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Statistical Atlas Based Extrapolation of CT Data

机译:基于统计图集的CT数据外推

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We present a framework to estimate the missing anatomical details from a partial CT scan with the help of statistical shape models. The motivating application is periacetabular osteotomy (PAO), a technique for treating developmental hip dysplasia, an abnormal condition of the hip socket that, if untreated, may lead to osteoarthritis. The common goals of PAO are to reduce pain, joint subluxation and improve contact pressure distribution by increasing the coverage of the femoral head by the hip socket. While current diagnosis and planning is based on radiological measurements, because of significant structural variations in dysplastic hips, a computer-assisted geometrical and biomechanical planning based on CT data is desirable to help the surgeon achieve optimal joint realignments. Most of the patients undergoing PAO are young females, hence it is usually desirable to minimize the radiation dose by scanning only the joint portion of the hip anatomy. These partial scans, however, do not provide enough information for biomechanical analysis due to missing iliac region. A statistical shape model of full pelvis anatomy is constructed from a database of CT scans. The partial volume is first aligned with the statistical atlas using an iterative affine registration, followed by a deformable registration step and the missing information is inferred from the atlas. The atlas inferences are further enhanced by the use of X-ray images of the patient, which are very common in an osteotomy procedure. The proposed method is validated with a leave-one-out analysis method. Osteotomy cuts are simulated and the effect of atlas predicted models on the actual procedure is evaluated.
机译:我们提出了一个框架,可以借助统计形状模型从局部CT扫描中估计缺失的解剖学细节。激动人心的应用是髋臼周围截骨术(PAO),一种用于治疗发育性髋关节发育不良的技术,髋关节发育异常是一种髋部畸形,如果不及时治疗,可能会导致骨关节炎。 PAO的共同目标是通过增加髋臼对股骨头的覆盖范围来减轻疼痛,减轻关节半脱位并改善接触压力分布。尽管当前的诊断和计划是基于放射学测量的,但是由于发育不良的髋关节存在明显的结构变化,因此需要一种基于CT数据的计算机辅助几何和生物力学计划,以帮助外科医生实现最佳的关节重排。接受PAO的大多数患者是年轻女性,因此通常希望通过仅扫描髋部解剖结构的关节部分来最大程度地减少辐射剂量。但是,由于缺少区域,这些部分扫描不能为生物力学分析提供足够的信息。从CT扫描的数据库构建完整的骨盆解剖结构的统计形状模型。首先使用迭代仿射配准将部分体积与统计图集对齐,然后进行可变形配准步骤,然后从图集推断出丢失的信息。通过使用患者的X射线图像可以进一步增强图谱推断,这在截骨手术中非常常见。提出的方法通过留一法分析方法进行了验证。模拟切骨手术,评估图谱预测模型对实际手术的影响。

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