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股骨颈骺板延伸预测凸轮形态的纵向影像学研究。

Capital Femoral Growth Plate Extension Predicts Cam Morphology in a Longitudinal Radiographic Study.

机构信息

Division of Pediatric Orthopaedics, Rainbow Babies & Children's Hospitals at Case Western Reserve University, Cleveland, Ohio.

Department of Orthopaedics, Yale University School of Medicine, New Haven, Connecticut.

出版信息

J Bone Joint Surg Am. 2016 May 18;98(10):805-12. doi: 10.2106/JBJS.15.01028.

Abstract

BACKGROUND

Recent evidence has suggested that cam morphology may be related to alterations in the capital femoral growth plate during adolescence. The purpose of this study was to evaluate the relationship between capital femoral growth plate extension and cam morphology in a longitudinal radiographic study.

METHODS

We used a historical, longitudinal radiographic collection to identify 96 healthy adolescents (54 boys and 42 girls) with at least 5 consecutive annual radiographs of the left hip including closure of the capital femoral physis. We reviewed 554 anteroposterior radiographs of the left hip to measure the anteroposterior modification of the alpha angle of Nötzli and of the superior epiphyseal extension ratio (EER), measured as the ratio of extension of the capital femoral epiphysis down the femoral neck relative to the diameter of the femoral head. Measurements were made at 3 points in femoral head maturation corresponding to the Oxford bone age (OBA) femoral head stages 5, 6, and 7/8.

RESULTS

There was a mean increase in the anteroposterior alpha angle (10.7° ± 14.0°) and EER (0.12 ± 0.08) between OBA stages 5 and 7/8, corresponding to maturation and closure of the capital femoral physis. There was a positive correlation between the final anteroposterior alpha angle and both the final EER (r = 0.60) and the change in the EER (r = 0.58). A receiver operating characteristic curve generated to predict an anteroposterior alpha angle of ≥78° through the EER demonstrated an area under the curve of 0.93, indicating that an increasing EER had excellent diagnostic accuracy for predicting concurrent cam morphology.

CONCLUSIONS AND CLINICAL RELEVANCE

Superior epiphyseal extension was directly and temporally associated with an increase in anteroposterior alpha angle and more cam-like morphology. This alteration in the capital femoral epiphysis occurred immediately before physeal closure (OBA stage 7/8). Given the association of epiphyseal extension with activities that increase shear forces across the physis, we proposed that epiphyseal extension may be an adaptive mechanism to stabilize the physis and prevent slipped capital femoral epiphysis.

摘要

背景

最近的证据表明,凸轮形态可能与青春期股骨颈骨骺生长板的改变有关。本研究的目的是通过纵向影像学研究评估股骨颈骨骺生长板延伸与凸轮形态之间的关系。

方法

我们使用历史的、纵向的影像学资料,从左侧髋关节中筛选出 96 名健康青少年(54 名男孩和 42 名女孩),他们至少有 5 次连续的左侧髋关节正位 X 线片,包括股骨颈骨骺闭合。我们回顾了 554 张左侧髋关节正位 X 线片,以测量 Nötzli 角的前后修正值和上骺端延伸率(EER),EER 定义为股骨头颈相对股骨头上径的股骨头骺端延伸率。测量在 3 个对应于牛津骨龄(OBA)股骨头阶段 5、6 和 7/8 的股骨头上成熟度点进行。

结果

在 OBA 阶段 5 和 7/8 之间,前后 alpha 角(10.7°±14.0°)和 EER(0.12±0.08)平均增加,对应于股骨颈骨骺的成熟和闭合。最终前后 alpha 角与最终 EER(r=0.60)和 EER 的变化(r=0.58)呈正相关。通过 EER 生成的预测前后 alpha 角≥78°的受试者工作特征曲线,曲线下面积为 0.93,表明 EER 对预测凸轮样形态具有良好的诊断准确性。

结论和临床意义

上骺端延伸与前后 alpha 角的增加和更凸轮样的形态直接且在时间上相关。这种股骨颈骺端的改变发生在骨骺闭合(OBA 阶段 7/8)之前。鉴于骺端延伸与增加穿过骨骺的剪切力的活动有关,我们提出骺端延伸可能是一种稳定骨骺并防止股骨头滑脱的适应性机制。

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