首页> 外文期刊>Medicine. >Three-Dimensional Reconstruction Modeling of the Spatial Displacement, Extent and Rotational Orientation of Undisplaced Femoral Neck Fractures
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Three-Dimensional Reconstruction Modeling of the Spatial Displacement, Extent and Rotational Orientation of Undisplaced Femoral Neck Fractures

机译:未透露股骨颈骨折的空间位移,范围和旋转定向的三维重建模型

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摘要

The purpose of this study was to employ a new three-dimensional (3D) reconstruction and modeling method to measure displacement of undisplaced femoral neck fractures (Garden stages I and II). We also aimed to evaluate the effectiveness of the Garden classification for determining the displacement of undisplaced femoral neck fractures.A total of 120 consecutive patients with undisplaced femoral neck fractures were enrolled between 2012 and 2014, including 60 within the Garden I group and 60 within the Garden II group. The displacements of the femoral head center (d1) and the lowest point of the fovea capitis femoris (d2) and rotational displacement of the femoral head () in the 3D model were measured with 3D computed tomography reconstruction and modeling. Five observers, trauma surgeons, were asked to found the centers of the femoral heads and the deepest points of the foveae. The intraobserver and inter-observer agreements were calculated using Fleiss' kappa.The inter-observer and intra-observer kappa values were 0.937 and 0.985, respectively. Current method has good reliability. We discovered that many participants in our study had been misclassified by an anterior-posterior radiograph as having an incomplete fracture. In incomplete fracture of Garden stage I group, the average displacements d1 and d2 were 3.691.77mm and 14.51 +/- 1.91mm, respectively. The mean was 4.91 degrees +/- 2.49 degrees. For impacted fracture of Garden stage I, significant spatial displacement in the impacted fractures was observed (d1: 6.22 +/- 3.36mm; d2: 10.30 +/- 5.73mm; and : 17.83 degrees +/- 10.72 degrees). Similarly, significant spatial displacement was observed among the Garden stage II group (d1: 7.16 +/- 4.58mm; d2: 12.95 +/- 8.25mm; and : 18.77 degrees +/- 9.10 degrees). There was no significant difference in , d1, and d2 between impacted fracture and Garden stage II groups (P > 0.05). However, significant differences were found between incomplete fracture and Garden stage II groups (P < 0.05).Our findings suggest that 3D reconstruction and modeling may be a better tool for assessing femoral neck fractures than the Garden classification. Undisplaced femoral neck fractures showed variable degrees of displacement and were not undisplaced, stable fractures. Garden classification for undisplaced femoral neck fractures has certain limitations.
机译:本研究的目的是采用新的三维(3D)重建和建模方法来测量未偏向的股骨颈骨折(花园阶段I和II)的位移。我们还旨在评估园林分类的有效性,以确定未铺展的股骨颈骨折的位移。在2012年和2014年间招募了120名连续未偏向的股骨颈骨折患者,其中包括60岁及以下的花园内部和60内部花园II集团。用3D计算机断层扫描重建和建模测量股骨头中心(D1)和FOVEA Capitis股骨股骨(D2)和股骨头()中的股骨头()的旋转位移的位移。要求五名观察员创伤外科医生,被要求找到股骨头的中心和FOVEE的最深点。使用FALISS Kappa计算奥里替机和观察员间协议。观察者间和观察者内部观察者内部观察者的kappa值分别为0.937和0.985。电流方法具有良好的可靠性。我们发现,我们研究中的许多参与者被前后射线照片被错误分类,其骨折不完全。在花园阶段I组不完全骨折中,平均位移D1和D2分别为3.691.77mm和14.51 +/- 1.91mm。平均值为4.91度+/- 2.49度。对于园林阶段的受影响的骨折I,观察到受影响的骨折中的显着的空间位移(D1:6.22 +/- 3.36mm; D2:10.30 +/- 5.73mm;和:17.83度+/- 10.72度)。类似地,在花园阶段II组中观察到显着的空间位移(D1:7.16 +/- 4.58mm; D2:12.95 +/- 8.25mm;和:18.77度+/- 9.10度)。受影响的断裂和花园阶段II组之间没有显着差异,D1和D2(P> 0.05)。然而,在不完全的骨折和花园阶段II组之间发现了显着差异(P <0.05)。我们调查结果表明,3D重建和建模可能是评估股骨颈骨折的更好工具,而不是花园分类。未偏移的股骨颈骨折显示出可变程度的位移,并且不是未偏向的,稳定的骨折。未偏向的股骨颈部骨折的庭院分类有一定的局限性。

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  • 来源
    《Medicine.》 |2015年第39期|共8页
  • 作者单位

    Tianjin Hosp Dept Orthoped Tianjin 300211 Peoples R China;

    Tianjin Hosp Dept Orthoped Tianjin 300211 Peoples R China;

    Tianjin Med Univ Dept Orthoped Gen Hosp Tianjin Peoples R China;

    Binzhou Med Univ Hosp Dept Orthoped Binzhou Shandong Peoples R China;

    Tianjin Hosp Dept Orthoped Tianjin 300211 Peoples R China;

    Tianjin Med Univ Dept Orthoped Gen Hosp Tianjin Peoples R China;

    Tianjin Hosp Dept Orthoped Tianjin 300211 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医药、卫生;
  • 关键词

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