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软组织特性对脊柱侧弯中脊柱柔韧性的影响:支点弯曲的生物力学模拟

The effect of soft tissue properties on spinal flexibility in scoliosis: biomechanical simulation of fulcrum bending.

作者信息

Little J Paige, Adam Clayton J

机构信息

Paediatric Spine Research Group, Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Australia.

出版信息

Spine (Phila Pa 1976). 2009 Jan 15;34(2):E76-82. doi: 10.1097/BRS.0b013e31818ad584.


DOI:10.1097/BRS.0b013e31818ad584
PMID:19139657
Abstract

STUDY DESIGN: Biomechanical analysis of the scoliotic thoracolumbar spine and ribcage using a three-dimensional finite element model. OBJECTIVE: To explore how the mechanical properties of spinal ligaments and intervertebral discs affect coronal curve flexibility in the fulcrum bending test. SUMMARY OF BACKGROUND DATA: Preoperative coronal curve flexibility assessment is of key importance in the surgical planning process for scoliosis correction. The fulcrum bending radiograph is one flexibility assessment technique which has been shown to be highly predictive of potential curve correction using posterior surgery; however, little is known about the extent to which soft tissue structures govern spinal flexibility. METHODS: CT-derived spinal anatomy for a 14-year-old female adolescent idiopathic scoliosis patient was used to develop the three-dimensional finite element model. Physiologic loading conditions representing the gravitational body weight forces acting on the spine when the patient lies on their side over the fulcrum bolster were simulated. Initial mechanical properties for the spinal soft tissues were derived from existing literature. In 6 separate analyses, the disc collagen fiber and ligament stiffness values were reduced by 10%, 25%, and 40% respectively, and the effects of reduced tissue stiffness on fulcrum flexibility were assessed by comparison with the initial model. Finally, the effect of discectomy on fulcrum flexibility was simulated for thoracic levels T5-T12. RESULTS: Reducing disc collagen fiber stiffness resulted in a greater change in segmental rotations in the fulcrum bending test than reducing ligament stiffness. However, reductions of up to 40% in disc collagen fiber stiffness and ligament stiffness produced no clinically measurable increase in fulcrum flexibility. By contrast, after removal of the discs, the simulated fulcrum flexibility increased by more than 80% compared with the initial case. CONCLUSION: Homogeneous reduction in either the disc collagen fiber or ligament stiffness had minimal influence on scoliotic curve reducibility. However, discectomy simulation shows that the intervertebral discs are of critical importance in determining spinal flexibility.

摘要

研究设计:使用三维有限元模型对脊柱侧凸的胸腰椎和胸廓进行生物力学分析。 目的:探讨脊柱韧带和椎间盘的力学特性如何影响支点弯曲试验中的冠状面曲线柔韧性。 背景数据总结:术前冠状面曲线柔韧性评估在脊柱侧凸矫正手术规划过程中至关重要。支点弯曲X线片是一种柔韧性评估技术,已被证明对后路手术的潜在曲线矫正具有高度预测性;然而,关于软组织结构在多大程度上决定脊柱柔韧性知之甚少。 方法:利用一名14岁女性青少年特发性脊柱侧凸患者的CT衍生脊柱解剖结构建立三维有限元模型。模拟了代表患者侧卧在支点垫上时作用于脊柱的重力的生理负荷条件。脊柱软组织的初始力学特性来自现有文献。在6项单独分析中,椎间盘胶原纤维和韧带刚度值分别降低10%、25%和40%,并通过与初始模型比较评估组织刚度降低对支点柔韧性的影响。最后,模拟了T5-T12胸椎节段椎间盘切除对支点柔韧性的影响。 结果:在支点弯曲试验中,降低椎间盘胶原纤维刚度比降低韧带刚度导致节段旋转变化更大。然而,椎间盘胶原纤维刚度和韧带刚度降低高达40%时,支点柔韧性在临床上没有可测量的增加。相比之下,椎间盘切除后,模拟的支点柔韧性与初始情况相比增加了80%以上。 结论:椎间盘胶原纤维或韧带刚度的均匀降低对脊柱侧凸曲线的可还原性影响最小。然而,椎间盘切除模拟表明,椎间盘在决定脊柱柔韧性方面至关重要。

相似文献

[1]
The effect of soft tissue properties on spinal flexibility in scoliosis: biomechanical simulation of fulcrum bending.

Spine (Phila Pa 1976). 2009-1-15

[2]
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[3]
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[4]
Biomechanical characteristics of different regions of the human spine: an in vitro study on multilevel spinal segments.

Spine (Phila Pa 1976). 2009-12-15

[5]
Stress analysis of the interface between cervical vertebrae end plates and the Bryan, Prestige LP, and ProDisc-C cervical disc prostheses: an in vivo image-based finite element study.

Spine (Phila Pa 1976). 2009-7-1

[6]
Strength of the cervical spine in compression and bending.

Spine (Phila Pa 1976). 2007-7-1

[7]
Biomechanical simulations of scoliotic spine correction due to prone position and anaesthesia prior to surgical instrumentation.

Clin Biomech (Bristol). 2005-11

[8]
The influence of slouching and lumbar support on iliolumbar ligaments, intervertebral discs and sacroiliac joints.

Clin Biomech (Bristol). 2004-5

[9]
Analysis of simulated single ligament transection on the mechanical behaviour of a lumbar functional spinal unit.

Biomed Tech (Berl). 2004

[10]
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Spine (Phila Pa 1976). 2004-1-15

引用本文的文献

[1]
A Feasibility Study of a Controlled Standing Fulcrum Side-Bending Test in Adolescent Idiopathic Scoliosis.

J Clin Med. 2024-12-20

[2]
Histopathology of the Intervertebral Disc of , a Fish Model of Accelerated Aging.

Biology (Basel). 2023-10-3

[3]
The importance of curve severity, type and instrumentation strategy in the surgical correction of adolescent idiopathic scoliosis: an in silico clinical trial on 64 cases.

Sci Rep. 2021-1-19

[4]
Preventing Fusion Mass Shift Avoids Postoperative Distal Curve Adding-on in Adolescent Idiopathic Scoliosis.

Clin Orthop Relat Res. 2017-5

[5]
Experimental validation of a patient-specific model of orthotic action in adolescent idiopathic scoliosis.

Eur Spine J. 2016-10

[6]
Biomechanics of thoracolumbar junction vertebral fractures from various kinematic conditions.

Med Biol Eng Comput. 2013-10-29

[7]
An FE investigation simulating intra-operative corrective forces applied to correct scoliosis deformity.

Scoliosis. 2013-5-16

[8]
Towards determining soft tissue properties for modelling spine surgery: current progress and challenges.

Med Biol Eng Comput. 2011-12-25

[9]
Intervertebral disc changes with angulation, compression and reduced mobility simulating altered mechanical environment in scoliosis.

Eur Spine J. 2011-6-26

[10]
Coronal plane segmental flexibility in thoracic adolescent idiopathic scoliosis assessed by fulcrum-bending radiographs.

Eur Spine J. 2010-2-26

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