首页> 美国卫生研究院文献>Frontiers in Neuroanatomy >Optimization of 3D-Visualization of Micro-Anatomical Structures of the Human Inner Ear in Osmium Tetroxide Contrast Enhanced Micro-CT Scans
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Optimization of 3D-Visualization of Micro-Anatomical Structures of the Human Inner Ear in Osmium Tetroxide Contrast Enhanced Micro-CT Scans

机译:四氧化O对比增强型微CT扫描中人耳内微解剖结构的3D可视化优化

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摘要

>Introduction: Knowledge of the neuro-anatomical architecture of the inner ear contributes to the improvement and development of cochlear and vestibular implants. The present knowledge is mainly based on two-dimensional images (histology) or derived models that simplify the complexity of this architecture. This study investigated the feasibility of visualizing relevant neuro-anatomical structures of the inner ear in a dynamic three-dimensional reproduction, using a combination of staining, micro-CT imaging and an image processing algorithm.>Methods: Four fresh cadaveric temporal bones were postfixed with osmium tetroxide (OsO4) and decalcified with EDTA. Micro-CT was used for scanning at 10 μm (4 scans) and 5.5 μm (1 scan) voxel resolution. A new image processing algorithm was developed and the scans were visualized in open source software.>Results: OsO4 enhanced the contrast in all scans and the visualization was substantially improved by the image processing algorithm. The three-dimensional renderings provided detailed visualization of the whole inner ear. Details were visible up to the size of individual neurons, nerve crossings and the specific neuro-anatomical structures such as the tunnel of Corti.>Conclusion: The combination of OsO4, micro-CT and the proposed image processing algorithm provides an accurate and detailed visualization of the three-dimensional micro-anatomy of the human inner ear.
机译:>简介:对内耳神经解剖结构的了解有助于改善和发展人工耳蜗和前庭植入物。本知识主要基于二维图像(组织学)或简化该体系结构复杂性的派生模型。这项研究探讨了结合染色,微CT成像和图像处理算法在动态三维复制中可视化内耳相关神经解剖结构的可行性。>方法:四种将新鲜的尸体颞骨用四氧化os(OsO4)后固定,并用EDTA脱钙。 Micro-CT用于以10μm(4次扫描)和5.5μm(1次扫描)体素分辨率进行扫描。开发了一种新的图像处理算法,并在开源软件中对扫描进行了可视化。>结果:OsO4增强了所有扫描的对比度,并且图像处理算法显着改善了可视化效果。三维效果图提供了整个内耳的详细可视化效果。直到单个神经元的大小,神经交叉以及特定的神经解剖结构(例如Corti隧道)都可以看到细节。>结论: OsO4,micro-CT和拟议的图像处理算法的结合提供了人内耳的三维微观解剖结构的准确且详细的可视化。

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