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Congenital malformations of the hand and forearm in children: What radiologists should know

机译:儿童手和前臂的先天性畸形:放射科医生应该知道什么

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摘要

Congenital upper limb malformations represent complex pathologies because of their varied clinical presentations, imaging features, and etiologies. They can be divided into (1) failure of formation with transverse, intercalary, and longitudinal (preaxial, postaxial, and mesoaxial) deficiencies, (2) failure of differentiation with synostoses, carpal coalitions, syndactylies, and symphalangism, (3) duplication with ulnar dimelia and polydactylies, and (4) brachydactylies. Congenital Madelung's deformity, clinodactyly, camptodactyly, and Kirner's deformity are usually included in these malformations. Despite advances in molecular diagnosis, a good knowledge of clinical and imaging features as well as special consideration of other skeletal or nonskeletal abnormalities are essential to eventually diagnose an embryo fetopathy (maternal valproate treatment, constriction band syndrome), a genetic disorder (trisomy 21 or Down syndrome, Turner's syndrome, Holt-Oram syndrome), or a nongenetic syndrome (vertebral, anal, cardiac, tracheal, esophageal, renal, limb association, Poland's syndrome). Genetic counseling for a child presenting with a congenital upper limb malformation is of great value, both for the treating team and the parents, and imaging is often required. The latter is still largely supported by conventional radiography, both for diagnosis and functional prognosis, but ultrasound and magnetic resonance imaging will be great tools in the near future to better evaluate these conditions.
机译:先天性上肢畸形代表复杂的病理,因为它们的临床表现,影像学特征和病因各不相同。它们可分为(1)具有横向,inter间和纵向(前轴,后轴和中轴)缺陷的形成失败;(2)伴骨突,腕骨联合,趾甲和交指的分化失败;(3)与尺骨二尖瓣和多指畸形,以及(4)近距离指畸形。这些畸形通常包括先天性马德隆畸形,斜指,坎普达奇畸形和柯尔纳畸形。尽管分子诊断方面取得了进步,但对临床和影像学特征的充分了解以及对其他骨骼或非骨骼异常的特殊考虑对于最终诊断出胚胎胎儿病(母亲丙戊酸盐治疗,收缩带综合征),遗传性疾病(21三体性或唐氏综合症,特纳氏综合症,Holt-Oram综合症)或非遗传综合症(椎骨,肛门,心脏,气管,食道,肾脏,四肢关联,波兰氏综合症)。对于先天性上肢畸形的儿童,遗传咨询对治疗团队和父母均具有重要价值,并且经常需要进行影像检查。后者在很大程度上仍受到常规放射线照相技术的支持,无论是用于诊断还是在功能预后方面,但是超声和磁共振成像将在不久的将来成为更好的工具,以更好地评估这些状况。

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