Storer K P, Toh J, Stoodley M A, Jones N R
Department of Surgery (Neurosurgery), University of Adelaide, South Australia, Australia.
J Anat. 1998 May;192 ( Pt 4)(Pt 4):565-72. doi: 10.1046/j.1469-7580.1998.19240565.x.
Knowledge of the structure and function of the central canal of the human spinal cord is important in understanding the pathogenesis of syringomyelia. Analysis of the morphology of the central canal is difficult using isolated histological sections. A 3-dimensional reconstruction technique using digitised histological sections was therefore developed to visualise the morphology of the central canal. The technique was used to study the canal in the conus medullaris and filum terminale of 1 sheep and 4 human spinal cords. A variety of morphological features were demonstrated including canal duplication, a terminal ventricle and openings from the canal lumen into the subarachnoid space. The findings suggest the possibility of a functionally important fluid communication in the caudal spinal cord which may have a sink function.
了解人类脊髓中央管的结构和功能对于理解脊髓空洞症的发病机制很重要。使用孤立的组织学切片分析中央管的形态很困难。因此,开发了一种使用数字化组织学切片的三维重建技术来可视化中央管的形态。该技术用于研究1只绵羊和4个人类脊髓圆锥和终丝中的中央管。展示了多种形态特征,包括中央管重复、终室以及中央管腔与蛛网膜下腔之间的开口。这些发现提示在脊髓尾部可能存在功能上重要的液体连通,其可能具有汇聚功能。