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成人脊柱畸形患者的功能障碍性脊柱旁肌肉会导致脊柱负荷增加。

Dysfunctional paraspinal muscles in adult spinal deformity patients lead to increased spinal loading.

机构信息

Department of Mechanical Engineering, University of British Columbia, Vancouver, BC, Canada.

ICORD, Blusson Spinal Cord Centre, 3rd Floor, 818 West 10th Avenue, Vancouver, BC, V5Z 1M9, Canada.

出版信息

Eur Spine J. 2022 Sep;31(9):2383-2398. doi: 10.1007/s00586-022-07292-x. Epub 2022 Jul 16.

Abstract

PURPOSE

Decreased spinal extensor muscle strength in adult spinal deformity (ASD) patients is well-known but poorly understood; thus, this study aimed to investigate the biomechanical and histopathological properties of paraspinal muscles from ASD patients and predict the effect of altered biomechanical properties on spine loading.

METHODS

68 muscle biopsies were collected from nine ASD patients at L4-L5 (bilateral multifidus and longissimus sampled). The biopsies were tested for muscle fiber and fiber bundle biomechanical properties and histopathology. The small sample size (due to COVID-19) precluded formal statistical analysis, but the properties were compared to literature data. Changes in spinal loading due to the measured properties were predicted by a lumbar spine musculoskeletal model.

RESULTS

Single fiber passive elastic moduli were similar to literature values, but in contrast, the fiber bundle moduli exhibited a wide range beyond literature values, with 22% of 171 fiber bundles exhibiting very high elastic moduli, up to 20 times greater. Active contractile specific force was consistently less than literature, with notably 24% of samples exhibiting no contractile ability. Histological analysis of 28 biopsies revealed frequent fibro-fatty replacement with a range of muscle fiber abnormalities. Biomechanical modelling predicted that high muscle stiffness could increase the compressive loads in the spine by over 500%, particularly in flexed postures.

DISCUSSION

The histopathological observations suggest diverse mechanisms of potential functional impairment. The large variations observed in muscle biomechanical properties can have a dramatic influence on spinal forces. These early findings highlight the potential key role of the paraspinal muscle in ASD.

摘要

目的

成人脊柱畸形(ASD)患者脊柱伸肌力量减弱是众所周知的,但知之甚少;因此,本研究旨在研究 ASD 患者的脊柱旁肌肉的生物力学和组织病理学特性,并预测生物力学特性改变对脊柱负荷的影响。

方法

从 9 名 ASD 患者的 L4-L5 采集了 68 个肌肉活检(双侧多裂肌和最长肌取样)。对活检进行了肌肉纤维和纤维束生物力学特性和组织病理学测试。由于 COVID-19,样本量小(由于 COVID-19),无法进行正式的统计分析,但将这些特性与文献数据进行了比较。通过腰椎肌骨骼模型预测了由于测量特性引起的脊柱负荷变化。

结果

单纤维被动弹性模量与文献值相似,但相反,纤维束模量的范围很宽,超出了文献值,171 个纤维束中有 22%表现出非常高的弹性模量,高达 20 倍以上。主动收缩比力始终小于文献值,其中 24%的样本没有收缩能力。对 28 个活检的组织学分析显示,频繁出现纤维脂肪替代,伴有多种肌肉纤维异常。生物力学模型预测,肌肉僵硬度增加会使脊柱的压缩负荷增加 500%以上,尤其是在弯曲的姿势下。

讨论

组织病理学观察表明存在多种潜在功能障碍的机制。肌肉生物力学特性的大变化会对脊柱力产生巨大影响。这些早期发现突出了脊柱旁肌肉在 ASD 中的潜在关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8723/9288260/357d1782764b/586_2022_7292_Fig1_HTML.jpg

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