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通过施加纯力矩来模拟生理负荷条件是否可行?内固定器体内和体外负荷成分的比较。

Is it possible to simulate physiologic loading conditions by applying pure moments? A comparison of in vivo and in vitro load components in an internal fixator.

作者信息

Wilke H J, Rohlmann A, Neller S, Schultheiss M, Bergmann G, Graichen F, Claes L E

机构信息

Department of Orthopaedic Research and Biomechanics, Universitätsklinikum Ulm, Germany.

出版信息

Spine (Phila Pa 1976). 2001 Mar 15;26(6):636-42. doi: 10.1097/00007632-200103150-00014.

Abstract

STUDY DESIGN

Loads acting in an internal fixator measured in vitro under the application of pure moments such as those commonly used for implant testing and basic research were compared with loads measured in 10 patients in vivo.

OBJECTIVES

To investigate whether these recommended loading conditions are valid by comparing in vivo measurements and those obtained in an in vitro experiment.

SUMMARY OF BACKGROUND DATA

Pure bending moments are often preferred as loading conditions for spinal in vitro testing, either for implant testing or basic research. The advantage of this loading pattern is that the bending moment is uniform along the multisegmental specimen. However, functional loading of the spine by muscles or external loads subjects the spine to a combination of forces and moments.

METHODS

In an in vivo experiment, loads acting on an internal spinal fixator in 10 patients were determined before and after anterior interbody fusion during flexion, extension, left and right lateral bending, and left and right axial twisting of the upper body with the patient standing. For comparison, an equivalent in vitro data set was created with 7 human lumbar specimens in which the same type of fixator was used. All specimens were tested under the application of pure bending moments in the three main motion planes in the intact state with fixator, after corpectomy, and with bone graft.

RESULTS

Consistent qualitative agreement between in vivo and in vitro measurements for the loads acting in the internal spinal fixator were found for axial rotation and lateral bending. For flexion and extension, reasonable agreement was found only for the intact spines with fixators. After corpectomy and after inserting a bone graft, the median values for axial force and bending moment in the sagittal plane in vitro did not agree with in vivo measurements. An axial preload in the in vitro experiment slightly increased the axial compression force and flexion bending moment in the fixators.

CONCLUSIONS

The application of pure moments to intact lumbar spinal specimens in vitro produces forces and moments in implants comparable with loads observed in vivo. During basic research on intact specimens or implant testing involving a removed disc or corpectomy, muscle forces are necessary to simulate realistic conditions.

摘要

研究设计

将在体外施加诸如常用于植入物测试和基础研究的纯力矩时测量的内固定器上的载荷,与在10名患者体内测量的载荷进行比较。

目的

通过比较体内测量值和体外实验获得的值,研究这些推荐的加载条件是否有效。

背景数据总结

纯弯矩通常作为脊柱体外测试的加载条件,用于植入物测试或基础研究。这种加载模式的优点是弯矩在多节段标本上是均匀的。然而,肌肉或外部载荷对脊柱的功能加载会使脊柱受到力和力矩的组合作用。

方法

在一项体内实验中,在10名患者站立时上半身进行前屈、后伸、左侧和右侧侧弯以及左侧和右侧轴向扭转过程中,确定前路椎间融合术前和术后作用于脊柱内固定器的载荷。为作比较,用7个使用相同类型固定器的人类腰椎标本创建了一个等效的体外数据集。所有标本在完整状态下、椎体切除术后以及植骨后,在固定器存在的情况下,于三个主要运动平面施加纯弯矩进行测试。

结果

在轴向旋转和侧弯方面,体内和体外测量的脊柱内固定器上的载荷之间存在一致的定性一致性。对于前屈和后伸,仅在带有固定器的完整脊柱中发现了合理的一致性。椎体切除术后和植入骨 graft 后,体外矢状面轴向力和弯矩的中位数与体内测量值不一致。体外实验中的轴向预载略微增加了固定器中的轴向压缩力和前屈弯矩。

结论

在体外对完整的腰椎标本施加纯力矩会在植入物中产生与体内观察到的载荷相当的力和力矩。在对完整标本进行基础研究或涉及椎间盘切除或椎体切除的植入物测试期间,需要肌肉力来模拟实际情况。

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