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Diagnostic Radiograph Based 3D Bone Reconstruction Framework: Application to Osteotomy Surgical Planning

机译:基于诊断射线照相的3D骨重建框架:在截骨外科规划中的应用

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Pre-operative planning in orthopedic surgery is essential to identify the optimal surgical considerations for each patient-specific case. The planning for osteotomy is presently conducted through two-dimensional (2D) radiographs, where the surgeon has to mentally visualize the bone deformity. This is due to direct three-dimensional (3D) imaging modalities such as Computed Tomography (CT) still being restricted to a minority of complex orthopedic procedures. This paper presents a novel 3D bone reconstruct technique, through bi-planar 2D radiographic images. The reconstruction will be pertinent to osteotomy surgical diagnostics and planning. The framework utilizes a generic 3D model of the bone of interest to obtain the anatomical topology information. A 2D non-rigid registration is performed between the projected contours of this generic 3D model and extracted edges of the X-ray image to identify the planar customization required. Subsequently a free-form deformation based manipulation is conducted to customize the overall 3D bone shape.
机译:矫形外科的术前计划对于确定每个患者特定情况的最佳手术考虑是必不可少的。目前通过二维(2D)射线照片进行截骨术的规划,外科医生必须在精神上可视化骨畸形。这是由于直接的三维(3D)成像方式,例如计算机断层扫描(CT)仍被限制在少数复杂的骨科程序。本文通过双平面2D放射线图像提出了一种新型的3D骨重建技术。重建将与截骨外科诊断和规划相关。该框架利用感兴趣的骨骼的通用3D模型来获得解剖拓扑信息。在该通用3D模型的投影轮廓和提取X射线图像的边缘之间进行2D非刚性注册以识别所需的平面定制。随后,进行自由形状的变形操纵以定制整个3D骨骼形状。

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