首页> 外文会议>Asia Pacific conference on biomechanics;International conference on biomedical engineering;ICBME;APBiomech;World congress of biomechanics;WCB 2010 >Facet Joint Complex Considerations for Biomechanics of the Lumbar Functional Spinal Unit: An Improved Model Based Method for Investigating Facet Articulation
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Facet Joint Complex Considerations for Biomechanics of the Lumbar Functional Spinal Unit: An Improved Model Based Method for Investigating Facet Articulation

机译:腰椎功能脊柱单位生物力学的小关节复杂考虑因素:一种基于模型的改进方法,用于研究小关节活动

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The biomechanics of facet kinematics is an important consideration for the native and pathologic spine. Moreover when evaluating new implants and techniques designed for motion preservation from either an anterior or posterior approach, the facet joint complex requires measurement techniques that do not violate the joint integrity to accurately characterize the contributions to the overall functional spinal unit response. Three-dimensional modeling of the lumbar spine can be used to derive a wealth of data beyond range of motion without invasive procedures. We have developed a method to apply kinematic data to rigid body models of each vertebral body reconstructed from high resolution CT scans. The method described has been shown to reduce registration errors from previous techniques. To portray the robustness of this method, we have computationally defined the articular surfaces of the L3-L4 facet joint and tracked minimum distance (MD) between each surface. The MD between intact and rigid rod instrumented conditions has been compared. The application of the rigid rod construct has shown to constrain the facet surfaces spatially closer than in the intact condition.
机译:刻面运动学的生物力学是天然脊椎和病理脊柱的重要考虑因素。此外,在评估新的植入物和旨在通过前入路或后入路进行运动保留的技术时,小关节复合体需要不违反关节完整性的测量技术,才能准确地表征对整个功能性脊柱单元反应的贡献。腰椎的三维建模可用于获得超出运动范围的大量数据,而无需进行侵入性操作。我们已经开发出一种方法,可以将运动学数据应用于通过高分辨率CT扫描重建的每个椎体的刚体模型。已经表明,所描述的方法减少了来自先前技术的配准误差。为了描述此方法的鲁棒性,我们在计算上定义了L3-L4小关节的关节表面,并跟踪了每个表面之间的最小距离(MD)。比较了完整和刚性测杆条件下的MD。刚性杆构造的应用已显示出,与完整状态相比,小平面的空间约束空间更小。

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