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Breakthrough in three-dimensional scoliosis diagnosis: significance of horizontal plane view and vertebra vectors

机译:三维脊柱侧弯诊断的突破:水平平面图和椎骨矢量的意义

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Scoliosis is a multifactorial three-dimensional (3D) spinal deformity with integral and directly related vertebral deviations in the coronal, sagittal and horizontal planes. Current classification and diagnostic methods rely on two-dimensional (2D) frontal and lateral X-ray images; no routine methods are available for the visualization and quantitative evaluation of deviations in the horizontal plane. The EOS 2D/3D system presented here is a new, low-dose, orthopedic radiodiagnostic device based on Nobel prize-winning X-ray detection technology with special software for 3D surface reconstruction capabilities that finally led to a breakthrough in scoliosis diagnosis with high-quality, realistic 3D visualization and accurate quantitative parametric analysis. A new concept introducing vertebra vectors and vertebra vector parametric calculations is introduced that furnishes simplified visual and intelligible mathematical information facilitating interpretation of EOS 2D/3D data, especially with regard to the horizontal plane top view images. The concept is demonstrated by a reported scoliotic case that was readily characterized through information derived from vertebra vectors alone, supplemented with the current angulation measurement methods in the coronal and sagittal planes and axial vertebral rotation measurements in the horizontal plane, with a calibrated 3D coordinate system suitable for inter-individual comparisons. The new concept of vertebra vectors may serve as a basis for a truly 3D classification of scoliosis...
机译:脊柱侧弯是一种多维度的三维(3D)脊柱畸形,在冠状,矢状和水平面中具有积分的和直接相关的椎骨偏差。当前的分类和诊断方法依赖于二维(2D)的正面和侧面X射线图像。没有常规方法可用于可视化和定量评估水平面中的偏差。此处介绍的EOS 2D / 3D系统是一种新型的低剂量骨科放射诊断设备,它基于获得诺贝尔奖的X射线检测技术以及具有3D表面重建功能的专用软件,最终实现了脊柱侧弯诊断的突破,质量,逼真的3D可视化和准确的定量参数分析。引入了引入椎骨矢量和椎骨矢量参数计算的新概念,该概念提供了简化的视觉和可理解的数学信息,有助于解释EOS 2D / 3D数据,尤其是关于水平面顶视图图像。报告的脊柱侧凸病例证明了这一概念,该病例很容易通过仅从椎骨向量获得的信息来表征,并补充了当前在冠状和矢状面的角度测量方法以及在水平面的轴向椎骨旋转测量以及校准的3D坐标系适用于个体间比较。椎骨载体的新概念可以作为脊柱侧弯真正3D分类的基础...

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