Paraspinal muscle fibre type alterations associated with scoliosis: An old problem revisited with new evidence

被引:135
作者
Mannion A.F. [1 ]
Meier M. [2 ]
Grob D. [1 ]
Müntener M. [2 ]
机构
[1] Spine Unit, Schulthess Clinic, CH 8008 Zürich
[2] Anatomical Institute, Zürich-Irchel University, Zürich
关键词
Erector spinae; Multifidus; Muscle fibre types; Paraspinal muscles; Scoliosis;
D O I
10.1007/s005860050077
中图分类号
学科分类号
摘要
To establish the extent to which the paraspinal muscles are affected in idiopathic scoliosis, samples from patients must be compared with controls of a similar gender and age. To date, insufficient control data has been available for these purposes. The aim of this study was to redress this tissue, in order to identify whether one side of the apex of the scoliotic curve showed greater muscular abnormalities than the other. Bilateral samples of the paraspinal muscles were obtained during surgery from 14 female scoliosis patients, at the apex of the scoliotic curve at T9-T11. Percutaneous muscle biopsy samples were obtained from nine female volunteers, on the left side of the spine at T10. Samples were prepared for routine histochemistry for the identification of muscle fibre types. Fibre size was measured using computerised image analysis. Compared with control muscle, there was a significantly lower proportion of type I (slow-twitch oxidative) fibres in the muscle on the concave side of the scoliotic curve, but no difference on the convex side. The proportion of type IIB (fast-twitch, glycolytic) fibres was higher on both sides of the curve compared with controls, with the effect being significantly more marked on the concave side. The percentage of type IIA (slow-twitch, oxidative-glycolytic) fibres did not differ between the groups, and neither did fibre size (although there was a tendency for the controls to have larger type IIA fibres than the patients). Collectively, the differences in fibre type size and distribution meant that on the concave side the relative area of the muscle occupied by type I fibres was smaller, and on both sides of the curve the relative area occupied by type lib fibres was greater and by type IIA fibres smaller, in comparison with controls. In scoliosis, the spinal musculature is most affected on the concave side of the curve's apex. The muscle adopts a 'faster', or more 'glycolytic' profile, which would be consistent with a reduced low-level tonic activity of the muscle, perhaps consequent to a local change in activity on this side of the spine following progression of the curve. Less marked changes, in the same direction, are also evident on the convex side; these may be the result of general disuse of the paraspinal muscles associated with the spinal deformity.
引用
收藏
页码:289 / 293
页数:4
相关论文
共 24 条
[1]
Billeter R., Weber H., Lutz H., Howald H.M., Myosin types in human skeletal muscle fibers, Histochemistry, 65, pp. 249-259, (1980)
[2]
Brooke M.H., Kaiser K.K., Muscle fibre types: How many and what kind?, Arch Neurol, 23, pp. 369-379, (1970)
[3]
Bylund P., Jonsson E., Dahlberg E., Eriksson E., Muscle fiber types in thoracic erector spinae muscles. Fiber types in idiopathic and other forms of scoliosis, Clin Orthop, 214, pp. 222-228, (1987)
[4]
Chiu J.-C., Morphological studies on the erector spinae muscle in sixty consecutive scoliotic patients, J Jap Orthop Assoc, 62, pp. 1163-1175, (1988)
[5]
Dietrichson P., Coakley J., Smith P.E.M., Griffiths R.D., Helliwell T.R., Edwards R.H., Conchotome and needle percutaneous biopsy of skeletal muscle, J Neurol Neurosurg Psychiatry, 50, pp. 1461-1467, (1987)
[6]
Fidler M.W., Jowett R.L., Troup J.D.G., Histochemical study of the function of multifidus in scoliosis, Scoliosis and Muscle, pp. 184-192, (1974)
[7]
Ford D.M., Bagnall K.M., McFadden K.D., Greenhill B.J., Raso V.J., Paraspinal muscle imbalance in adolescent idiopathic scoliosis, Spine, 9, pp. 373-376, (1984)
[8]
Goldspink G., Scutt A., Loughna P.T., Wells D.J., Jaenicke T., Gerlach G.F., Gene expression in skeletal muscle in response to stretch and force generation, Am J Physiol, 262, (1992)
[9]
Gonyea W.J., Moore-Woodard C., Moseley B., Hollmann M., Wenger D., An evaluation of muscle pathology in idiopathic scoliosis, J Pediatr Orthop, 5, pp. 323-329, (1985)
[10]
Hoppenfeld S., Histochemical findings in paraspinal muscles of patients with idiopathic scoliosis, Scoliosis and Muscle, pp. 113-114, (1974)