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3D Spine Reconstruction of Postoperative Patients from Multi-level Manifold Ensembles

机译:多级歧管组合术后患者的3D脊椎重建

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The quantitative assessment of surgical outcomes using personalized anatomical models is an essential task for the treatment of spinal deformities such as adolescent idiopathic scoliosis. However an accurate 3D reconstruction of the spine from postoperative X-ray images remains challenging due to presence of instrumentation (metallic rods and screws) occluding vertebrae on the spine. In this paper, we formulate the reconstruction problem as an optimization over a manifold of articulated spine shapes learned from pathological training data. The manifold itself is represented using a novel data structure, a multi-level manifold ensemble, which contains links between nodes in a single hierarchical structure, as well as links between different hierarchies, representing overlapping partitions. We show that this data structure allows both efficient localization and navigation on the manifold, for on-the-fly building of local nonlinear models (manifold charting). Our reconstruction framework was tested on pre- and postoperative X-ray datasets from patients who underwent spinal surgery. Compared to manual ground-truth, our method achieves a 3D reconstruction accuracy of 2.37 ± 0.85mm for postoperative spine models and can deal with severe cases of scoliosis.
机译:使用个性化解剖模型进行手术结果的定量评估是治疗脊柱畸形如青少年特发性脊柱侧凸等的重要任务。然而,由于存在仪器(金属棒和螺钉)遮挡脊柱上的椎骨的存在,从术后X射线图像的脊柱的精确三维重建仍然具有挑战性。在本文中,我们将重建问题作为从病理训练数据中学到的铰接脊柱形状的歧管的优化。歧管本身使用新的数据结构表示多级歧管集合,该多级歧管集合,其包含单个层次结构中的节点之间的链路,以及表示重叠分区的不同层次结构之间的链路。我们表明,这种数据结构允许在歧管上有效的本地化和导航,用于局部非线性模型的在线建设(歧管图表)。我们的重建框架是在接受脊髓手术的患者的预先和术后X射线数据集上进行测试。与手动地基相比,我们的方法对于术后脊柱模型,我们的方法实现了2.37±0.85毫米的3D重建精度,并可应对严重的脊柱病例。

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