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巴氏瓣和膜迷路的 3D 重建:对前庭植入和梅尼埃病的启示。

3D-reconstructions of Bast's Valve and Membranous Labyrinth: Insights for Vestibular Implantation and Meniere's Disease.

机构信息

Sydney Local Health District, University of Sydney.

Surgical Innovation Research Officer, Institute of Academic Surgery, Sydney Local Health District.

出版信息

Otol Neurotol. 2021 Dec 1;42(10):e1652-e1660. doi: 10.1097/MAO.0000000000003239.

Abstract

HYPOTHESIS/BACKGROUND: Bast's valve is a poorly understood inner ear structure located at the junction between pars superior and inferior in the membranous labyrinth. Anatomically precise three-dimensional reconstructions (3D-reconstructions) of Bast's valve can help illuminate the morphology of the valve, and point toward its role in normal physiology and pathological states such as endolymphatic hydrops. This is of particular relevance to the development of a vestibular implant, a device intended to rehabilitate deficits in the vestibular system.

METHODS

Six postmortem human temporal bones from healthy donors were scanned using a micro-computed tomography (microCT) scanner. The microCT data allowed 3D-reconstructions of the membranous labyrinth, with a particular focus on Bast's valve, vestibule, and cochlear duct.

RESULTS

The microCT images of Bast's valve showed a rigid lip containing a core of soft tissue, opposing the thin membranous wall of the utricle. The maximum recorded length and width of the rigid lip were 440.4 μm and 88 μm, respectively. The 3D-reconstructions illustrated the slit-like opening of Bast's valve into the utricle, the twisting course of the basal turn of the cochlear duct, and the spatial orientation of utricle and saccule with respect to the stapes footplate.

CONCLUSIONS

The present study provided a novel anatomical perspective on the microscopic structure of Bast's valve. The interplay between endolymphatic hydrops and Bast's valve is an ongoing area of research, but defining this anatomy in 3D will play a key role in furthering our understanding of the disease process. Implications for vestibular implantation are explored through the various 3D-reconstructions.

摘要

假设/背景:Bast 瓣是内耳结构的一个薄弱环节,位于膜迷路的上、下部分交界处。对 Bast 瓣进行解剖精确的三维重建(3D 重建)有助于阐明瓣膜的形态,并指出其在正常生理和病理状态(如内淋巴积水)中的作用。这对于前庭植入物的开发尤其重要,该设备旨在恢复前庭系统的缺陷。

方法

使用微计算机断层扫描(microCT)扫描仪对 6 个来自健康供体的死后颞骨进行扫描。microCT 数据允许对膜迷路进行 3D 重建,特别关注 Bast 瓣、前庭和耳蜗管。

结果

Bast 瓣的 microCT 图像显示了一个包含软组织核心的刚性唇,与薄的前庭膜壁相对。刚性唇的最大记录长度和宽度分别为 440.4 μm 和 88 μm。3D 重建说明了 Bast 瓣进入前庭的狭缝状开口、耳蜗管基底转的扭曲路径以及前庭和椭圆囊相对于镫骨足板的空间方位。

结论

本研究为 Bast 瓣的微观结构提供了新的解剖视角。内淋巴积水和 Bast 瓣之间的相互作用是一个正在进行的研究领域,但在 3D 中定义这种解剖结构将在进一步了解疾病过程中发挥关键作用。通过各种 3D 重建探讨了其对前庭植入的影响。

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