...
首页> 外文期刊>Frontiers in Surgery >A Synchrotron and Micro-CT Study of the Human Endolymphatic Duct System: Is Meniere's Disease Caused by an Acute Endolymph Backflow?
【24h】

A Synchrotron and Micro-CT Study of the Human Endolymphatic Duct System: Is Meniere's Disease Caused by an Acute Endolymph Backflow?

机译:一种同步rotron和微型CT的人体淋巴管系统的研究:是由急性内阳映像回流引起的meniere疾病?

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Background: The etiology of Meniere's disease (MD) and endolymphatic hydrops believed to underlie its symptoms remain unknown. One reason may be the exceptional complexity of the human inner ear, its vulnerability, and surrounding hard bone. The vestibular organ contains an endolymphatic duct system (EDS) bridging the different fluid reservoirs. It may be essential for monitoring hydraulic equilibrium, and a dysregulation may result in distension of the fluid spaces or endolymphatic hydrops. Material and Methods: We studied the EDS using high-resolution synchrotron phase contrast non-invasive imaging (SR-PCI), and micro-computed tomography (micro-CT). Ten fresh human temporal bones underwent SR-PCI. One bone underwent micro-CT after fixation and staining with Lugol's iodine solution (I 2 KI) to increase tissue resolution. Data were processed using volume-rendering software to create 3D reconstructions allowing orthogonal sectioning, cropping, and tissue segmentation. Results: Combined imaging techniques with segmentation and tissue modeling demonstrated the 3D anatomy of the human saccule, utricle, endolymphatic duct, and sac together with connecting pathways. The utricular duct (UD) and utriculo-endolymphatic valve (UEV or Bast's valve) were demonstrated three-dimensionally for the first time. The reunion duct was displayed with micro-CT. It may serve as a safety valve to maintain cochlear endolymph homeostasis under certain conditions. Discussion: The thin reunion duct seems to play a minor role in the exchange of endolymph between the cochlea and vestibule under normal conditions. The saccule wall appears highly flexible, which may explain occult hydrops occasionally preceding symptoms in MD on magnetic resonance imaging (MRI). The design of the UEV and connecting ducts suggests that there is a reciprocal exchange of fluid among the utricle, semicircular canals, and the EDS. Based on the anatomic framework and previous experimental data, we speculate that precipitous vestibular symptoms in MD arise from a sudden increase in endolymph pressure caused by an uncontrolled endolymphatic sac secretion. A rapid rise in UD pressure, mediated along the fairly wide UEV, may underlie the acute vertigo attack, refuting the rupture/K + -intoxication theory.
机译:背景:脑膜炎病的病因(MD)和内淋巴水的症状仍然未知。一种原因可能是人类内耳,其脆弱性和周围硬骨的特殊复杂性。前庭器官含有桥接不同流体储存器的内淋巴管系统(EDS)。对于监测液压平衡可能是必要的,并且缺血剂可能导致流体空间或内淋巴水的光泽。材料和方法:我们使用高分辨率同步相位对比度非侵入性成像(SR-PCI)和微计算断层扫描(Micro-CT)研究了EDS。十个新鲜的人颞骨骨骼接受了SR-PCI。在固定和染色后,在含百合的碘溶液(I 2 ki)染色以增加组织分辨率的一根骨骼。使用音量渲染软件处理数据以创建允许正交切片,裁剪和组织分割的3D重建。结果:分割和组织建模的组合成像技术证明了人囊,Uttcle,内淋巴管和囊的3D解剖与连接途径。第一次三维展示了Utricular管道(UD)和UEV或BAST阀门)。重聚管用微CT显示。它可以作为一种安全阀,以在某些条件下维持耳蜗内血淋巴稳态。讨论:在正常条件下,薄的团聚管道似乎在耳蜗和前庭之间的内阳骨交换中发挥着小的作用。 Saccule壁看起来高度柔韧,这可以解释偶尔在MD上的症状前期的磁共振成像(MRI)。 UEV和连接管道的设计表明,UTTICLE,半圆形管和EDS之间存在互易流体交换。基于解剖框架和以前的实验数据,我们推测了MD中的沉淀前庭症状因因未控制的内淋巴囊分泌引起的内血对压力突然增加。 UD压力迅速上升,沿着相当宽的UEV介导的,可能使急性眩晕攻击置于抗急性眩晕攻击,反驳破裂/ k + intoxication理论。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号