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腰椎后柱骨韧带复合体的重要性:改变传统观念的生物力学见解

The importance of the posterior osteoligamentous complex of the lumbar spine: dogma changing biomechanical insights.

作者信息

Jokeit Moritz, Cornaz Frédéric, Schader Jana F, Harshbarger Cooper L, Calek Anna-Katharina, Jecklin Sascha, Snedeker Jess G, Farshad Mazda, Widmer Jonas

机构信息

Spine Biomechanics, Department of Orthopedics, Balgrist University Hospital, University of Zurich, Lengghalde 5, Zurich, CH-8008, Switzerland.

Institute for Biomechanics, ETH Zurich, Zurich, Switzerland.

出版信息

Eur Spine J. 2025 Feb 6. doi: 10.1007/s00586-025-08690-7.

Abstract

BACKGROUND

During full flexion of the spine, the paraspinal muscles are largely inactive. This suggests that passive structures like the posterior osteoligamentous complex (POLC), consisting of interspinous and supraspinous ligaments and the spinous processes, play a key role in spinal stability and protection of the spinal column. The POLC, however, is often resected or damaged during spinal decompression surgeries, whereas the biomechanical implications of this resection or damage are not yet fully understood.

METHODS

A stepwise reduction study was performed on three fresh frozen cadaveric torsi (aged 30-78 years) using a custom setup which only allows sagittal plane motion. After preloading and locking in full flexion, the posterior lumbar structures were gradually resected in the following order: Skin, fascia, musculature, facet joints, ligamentum flavum, posterior ligamentous complex, and posterior longitudinal ligaments. Load cells measured force increase on the fixation frame after each resection step.

RESULTS

The load increased sequentially with each resection, demonstrating load transfer from the passive structures onto the fixation frame. The POLC, including the supraspinous and interspinous ligaments at L2-L5, accounted for 69 - 74% of the measured passive load resistance in full flexion, representing the largest contribution. Facet joints with their capsules contributed 10-18%, while muscular contributions were negligible (< 2%).

CONCLUSION

The experiment indicates that the POLC is the primary passive stabilizer of the fully flexed lumbar spine. Surgical resection of this structure can redistribute loads and increase stresses on remaining spinal tissues, potentially leading to spinal instability, accelerated degeneration, and poor clinical long-term outcomes.

摘要

背景

在脊柱完全屈曲时,椎旁肌基本处于不活动状态。这表明,由棘间韧带、棘上韧带和棘突组成的后骨韧带复合体(POLC)等被动结构在脊柱稳定性及脊柱保护中起着关键作用。然而,在脊柱减压手术中,POLC常被切除或损伤,而这种切除或损伤对生物力学的影响尚未完全明确。

方法

对三具新鲜冷冻尸体躯干(年龄30 - 78岁)进行逐步减压研究,使用仅允许矢状面运动的定制装置。在预加载并锁定于完全屈曲状态后,按以下顺序逐步切除腰椎后部结构:皮肤、筋膜、肌肉组织、小关节、黄韧带、后韧带复合体及后纵韧带。在每个切除步骤后,测力传感器测量固定框架上的力增加情况。

结果

随着每次切除,负荷依次增加,表明负荷从被动结构转移至固定框架。POLC,包括L2 - L5节段的棘上韧带和棘间韧带,在完全屈曲时占所测被动负荷阻力的69 - 74%,贡献最大。带有关节囊的小关节贡献10 - 18%,而肌肉的贡献可忽略不计(<2%)。

结论

该实验表明,POLC是完全屈曲腰椎的主要被动稳定器。手术切除该结构会使负荷重新分布,并增加剩余脊柱组织的应力,可能导致脊柱不稳定、加速退变及不良的临床长期预后。

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