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关节负荷对股骨近端骨骺形态发育的影响。

Effects of joint loading on the development of capital femoral epiphysis morphology.

机构信息

Department of Orthopaedic Surgery, Boston Children's Hospital, Harvard Medical School, 300 Longwood Ave, Boston, MA, 02115, USA.

出版信息

Arch Orthop Trauma Surg. 2023 Sep;143(9):5457-5466. doi: 10.1007/s00402-023-04795-0. Epub 2023 Mar 1.

Abstract

INTRODUCTION

The deleterious influence of increased mechanical forces on capital femoral epiphysis development is well established; however, the growth of the physis in the absence of such forces remains unclear. The hips of non-ambulatory cerebral palsy (CP) patients provide a weight-restricted (partial weightbearing) model which can elucidate the influence of decreased mechanical forces on the development of physis morphology, including features related to development of slipped capital femoral epiphysis (SCFE). Here we used 3D image analysis to compare the physis morphology of children with non-ambulatory CP, as a model for abnormal hip loading, with age-matched native hips.

MATERIALS AND METHODS

CT images of 98 non-ambulatory CP hips (8-15 years) and 80 age-matched native control hips were used to measure height, width, and length of the tubercle, depth, width, and length of the metaphyseal fossa, and cupping height across different epiphyseal regions. The impact of age on morphology was assessed using Pearson correlations. Mixed linear model was used to compare the quantified morphological features between partial weightbearing hips and full weightbearing controls.

RESULTS

In partial weightbearing hips, tubercle height and length along with fossa depth and length significantly decreased with age, while peripheral cupping height increased with age (r > 0.2, P < 0.04). Compared to normally loaded (full weightbearing) hips and across all age groups, partially weightbearing hips' epiphyseal tubercle height and length were smaller (P < .05), metaphyseal fossa depth was larger (P < .01), and posterior, inferior, and anterior peripheral cupping heights were smaller (P < .01).

CONCLUSIONS

Smaller epiphyseal tubercle and peripheral cupping with greater metaphyseal fossa size in partial weightbearing hips suggests that the growing capital femoral epiphysis requires mechanical stimulus to adequately develop epiphyseal stabilizers. Deposit low prevalence and relevance of SCFE in CP, these findings highlight both the role of normal joint loading in proper physis development and how chronic abnormal loading may contribute to various pathomorphological changes of the proximal femur (i.e., capital femoral epiphysis).

摘要

介绍

增加机械力对股骨近端骨骺发育的有害影响已得到充分证实;然而,在没有这种力的情况下骺的生长尚不清楚。脑瘫(CP)非步行患者的髋关节提供了一个重量受限(部分负重)的模型,可以阐明减少机械力对骺形态发育的影响,包括与股骨颈滑脱(SCFE)发育相关的特征。在这里,我们使用 3D 图像分析比较了非步行 CP 患儿的骺形态,作为异常髋关节负荷的模型,与年龄匹配的正常髋关节进行比较。

材料和方法

使用 CT 图像测量了 98 例非步行 CP 髋关节(8-15 岁)和 80 例年龄匹配的正常对照组髋关节的骺高度、宽度和长度、干骺端凹陷深度、宽度和长度以及不同骺区的杯状高度。使用 Pearson 相关分析评估年龄对形态的影响。混合线性模型用于比较部分负重髋关节和完全负重对照组之间量化的形态特征。

结果

在部分负重髋关节中,随着年龄的增长,骺结节高度和长度以及干骺端凹陷深度和长度显著降低,而外周杯状高度随年龄增加(r>0.2,P<0.04)。与正常负荷(完全负重)髋关节相比,以及在所有年龄组中,部分负重髋关节的骺结节高度和长度较小(P<0.05),干骺端凹陷深度较大(P<0.01),并且后、下和前外周杯状高度较小(P<0.01)。

结论

部分负重髋关节骺结节较小,周围杯状较小,干骺端凹陷较大,表明生长中的股骨近端骺需要机械刺激才能充分发育骺稳定器。考虑到 CP 中 SCFE 的低患病率和相关性,这些发现强调了正常关节负荷在适当骺发育中的作用,以及慢性异常负荷如何导致股骨近端的各种病理形态变化(即股骨颈)。

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