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Construction of local vertebral coordinate systems using a digitizing probe. Technical note.

机译:使用数字化探针构建局部椎骨坐标系。技术说明。

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STUDY DESIGN: When studying three-dimensional motion of multiple-vertebra spine segments in vitro, it is often desirable to report the kinematics at the individual vertebral levels in terms of each level's local coordinates systems. A novel technique is described for constructing local vertebral coordinate axes using a standard digitizing probe. OBJECTIVES: To describe a technique that was developed to allow researchers to relate vertebral landmarks to optical markers and to set the local coordinate axes of several vertebrae accurately through a short, simple procedure performed only once at the beginning of a spine testing experiment. SUMMARY OF BACKGROUND DATA: Other researchers have used radiographs and careful marker placement for establishing the coordinate systems of vertebrae and the relationships of anatomic landmarks to optical markers. The authors found no publications giving details of how vertebral coordinate systems are established from anatomic landmarks. METHODS: A digitizing probe is used to identify vertebral landmarks and to relate these landmarks to optical markers attached to the vertebrae. An algorithm is described whereby vertebral coordinate axes are constructed from the landmarks. RESULTS: The method described has been implemented successfully in a computerized in vitro spinal flexibility testing system that plots each individual motion segment's load-deformation curves in real time during experimentation. The proposed technique is less labor intensive and error prone than the earlier methods because landmarks are identified directly. CONCLUSIONS: The described technique quickly, easily, and accurately relates anatomic landmarks to optical markers and constructs local coordinate axes, two steps that are necessary before monitoring the kinematics of individual motion segments during multilevel spine testing.
机译:研究设计:在体外研究多椎骨脊椎节段的三维运动时,通常希望根据每个水平的局部坐标系报告单个椎骨水平的运动学。描述了一种使用标准数字化探针构造局部椎骨坐标轴的新技术。目的:描述一种开发的技术,该技术可让研究人员将脊柱标志物与光学标记物相关联,并通过在脊柱测试实验开始时仅执行一次的短而简单的过程即可准确地设置多个椎骨的局部坐标轴。背景数据摘要:其他研究人员使用射线照相和仔细的标记放置来建立椎骨的坐标系以及解剖标志与光学标记的关系。作者发现没有出版物详细说明如何从解剖学界标建立椎骨坐标系。方法:使用数字化探针来识别椎骨界标并将这些界标与附着在椎骨上的光学标记物相关联。描述了一种算法,其中从地标构造椎骨坐标轴。结果:所描述的方法已在计算机化的体外脊柱柔性测试系统中成功实施,该系统可在实验过程中实时绘制每个运动段的载荷-变形曲线。由于可以直接识别界标,因此与以前的方法相比,所提出的技术的劳动强度较低且易于出错。结论:所描述的技术可以快速,轻松,准确地将解剖学界标与光学标记物相关联,并构建局部坐标轴,这是在多级脊柱测试过程中监视各个运动节段的运动学之前必须执行的两个步骤。

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