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MEASUREMENT OF 3D VERTEBRAL BODY POSITION AND ORIENTATION USING SINGLE PLANE FLUOROSCOPY

机译:单平面荧光成像法测量3D椎体的位置和方向

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The increasing use of motion preserving devices in the spine has highlighted the need for accurate kinematic measurement tools to evaluate the performance of these new implants. In addition to quantifying the motion of the implant itself, it is also desirable to measure how implants affect the motion at adjacent vertebral levels. Single plane fluoroscopy has been used for over 15 years to analyze the in vivo motions of total knee replacement implants, with reported accuracies of 0.5-1.0 deg for rotations and 0.5 mm for in plane translations~(1.2). It is our goal to apply this type of image registration technique to the spine, so that accurate 3D kinematics of vertebral motion can be measured in vivo. This involves a significant extension to previous work, instead of tracking silhouettes of implants, we proposed to use digitally reconstructed radiograph images generated from a CT as the basis for image registration. The purpose of this project was to develop a methodology that would enable the 3D position and orientation (pose) of a vertebral body to be accurately measured from a single plane fluoroscopic image.
机译:脊柱中运动保持装置的使用越来越多,这突出表明需要精确的运动学测量工具来评估这些新植入物的性能。除了量化植入物本身的运动之外,还需要测量植入物如何影响相邻椎骨水平处的运动。单平面透视已经用于分析全膝关节置换植入物的体内运动超过15年,据报道旋转的精确度为0.5-1.0度,平面平移的精确度为0.5 mm〜(1.2)。我们的目标是将这种图像配准技术应用于脊柱,以便可以在体内测量出精确的3D运动脊椎运动学。这涉及到对先前工作的重大扩展,而不是跟踪植入物的轮廓,我们建议使用从CT生成的数字重建射线照相图像作为图像配准的基础。该项目的目的是开发一种方法,该方法能够从单个平面透视图像准确测量椎体的3D位置和方向(姿势)。

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  • 会议地点 Naples, FL(US);Naples, FL(US)
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    Department of OrthopaedicsUniversity of FloridaGainesville FL 32607USA;

    Department of Mechanical and AerospaceEngineeringUniversity of FloridaGainesville FL 32610USA;

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