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足部旋转对模拟 X 线片测量踝关节对线的影响:术前规划的安全区域。

The effect of foot rotation on measuring ankle alignment using simulated radiographs: a safe zone for pre-operative planning.

机构信息

Department of Orthopedic Surgery, Amsterdam UMC, University of Amsterdam, Amsterdam Movement Sciences, Amsterdam, the Netherlands; Academic Center for Evidence Based Sports Medicine (ACES), the Netherlands; Amsterdam Collaboration for Health and Safety in Sports (ACHSS), International Olympic Committee (IOC) Research Center Amsterdam UMC, Amsterdam, the Netherlands.

Department of Orthopedic Surgery, Amsterdam UMC, University of Amsterdam, Amsterdam Movement Sciences, Amsterdam, the Netherlands; Academic Center for Evidence Based Sports Medicine (ACES), the Netherlands; Amsterdam Collaboration for Health and Safety in Sports (ACHSS), International Olympic Committee (IOC) Research Center Amsterdam UMC, Amsterdam, the Netherlands.

出版信息

Clin Radiol. 2019 Nov;74(11):897.e1-897.e7. doi: 10.1016/j.crad.2019.07.012. Epub 2019 Aug 20.

Abstract

AIM

To assess whether variation in foot rotation, in relation to camera position, affects the reliability of measurement of hindfoot alignment on radiographs and to define a "safe zone" where measurement of the alignment axis and thus preoperative planning is not affected by foot rotation.

MATERIALS AND METHODS

Healthy volunteers were recruited of whom double-sided lower-leg weight-bearing computed tomography (CT) was acquired. Weight-bearing was simulated by means of providing axial compression force equal to the weight of the healthy volunteers. The scans were uploaded into custom-made three-dimensional analysis software to create digitally reconstructed radiographs. For each CT examination, a coordinate system was determined, which defines the neutral position of the leg. Rotation about the z-axis of this coordinate system simulates endo- and exorotation of the foot. Subsequently, radiographs were reconstructed for the leg between 30° of endorotation and 45° of exorotation, and the relation between the observed alignment axis and foot rotation was determined.

RESULTS

A total of 20 healthy volunteers were included, 10 males (mean age 37.7±11.1) and 10 females (mean age 34±10.3). Per 5° of leg rotation, the alignment axis translated with a mean of 6.86% (SD ±13.1). No significant difference in position of the alignment axis was seen between 10° of endorotation and 10° of exorotation compared to the neutral ankle position.

CONCLUSION

The "safe zone" for imaging the hindfoot alignment axis, is between 10° endo- and 10° exorotation of the foot.

摘要

目的

评估足部旋转与相机位置的关系是否会影响 X 线片后足对线测量的可靠性,并定义一个“安全区”,在此区域内,对线轴的测量及其术前规划不受足部旋转的影响。

材料与方法

招募健康志愿者,进行双侧小腿负重 CT 检查。通过施加与志愿者体重相等的轴向压缩力来模拟负重。将扫描上传至定制的三维分析软件,以生成数字重建 X 线片。对于每次 CT 检查,确定一个坐标系,该坐标系定义了腿部的中立位置。该坐标系的 z 轴旋转模拟足部的内旋和外旋。随后,在 30°内旋和 45°外旋之间重建腿部的 X 线片,并确定观察到的对线轴与足部旋转之间的关系。

结果

共纳入 20 名健康志愿者,其中男性 10 名(平均年龄 37.7±11.1),女性 10 名(平均年龄 34±10.3)。每旋转 5°的腿部,对线轴的平移为 6.86%(标准差±13.1)。与中立踝位相比,10°内旋和 10°外旋对线轴位置无显著差异。

结论

用于成像后足对线轴的“安全区”为足部 10°内旋和 10°外旋之间。

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