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Three-dimensional imaging of intracochlear tissue by scanning laser optical tomography (SLOT)

机译:通过扫描激光断层扫描(SLOT)对耳蜗内组织进行三维成像

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摘要

The presented study focuses on the application of scanning laser optical tomography (SLOT) for non-destructive visualization of anatomical structures inside the human cochlea ex vivo. SLOT is a laser-based highly efficient microscopy technique, which allows for tomographic imaging of the internal structure of transparent large-scale specimens (up to 1 cm~3). Thus, in the field of otology this technique is best convenient for an ex vivo study of the inner ear anatomy. For this purpose, the preparation before imaging comprises mechanically assisted decalcification, dehydration as well as optical clearing of the cochlea samples. Here, we demonstrate results of SLOT visualizing hard and soft tissue structures of the human cochlea with an optical resolution in the micrometer range using absorption and autofluorescence as contrast mechanisms. Furthermore, we compare our results with the method of X-ray micro tomography (micro-CT, μCT) as clinical gold standard which is based only on absorption. In general, SLOT can provide the advantage of covering all contrast mechanisms known from other light microscopy techniques, such as fluorescence or scattering. For this reason, a protocol for antibody staining has been developed, which additionally enables selective mapping of cellular structures within the cochlea. Thus, we present results of SLOT imaging rodent cochleae showing specific anatomical structures such as hair cells and neurofilament via fluorescence. In conclusion, the presented study has shown that SLOT is an ideally suited tool in the field of otology for in toto visualization of the inner ear microstructure.
机译:提出的研究侧重于扫描激光光学断层扫描(SLOT)在人耳蜗体内解剖结构的非破坏性可视化中的应用。 SLOT是一种基于激光的高效显微镜技术,可对透明大型标本(最大1 cm〜3)的内部结构进行断层成像。因此,在耳科学领域,该技术最适合于内耳解剖学的离体研究。为此,成像前的准备工作包括对耳蜗样品进行机械辅助的脱钙,脱水以及光学清除。在这里,我们展示了SLOT的结果,即利用吸收和自发荧光作为对比机制,以微米范围的光学分辨率可视化人类耳蜗的硬组织和软组织结构。此外,我们将结果与仅基于吸收的X射线显微断层扫描(micro-CT,μCT)方法作为临床金标准进行了比较。通常,SLOT可以提供覆盖其他光学显微镜技术已知的所有对比机制(例如荧光或散射)的优势。由于这个原因,已经开发了用于抗体染色的方案,该方案另外使得能够选择性绘制耳蜗内的细胞结构。因此,我们提出啮齿动物耳蜗的SLOT成像结果显示了特定的解剖结构,例如毛发细胞和通过荧光的神经丝。总而言之,本研究表明,SLOT是耳科领域内耳显微组织内部可视化的理想工具。

著录项

  • 来源
    《Photonic therapeutics and diagnostics XII》|2016年|96892H.1-96892H.6|共6页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Laser Zentrum Hannover e.V., Biomedical Optics Department, Hannover, Germany,Cluster of Excellence 'Hearing4all';

    Laser Zentrum Hannover e.V., Biomedical Optics Department, Hannover, Germany;

    Laser Zentrum Hannover e.V., Biomedical Optics Department, Hannover, Germany;

    Hannover Medical School, Department of Otorhinolaryngology, Hannover, Germany,Cluster of Excellence 'Hearing4all';

    Hannover Medical School, Department of Otorhinolaryngology, Hannover, Germany;

    Laser Zentrum Hannover e.V., Biomedical Optics Department, Hannover, Germany,Gottfried Wilhelm Leibniz Universitaet Hannover, Institute of Quantum Optics, Hannover, Germany,Cluster of Excellence 'Hearing4all';

    Laser Zentrum Hannover e.V., Biomedical Optics Department, Hannover, Germany;

    Hannover Medical School, Department of Otorhinolaryngology, Hannover, Germany,Cluster of Excellence 'Hearing4all';

    Hannover Medical School, Department of Otorhinolaryngology, Hannover, Germany,Cluster of Excellence 'Hearing4all';

    Laser Zentrum Hannover e.V., Biomedical Optics Department, Hannover, Germany,Cluster of Excellence 'Hearing4all';

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cochlea; inner ear; scanning laser optical tomography; tomography; SLOT; 3D microscopy; optical clearing; antibody staining; μCT;

    机译:耳蜗内耳;扫描激光光学断层扫描;断层扫描插槽; 3D显微镜;光学清理抗体染色;微CT;
  • 入库时间 2022-08-26 13:45:07

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