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Architecture of arachnoid trabeculae pillars and septa in the subarachnoid space of the human optic nerve: anatomy and clinical considerations

机译:人视神经蛛网膜下腔蛛网膜小梁支柱和隔膜的结构:解剖学和临床考虑

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>Aims: To describe the anatomy and the arrangement of the arachnoid trabeculae, pillars, and septa in the subarachnoid space of the human optic nerve and to consider their possible clinical relevance for cerebrospinal fluid dynamics and fluid pressure in the subarachnoid space of the human optic nerve.>Methods: Postmortem study with a total of 12 optic nerves harvested from nine subjects without ocular disease. All optic nerves used in this study were obtained no later than 7 hours after death, following qualified consent for necropsy. The study was performed with transmission (TEM) and scanning electron microscopy (SEM).>Results: The subarachnoid space of the human optic nerve contains a variety of trabeculae, septa, and stout pillars that are arranged between the arachnoid and the pia layers of the meninges of the nerve. They display a considerable numeric and structural variability depending on their location within the different portions of the optic nerve. In the bulbar segment (ampulla), adjacent to the globe, a dense and highly ramified meshwork of delicate trabeculae is arranged in a reticular fashion. Between the arachnoid trabeculae, interconnecting velum-like processes are observed. In the mid-orbital segment of the orbital portion, the subarachnoid space is subdivided, and can appear even loosely chambered by broad trabeculae and velum-like septa at some locations. In the intracanalicular segment additionally, few stout pillars and single round trabeculae are observed.>Conclusion: The subarachnoid space of the human optic nerve is not a homogeneous and anatomically empty chamber filled with cerebrospinal fluid, but it contains a complex system of arachnoid trabeculae and septa that divide the subarachnoid space. The trabeculae, septa, and pillars, as well as their arrangement described in this study, may have a role in the cerebrospinal fluid dynamics between the subarachnoid space of the optic nerve and the chiasmal cistern and may contribute to the understanding of the pathophysiology of asymmetric and unilateral papilloedema. All the structures described are of such delicate character that they can not even be visualised with high resolution magnetic resonance imaging (MRI).
机译:>目标:描述人视神经蛛网膜下腔中蛛网膜小梁,支柱和隔的解剖结构和排列,并考虑它们与脑脊液动力学和体液压力的临床相关性人类视神经的蛛网膜下腔。>方法:死后研究从9名无眼疾的受试者中收集了总共12条视神经。经尸检合格后,本研究中使用的所有视神经均应在死亡后不迟于7小时获得。该研究使用透射电子显微镜(TEM)和扫描电子显微镜(SEM)进行。>结果:人视神经的蛛网膜下腔包含各种小梁,隔垫和粗壮的柱子,排列在两个小梁之间。蛛网膜和神经脑膜的pia层。根据它们在视神经不同部位的位置,它们显示出相当大的数值和结构变异性。在与地球相邻的延髓部分(壶腹)中,以网状方式排列了密集且高度分叉的细小梁网。在蛛网膜小梁之间,观察到相互连接的类膜过程。在眼眶部分的眼眶中段,蛛网膜下腔被细分,在某些位置甚至可以被宽小梁和类膜间隔松散地容纳。此外,在小管内节段中,几乎没有观察到粗壮的支柱和单个圆形小梁。>结论:人的视神经的蛛网膜下腔不是一个充满脑脊髓液的均质且解剖学上空的腔,但其中包含一个蛛网膜小梁和隔的复杂系统,分隔蛛网膜下腔。本研究中描述的小梁,隔垫和支柱及其排列可能在视神经蛛网膜下腔和颊池之间的脑脊髓液动力学中起作用,并且可能有助于理解不对称的病理生理学和单侧乳头水肿。所描述的所有结构都具有如此微妙的特征,以至于它们甚至都无法通过高分辨率磁共振成像(MRI)可视化。

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