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腰椎前凸的改变会改变伸肌的作用。

Changes in lumbar lordosis modify the role of the extensor muscles.

作者信息

McGill S M, Hughson R L, Parks K

机构信息

Faculty of Applied Health Sciences, Department of Kinesiology, Occupational Biomechanics Laboratory, University of Waterloo, Waterloo, N2L 3G1, Ontario, Canada.

出版信息

Clin Biomech (Bristol). 2000 Dec;15(10):777-80. doi: 10.1016/s0268-0033(00)00037-1.

Abstract

STUDY DESIGN

Fiber angles of longissimus thoracis and iliocostalis lumborum at L3 were documented in vivo, using high resolution ultrasound, with the lumbar spine in neutral curve and when fully flexed.

OBJECTIVES

To evaluate the effect of changes in lumbar curvature on the mechanics of these muscles.

BACKGROUND

Full flexion modifies the failure tolerance of the lumbar spine, determines the load distribution among muscle and passive tissues, and modulates the types of tissue damage that occur. Related to this issue are the possible changes in muscle line of action with full flexion which changes the ability of the spine to support shear loads.

METHODS

Nine normal men and 5 normal women were scanned in three positions: (1) an upright standing posture; (2) with the hips flexed to approximately 30 degrees and the spine fully flexed; (3) hips flexed but the spine returned to a neutral curvature.

RESULTS

Mean longissimus/iliocostalis fiber angles for upright standing, hips flexed-spine flexed, and hips flexed-spine neutral lordosis were 25. 7 degrees, 10.7 degrees and 28.3 degrees, respectively.

CONCLUSIONS

Anterior shear load on the lumbar spine has been recently shown to be highly related to the risk of reporting a back injury. Bending forward allowing the spine to fully flex changes the line of action of the largest lumbar extensor muscles compromising their role to support anterior shear forces. Relevance Fiber angles of longissimus thoracis and iliocostalis lumborum were documented with high resolution ultrasound at L3, with the spine in neutral curvature and fully flexed. Full lumbar flexion changes the line of action of these muscle compromising their role to support anterior shear forces on the spine - anterior shear forces have been recently documented to be highly related to the risk of reporting a back injury.

摘要

研究设计

利用高分辨率超声在体内记录L3水平胸最长肌和腰髂肋肌的纤维角度,记录时腰椎处于自然曲度和完全屈曲状态。

目的

评估腰椎曲度变化对这些肌肉力学的影响。

背景

完全屈曲会改变腰椎的失效耐受性,决定肌肉和被动组织之间的负荷分布,并调节所发生的组织损伤类型。与此问题相关的是,完全屈曲时肌肉作用线可能发生变化,这会改变脊柱支撑剪切力的能力。

方法

对9名正常男性和5名正常女性在三个位置进行扫描:(1)直立站立姿势;(2)髋部屈曲约30度且脊柱完全屈曲;(3)髋部屈曲但脊柱恢复到自然曲度。

结果

直立站立、髋部屈曲-脊柱屈曲和髋部屈曲-脊柱自然前凸时,胸最长肌/腰髂肋肌的平均纤维角度分别为25.7度、10.7度和28.3度。

结论

最近研究表明,腰椎的前剪切力与报告背部损伤的风险高度相关。向前弯曲使脊柱完全屈曲会改变最大的腰伸肌的作用线,损害其支撑前剪切力的作用。相关性:利用高分辨率超声记录L3水平胸最长肌和腰髂肋肌的纤维角度,记录时脊柱处于自然曲度和完全屈曲状态。腰椎完全屈曲会改变这些肌肉的作用线,损害其支撑脊柱前剪切力的作用——最近研究表明,前剪切力与报告背部损伤的风险高度相关。

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