首页> 外文期刊>Journal of orthopaedic research >New registration algorithm for determining 3D knee kinematics using CT and single-plane fluoroscopy with improved out-of-plane translation accuracy.
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New registration algorithm for determining 3D knee kinematics using CT and single-plane fluoroscopy with improved out-of-plane translation accuracy.

机译:用于使用CT和单平面荧光检查法确定3D膝关节运动学的新配准算法,具有改进的平面外平移精度。

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摘要

To understand the kinematic effects of surgery, arthroplasty or conservative treatments, a noninvasive system to capture accurate 3D imaging of functional activities in prospective, controlled studies is required. To provide such a technique, a new algorithm was developed to register 3D CT data of normal bones to the same bones in a 2D fluoroscopy frame. The algorithm produces a digitally reconstructed radiograph (DRR) from the CT data and then filters this to produce an edge-enhanced image. The resulting image is then registered with an edge-enhanced version of the fluoroscopy frame using a new similarity measure called Cross-Correlation Residual Entropy (CCRE). The system was evaluated by implanting tantalum beads into three cadaveric knees to act as fiducial markers. The knees were flexed between 0 degrees and 70 degrees , and single-plane fluoroscopy data of the knees were acquired. CT data of the femur and tibia were then individually registered to the fluoroscopy images. No significant measurement bias was observed, and the standard deviation of the error in bead positions was 0.38 mm for in-plane translation and 0.42 degrees for rotation. To determine the accuracy of the registration algorithm for out-of-plane translations, fluoroscopy frames were scaled in size by fixed increments; the average standard deviation of the errors for out-of-plane translation was 0.65 mm. The ability to obtain such accurate 3D motion data from a noninvasive technique will enable prospective, longitudinal, and controlled studies of reconstruction surgery, and conservative management of joint pathologies.
机译:为了了解手术,关节置换术或保守治疗的运动学效果,需要在前瞻性对照研究中使用非侵入性系统来捕获功能活动的准确3D成像。为了提供这种技术,开发了一种新算法,可以将正常骨骼的3D CT数据配准到2D荧光检查框架中的相同骨骼。该算法从CT数据生成数字重建的射线照片(DRR),然后对其进行过滤以生成边缘增强的图像。然后使用称为交叉相关残差熵(CCRE)的新相似性度量,将结果图像与荧光镜框架的边缘增强版本对齐。通过将钽珠植入三个尸体膝盖作为基准标记来评估该系统。膝盖在0度到70度之间弯曲,并获取膝盖的单平面透视数据。然后将股骨和胫骨的CT数据分别记录到透视图像中。没有观察到明显的测量偏差,对于平面内平移,胎圈位置误差的标准偏差为0.38 mm,旋转为0.42度。为了确定平面外平移配准算法的准确性,将荧光检查镜架的大小按固定增量进行缩放。平面外平移误差的平均标准偏差为0.65 mm。从无创技术获得如此准确的3D运动数据的能力将使重建手术的前瞻性,纵向和对照研究以及关节病变的保守管理成为可能。

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