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一种用于脊柱畸形临床评估的多功能脊柱和骨盆三维重建系统。

A versatile 3D reconstruction system of the spine and pelvis for clinical assessment of spinal deformities.

作者信息

Kadoury Samuel, Cheriet Farida, Laporte Catherine, Labelle Hubert

机构信息

Ecole Polytechnique de Montréal, P.O. Box 6079, Succursale Centre-ville, and Sainte-Justine Hospital Research Centre, Montreal, QC, Canada, H3C 3A7.

出版信息

Med Biol Eng Comput. 2007 Jun;45(6):591-602. doi: 10.1007/s11517-007-0182-1. Epub 2007 May 26.

Abstract

This paper presents a three-dimensional (3D) reconstruction system of the human spine for the routine evaluation of musculoskeletal pathologies like idiopathic scoliosis. The main objective of this 3D reconstruction system is to offer a versatile and robust tool for the 3D analysis of spines in any healthcare centre with standard clinical setup using standard uncalibrated radiographic images. The novel system uses a self-calibration algorithm and a weak-perspective method to reconstruct the 3D coordinates of anatomical landmarks from bi-planar radiographic images of a patient's trunk. Additionally, a small planar object of known dimensions is proposed to warrant an accurately scaled model of the spine. In order to assess the validity of the 3D reconstructions yielded by the proposed system, a clinical study using 60 pairs of digitized X-rays of adolescents was conducted. The subject cohort in the study group was composed of 51 scoliotic and 9 non-scoliotic patients, with an average Cobb angle on the frontal plane of 25 degrees. For each case, a 3D reconstruction of the spine and pelvis was obtained with the previous system used at our hospital (which requires a positioning apparatus and a calibration jacket), and with the proposed method. Results show that 3D reconstructions obtained with the new system using uncalibrated X-ray images yield geometrically accurate models with insignificant differences for 2D and 3D clinical indexes commonly used in the evaluation of spinal deformities. This demonstrates the system to be a viable and accurate tool for clinical studies and biomechanical analysis purposes, with the added advantage of versatility to any clinical setup for routine follow-ups and surgical planning.

摘要

本文介绍了一种用于常规评估肌肉骨骼疾病(如特发性脊柱侧弯)的人体脊柱三维(3D)重建系统。该3D重建系统的主要目标是为任何具备标准临床设备的医疗中心提供一种通用且强大的工具,以便使用标准的未校准放射图像对脊柱进行三维分析。该新型系统采用自校准算法和弱透视方法,从患者躯干的双平面放射图像中重建解剖标志点的三维坐标。此外,还提出了一个已知尺寸的小平面物体,以确保获得准确缩放比例的脊柱模型。为了评估所提出系统生成的3D重建的有效性,进行了一项临床研究,使用了60对青少年数字化X射线。研究组的受试者队列由51例脊柱侧弯患者和9例非脊柱侧弯患者组成,其在额平面上的平均Cobb角为25度。对于每个病例,分别使用我院之前使用的系统(该系统需要定位设备和校准夹套)以及所提出的方法获得脊柱和骨盆的3D重建。结果表明,使用未校准X射线图像的新系统获得的3D重建产生了几何精确的模型,对于评估脊柱畸形常用的二维和三维临床指标差异不显著。这表明该系统是用于临床研究和生物力学分析的可行且准确的工具,还具有适用于任何临床设置进行常规随访和手术规划的额外优势。

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