moderate: lumbar flexion, 2 degrees of extension, 4 degrees of extension, and the neutral:position (no bending). The distribution of compressive stress within the disc matrix was measured in each posture by pulling a miniature pressure transducer along the midsagittal diameter of the disc. Stress profiles were repeated after a mechanical treatment that was intended to simulate severe disc degeneration in vivo. Results. The "degeneration" treatment reduced pressure in the nucleus pulposus and generated stress concentrations within the anulus, in a manner similar to that found in severely degenerated discs in vivo. When all discs were considered together, 2 degrees of extension increased the maximum compressive stress within the posterior anulus by an average of 16%, compared with the neutral posture. The size of localized stress peaks within the posterior anulus was increased by 43% (P = 0.02). In 4 degrees of extension, changes observed between 0 degrees and 2 degrees were usually exaggerated. In contrast, moderate flexion tended to equalize the distribution of compressive stress. In 7 of the 19 discs, 2 degrees of lumbar extension decreased maximum compressive stress in the posterior anulus relative to the neutral posture by up to 40%. Linear regression showed that lumbar extension tended to reduce stresses in the :posterior anulus in those discs that exhibited the lowest compressive stresses in the neutral posture (P = 0.003; R-2 = 41%). Conclusions. The posterior anulus can shielded by the neural arch in extended postures, but the effect is variable. This may explain why extension exercises can relieve low back pain in some patients.
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页码:431 / 437
页数:7
相关论文
共 51 条
[1]  
Adams M A, 1993, Eur Spine J, V1, P214, DOI 10.1007/BF00298362
[2]   THE EFFECT OF POSTURE ON THE ROLE OF THE APOPHYSEAL JOINTS IN RESISTING INTERVERTEBRAL COMPRESSIVE FORCES [J].
ADAMS, MA ;
HUTTON, WC .
JOURNAL OF BONE AND JOINT SURGERY-BRITISH VOLUME, 1980, 62 (03) :358-362
[3]   'Stress' distributions inside intervertebral discs - The effects of age and degeneration [J].
Adams, MA ;
McNally, DS ;
Dolan, P .
JOURNAL OF BONE AND JOINT SURGERY-BRITISH VOLUME, 1996, 78B (06) :965-972
[4]   Sustained loading generates stress concentrations in lumbar intervertebral discs [J].
Adams, MA ;
McMillan, DW ;
Green, TP ;
Dolan, P .
SPINE, 1996, 21 (04) :434-438
[5]   MECHANICAL TESTING OF THE SPINE - AN APPRAISAL OF METHODOLOGY, RESULTS, AND CONCLUSIONS [J].
ADAMS, MA .
SPINE, 1995, 20 (19) :2151-2156
[6]   POSTURE AND THE COMPRESSIVE STRENGTH OF THE LUMBAR SPINE [J].
ADAMS, MA ;
MCNALLY, DS ;
CHINN, H ;
DOLAN, P .
CLINICAL BIOMECHANICS, 1994, 9 (01) :5-14
[7]   RECENT ADVANCES IN LUMBAR SPINAL MECHANICS AND THEIR CLINICAL-SIGNIFICANCE [J].
ADAMS, MA ;
DOLAN, P .
CLINICAL BIOMECHANICS, 1995, 10 (01) :3-19
[8]  
ADAMS MA, 2000, IN PRESS SPINE
[9]  
ADAMS N, 1993, PHYSIOTHERAPY, V79, P86
[10]  
ALEXANDER AH, 1991, ORTHOP T, V15, P674