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小儿未成熟的附肢骨骼。

The Immature Pediatric Appendicular Skeleton.

机构信息

Department of Radiology, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania.

Perelman School of Medicine at the University of Pennsylvania, Philadelphia, Pennsylvania.

出版信息

Semin Musculoskelet Radiol. 2024 Aug;28(4):361-374. doi: 10.1055/s-0044-1786151. Epub 2024 Jul 29.

Abstract

Growth and maturation occur in a predictable pattern throughout the body and within each individual bone. In the appendicular skeleton, endochondral ossification predominates in long bones and growth plates. The ends of these long bones are sites of relative weakness in the immature skeleton and prone to injury from acute insult and overuse. We present the normal histoanatomy and physiology of the growth plate complex, highlighting the unique contribution of each component and shared similarities between primary and secondary complexes. Components of the growth plate complex include the physis proper, subjacent vascularity within the growth cartilage, and the ossification front. The second section describes imaging considerations and features of normal and abnormal growth. Finally, we review the Salter-Harris classification for acute fractures and offer examples of characteristic overuse injury patterns involving the epiphyseal (proximal humerus and distal radius), apophyseal (medial epicondyle and tibial tubercle), and secondary growth plate complexes (medial femoral condyle and capitellar osteochondritis dissecans). This article provides a foundation and basic framework to better understand and anticipate potential complications and growth disturbances and to ensure optimal follow-up and early intervention when treatment can be less invasive.

摘要

生长和成熟是按照一定的模式在全身和每个单独的骨骼中进行的。在四肢骨骼中,骺软骨内成骨在长骨和生长板中占主导地位。这些长骨的末端是未成熟骨骼中相对薄弱的部位,容易受到急性损伤和过度使用的影响。我们介绍了生长板复合体的正常组织解剖学和生理学,强调了每个组成部分的独特贡献以及初级和次级复合体之间的共同相似性。生长板复合体的组成部分包括骺板本身、生长软骨内的亚下位血管和骨化前沿。第二部分描述了成像的考虑因素和正常及异常生长的特征。最后,我们回顾了急性骨折的 Salter-Harris 分类,并举例说明了涉及骺(肱骨近端和桡骨远端)、突(内上髁和胫骨结节)和次级生长板复合体(股骨内髁和滑车骨软骨炎)的特征性过度使用损伤模式。本文提供了一个基础和基本框架,以更好地理解和预测潜在的并发症和生长障碍,并确保在治疗可以采用较少侵入性方法时进行最佳随访和早期干预。

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