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首页> 外文期刊>Journal of neurosurgery. >Fine configuration of the dural fibrous network and the extradural neural axis compartment in the jugular foramen: an epoxy sheet plastination and confocal microscopy study
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Fine configuration of the dural fibrous network and the extradural neural axis compartment in the jugular foramen: an epoxy sheet plastination and confocal microscopy study

机译:牙龈孢子中的多云纤维网络和外轴神经轴隔室的精细配置:环氧树脂塑料和共聚焦显微镜研究

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OBJECTIVE The extradural neural axis compartment (EDNAC) is an adipovenous zone that is located between the meningeal (ML) and endosteal (EL) layers of the dura mater and has been minimally investigated in the jugular foramen (JF) region. In this study, the authors aimed to explore the fine architecture of the EDNAC within the JF and evaluate whether the EDNAC can be used as a component for JF compartmentalization. METHODS A total of 46 cadaveric heads (31 male, 15 female; age range 54-96 years) and 30 dry skulls were examined in this study. Twelve of 46 cadaveric heads were plastinated as a series of transverse (7 sets), coronal (3 sets), and sagittal (2 sets) slices and examined using stereomicroscopy and confocal microscopy. The dural entry points of the JF cranial nerves were recorded in 34 cadaveric skulls. The volumes of the JF, intraforaminal EDNAC, and internal jugular vein (IJV) were quantified. RESULTS Based on constant osseous landmarks, the JF was subdivided into preforaminal, intraforaminal, and subforaminal segments. The ML-derived fascial sheath along the anteromedial wall of the IJV demarcated the "venous portion" and the "EDNAC portion" of the bipartite JF. The EDNAC did not surround the intraforaminal IJV and comprised an ML-derived dural fibrous network and an adipose matrix. A fibrovenous curtain subdivided the intraforaminal EDNAC into a small anterior column containing cranial nerve (CN) IX and the anterior condylar venous plexus and a large posterior adipose column containing CNs X and XI. In the intraforaminal segment, the IJV occupied a slightly larger space in the foramen (57%; p < 0.01), whereas in the subforaminal segment it occupied a space of similar size to that of the EDNAC. CONCLUSIONS Excluding the IJV, the neurovascular structures in the JF traverse the dural fibrous network that is dominant in the foraminal EDNAC. The results of this study will contribute to anatomical knowledge of the obscure yet crucially important JF region, increase understanding of foraminal tumor growth and spread patterns, and facilitate the planning and execution of surgical interventions.
机译:目的硬膜外神经轴室(EDNAC)是位于硬脑膜(ML)层和硬膜内(EL)层之间的一个脂肪静脉区,在颈静脉孔(JF)区域的研究最少。在这项研究中,作者旨在探索JF内EDNAC的精细结构,并评估EDNAC是否可以用作JF分区的组件。方法对46例(男31例,女15例,年龄54~96岁)尸头和30例干燥颅骨进行检查。将46具尸体头颅中的12具塑化为一系列横向(7组)、冠状(3组)和矢状(2组)切片,并使用体视显微镜和共焦显微镜进行检查。在34具尸体头骨上记录了JF颅神经的硬脑膜入口点。量化JF、孔内EDNAC和颈内静脉(IJV)的体积。结果根据恒定的骨标志,JF可分为前庭、孔内和分支下段。沿IJV前内侧壁的ML衍生筋膜鞘界定了双侧JF的“静脉部分”和“EDNAC部分”。EDNAC并不包围孔内IJV,而是由ML衍生的硬脑膜纤维网络和脂肪基质组成。纤维静脉帷幕将椎间孔内的EnNAC细分为一个小的前柱,包括颅神经(CN)IX和前髁静脉丛,以及一个包含CNS X和XI的大后部脂肪席。在椎间孔内段,IJV在椎间孔中占据的空间稍大(57%;p<0.01),而在分支下段,它占据的空间与EDNAC相似。结论除IJV外,JF内的神经血管结构横穿在椎间孔EDNAC中占主导地位的硬脑膜纤维网。这项研究的结果将有助于了解模糊但至关重要的JF区域的解剖学知识,增加对孔肿瘤生长和扩散模式的了解,并促进手术干预的计划和执行。

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