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A method for measuring joint kinematics designed for accurate registration of kinematic data to models constructed from CT data.

机译:一种测量关节运动学的方法,旨在将运动学数据准确注册到由CT数据构建的模型中。

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A method for measuring three-dimensional kinematics that incorporates the direct cross-registration of experimental kinematics with anatomic geometry from Computed Tomography (CT) data has been developed. Plexiglas registration blocks were attached to the bones of interest and the specimen was CT scanned. Computer models of the bone surface were developed from the CT image data. Determination of discrete kinematics was accomplished by digitizing three pre-selected contiguous surfaces of each registration block using a three-dimensional point digitization system. Cross-registration of bone surface models from the CT data was accomplished by identifying the registration block surfaces within the CT images. Kinematics measured during a biomechanical experiment were applied to the computer models of the bone surface. The overall accuracy of the method was shown to be at or below the accuracy of the digitization system used. For this experimental application, the accuracy was better than +/-0.1mm for position and 0.1 degrees for orientation for linkage digitization and better than +/-0.2mm and +/-0.2 degrees for CT digitization. Surface models of the radius and ulna were constructed from CT data, as an example application. Kinematics of the bones were measured for simulated forearm rotation. Screw-displacement axis analysis showed 0.1mm (proximal) translation of the radius (with respect to the ulna) from supination to neutral (85.2 degrees rotation) and 1.4mm (proximal) translation from neutral to pronation (65.3 degrees rotation). The motion of the radius with respect to the ulna was displayed using the surface models. This methodology is a useful tool for the measurement and application of rigid-body kinematics to computer models.
机译:已经开发了一种测量三维运动学的方法,该方法结合了来自计算机断层扫描(CT)数据的实验运动学与解剖学几何形状的直接交叉配准。将有机玻璃配准块附着在目标骨骼上,并用CT扫描标本。骨表面的计算机模型是根据CT图像数据开发的。离散运动学的确定是通过使用三维点数字化系统将每个配准块的三个预选连续表面数字化来完成的。通过识别CT图像中的配准块表面,可以实现从CT数据对骨表面模型进行交叉配准。在生物力学实验中测得的运动学应用于骨骼表面的计算机模型。结果表明,该方法的整体精度等于或低于所用数字化系统的精度。对于此实验应用,链接数字化的精度优于位置的+/- 0.1mm和定向的0.1度,而CT数字化的精度则优于+/- 0.2mm和+/- 0.2度。作为示例应用,从CT数据构建了半径和尺骨的表面模型。测量骨骼的运动学,以模拟前臂旋转。螺丝钉位移轴分析显示,从旋后到中立(旋转85.2度)的半径(相对尺骨)为0.1mm(近端),从中立到内旋(旋转65.3度)为1.4mm(近端)。使用表面模型显示了相对于尺骨的半径运动。这种方法学是用于将刚体运动学测量和应用到计算机模型的有用工具。

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