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首页> 外文期刊>European spine journal: official publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society >Quasi-automatic 3D reconstruction of the full spine from low-dose biplanar X-rays based on statistical inferences and image analysis
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Quasi-automatic 3D reconstruction of the full spine from low-dose biplanar X-rays based on statistical inferences and image analysis

机译:基于统计推论和图像分析的低剂量双峰X射线的Quasi自动三维重建全脊柱

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PurposeTo design a quasi-automated three-dimensional reconstruction method of the spine from biplanar X-rays as the daily used method in clinical routine is based on manual adjustments of a trained operator and the reconstruction time is more than 10min per patient.MethodsThe proposed method of 3D reconstruction of the spine (C3-L5) relies first on a new manual input strategy designed to fit clinicians' skills. Then, a parametric model of the spine is computed using statistical inferences, image analysis techniques and fast manual rigid registration.ResultsAn agreement study with the clinically used method on a cohort of 57 adolescent scoliotic subjects has shown that both methods have similar performance on vertebral body position and axial rotation (null bias in both cases and standard deviation of signed differences of 1mm and 3.5 degrees around, respectively). In average, the solution could be computed in less than 5min of operator time, even for severe scoliosis.ConclusionThe proposed method allows fast and accurate 3D reconstruction of the spine for wide clinical applications and represents a significant step towards full automatization of 3D reconstruction of the spine. Moreover, it is to the best of our knowledge the first method including also the cervical spine
机译:PUPOSETO设计一种从Biplanar X射线的脊柱的脊柱的准自动化三维重建方法,因为临床常规的日常使用方法是基于训练有素的操作员的手动调整,并且重建时间超过每位患者10min。方法提出了方法脊柱的3D重建(C3-L5)首先依赖于旨在适合临床医生的技能的新手动输入策略。然后,使用统计推广来计算脊柱的参数模型,图像分析技术和快速手册刚性注册。评估与57个青少年神经科目队列的临床使用方法研究表明,两种方法在椎体上具有相似的性能位置和轴向旋转(两种情况下的空偏压和标准差分别为1mm和3.5度的符号差异)。平均而言,即使对于严重的脊柱侧凸,均可在少于5分钟的操作员时间中计算解决方案。结论该方法允许广泛的临床应用的脊柱快速准确地重建脊柱,并表示朝向3D重建的全自动化的重要一步脊柱。此外,我们的知识是我们的第一种方法,包括颈椎

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