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原发性和继发性神经管未连接:交界性神经管缺陷,一种由交界性神经胚形成障碍引起的新型脊柱裂。

Unjoined primary and secondary neural tubes: junctional neural tube defect, a new form of spinal dysraphism caused by disturbance of junctional neurulation.

作者信息

Eibach Sebastian, Moes Greg, Hou Yong Jin, Zovickian John, Pang Dachling

机构信息

Paediatric Neurosurgery, Regional Centre of Paediatric Neurosurgery, Kaiser Foundation Hospitals of Northern California, Oakland, CA, USA.

Paediatric Neurosurgery, Altona Children's Hospital, Hamburg, Germany.

出版信息

Childs Nerv Syst. 2017 Oct;33(10):1633-1647. doi: 10.1007/s00381-016-3288-7. Epub 2016 Oct 29.

Abstract

INTRODUCTION

Primary and secondary neurulation are the two known processes that form the central neuraxis of vertebrates. Human phenotypes of neural tube defects (NTDs) mostly fall into two corresponding categories consistent with the two types of developmental sequence: primary NTD features an open skin defect, an exposed, unclosed neural plate (hence an open neural tube defect, or ONTD), and an unformed or poorly formed secondary neural tube, and secondary NTD with no skin abnormality (hence a closed NTD) and a malformed conus caudal to a well-developed primary neural tube.

METHODS AND RESULTS

We encountered three cases of a previously unrecorded form of spinal dysraphism in which the primary and secondary neural tubes are individually formed but are physically separated far apart and functionally disconnected from each other. One patient was operated on, in whom both the lumbosacral spinal cord from primary neurulation and the conus from secondary neurulation are each anatomically complete and endowed with functioning segmental motor roots tested by intraoperative triggered electromyography and direct spinal cord stimulation. The remarkable feature is that the two neural tubes are unjoined except by a functionally inert, probably non-neural band.

CONCLUSION

The developmental error of this peculiar malformation probably occurs during the critical transition between the end of primary and the beginning of secondary neurulation, in a stage aptly called junctional neurulation. We describe the current knowledge concerning junctional neurulation and speculate on the embryogenesis of this new class of spinal dysraphism, which we call junctional neural tube defect.

摘要

引言

原发性和继发性神经管形成是已知的脊椎动物中枢神经轴形成的两个过程。神经管缺陷(NTDs)的人类表型大多分为与两种发育序列相对应的两类:原发性NTD的特征是皮肤开放性缺损、神经板暴露且未闭合(因此是开放性神经管缺陷,或ONTD),以及继发性神经管未形成或发育不良,而继发性NTD没有皮肤异常(因此是闭合性NTD),且在发育良好的原发性神经管尾侧有圆锥畸形。

方法与结果

我们遇到了三例以前未记录过形式的脊柱裂,其中原发性和继发性神经管分别形成,但在物理上彼此相距很远且功能上相互分离。对一名患者进行了手术,在该患者中,原发性神经管形成的腰骶部脊髓和继发性神经管形成的圆锥在解剖学上均完整,并通过术中触发肌电图和直接脊髓刺激测试显示具有功能性节段运动根。显著特征是,除了一条功能惰性、可能非神经的带外,两条神经管未连接。

结论

这种特殊畸形的发育错误可能发生在原发性神经管末端和继发性神经管起始之间的关键过渡阶段,这一阶段恰当地称为连接性神经管形成。我们描述了有关连接性神经管形成的现有知识,并推测了这类我们称为连接性神经管缺陷的新型脊柱裂的胚胎发生。

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