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去核对全身振动下小关节接触力的影响。

Influences of denucleation on contact force of facet joints under whole body vibration.

作者信息

Guo L-X, Zhang M, Teo E-C

机构信息

School of Information Science and Engineering, Northeastern University, Shenyang, China.

出版信息

Ergonomics. 2007 Jul;50(7):967-78. doi: 10.1080/00140130701283943.

Abstract

To investigate the influence of the injured disc, frequency, load and damping on the facet contact forces of the low lumbar spine on the condition of whole body vibration, a detailed 3-D nonlinear finite element model was created based on the actual geometrical data of embalmed vertebrae of lumbar spine. The denucleation and facetectomy, together with removal of the capsular ligaments was employed to mimic the injury conditions of lumbar spine after surgery. The compression cyclic force was assumed to mimic the dynamic loads of transport vehicles. The results show that the high frequency vibration might increase both of the value and the vibration amplitude of facet contact forces of the lumbar spine under whole body vibration. The nucleus removal may increase significantly the facet contact forces. Although damping can decrease the vibration amplitude of facet contact forces for intact models, it has less effect on the vibration amplitude of facet contact force for the denucleated models. The denucleation of intervertebral discs is more harmful to the facet articulation on the condition of whole body vibration.

摘要

为研究在全身振动条件下,损伤椎间盘、频率、载荷及阻尼对下腰椎小关节接触力的影响,基于防腐处理的腰椎椎体实际几何数据建立了详细的三维非线性有限元模型。采用髓核摘除术、小关节切除术以及切除关节囊韧带模拟腰椎术后损伤情况。假定压缩循环力模拟运输车辆的动态载荷。结果表明,高频振动可能会增加全身振动条件下腰椎小关节接触力的值及振动幅度。髓核摘除可能会显著增加小关节接触力。虽然阻尼可降低完整模型中小关节接触力的振动幅度,但对髓核摘除模型中小关节接触力的振动幅度影响较小。在全身振动条件下,椎间盘髓核摘除对小关节连接更为有害。

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