使用基于ct的模拟骨盆正位x线片对儿童髋关节进行人体测量

Ali Darwich, Mohamad Bdeir, Sonja Janssen, S. Schönberg, S. Gravius, A. Jawhar, C. Faymonville
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引用次数: 0

摘要

儿童髋关节的正常解剖变异和病理性畸形只有在事先定义了随年龄增长的人体测量参数的正常范围后才能加以区分。本研究的目的是为儿童髋关节形态测量提供可靠的参考值,使用基于计算机断层扫描(CT)的骨盆旋转校正汇总图像,模拟广泛使用的基于x线平片的测量,但提供更高的CT技术精度。这项回顾性研究包括85例(170髋)15岁以下的患者(0-15岁)。测量的人体测量参数包括股骨头挤压指数、外侧中心边缘角、髋臼倾角、Tönnis角和股骨颈轴角。计算平均值、极差、标准差、P值、评分者内信度和评分者间信度。所有的测量结果都与年龄相关。没有一项测量结果与性别或侧面相关。在12岁(男性14岁,女性11岁)的所有测量中都注意到快速生长阶段。评价者间和评价者内信度较高(区间间/类内相关系数0.926 ~ 0.998 Cronbach’s alpha 0.986 ~ 0.998)。目前的工作提供了年龄和性别相关的标准值的经典使用的髋关节测量以及生长阶段描述儿童髋关节形态在广泛的年龄范围。本研究测量的值与文献中基于x线的经典参考值之间存在差异,特别是Tönnis角度和LCEA值。这表明,基于ct的技术中的旋转和倾斜校正可能具有补偿传统基于x射线的方法中可能存在的高估的优势。
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Anthropometric measurements of the pediatric hip using CT-based simulated anteroposterior radiographs of the pelvis
Normal anatomical variants and pathological deformities of the pediatric hip can only be differentiated after a prior definition of normal ranges for anthropometric parameters with increasing age. Aim of the present study was to provide reliable reference values of the pediatric hip morphometry, using computed tomography (CT)-based rotation-corrected summation images of the pelvis that simulate the widely available plain radiograph-based measurements, but offer the higher precision of the CT technique. This retrospective study included 85 patients (170 hips) under 15 years of age (0–15). The measured anthropometric parameters included femur head extrusion index, lateral center-edge angle, acetabular inclination, Tönnis angle, and femoral neck-shaft angle. Mean values, range, SD, P values, intra-rater, and inter-rater reliability were calculated. All measurements correlated with age. None of the measurements correlated with gender or side. Rapid growth phases were noted in all measurements at the age of 12 (14 in males and 11 in females). The inter-rater and intra-rater reliability was high (range inter/intraclass correlation coefficient 0.926–0.998 Cronbach’s alpha 0.986–0.998). The present work provides age- and gender-related normative values of the classically used hip measurements as well as growth phases describing pediatric hip morphology in a broad age range. A discrepancy was noted between the values measured in the current study and the classical X-ray-based reference values in the literature especially for the Tönnis angle and LCEA values. This suggests that the rotation and inclination correction in the CT-based techniques might have the advantage of compensating for a possible overestimation in the conventional X-ray-based methods.
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