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3D Fourier Domain Optical Coherence Tomography of post perfusion fixated ethanol-filled isolated rabbit lungs

机译:灌注后固定乙醇填充的离体兔肺的3D傅里叶域光学相干断层扫描

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Three dimensional alveolar geometry of subpleural lung parenchyma is of high interest for respiratory research exemplary for the development of numerical models of the lung for simulating alveolar mechanics. We present a method for 3D imaging lung tissue up to a depth of 800 μm beneath the pleura by optical coherence tomography with a resolution of less than 10 μm. Isolated and fixated rabbit lungs were perfused with a series of ethanol with increasing concentration (20 % - 50 % - 70 % - 95 % - 100 %; 100 ml of each concentration). The alveolar space, normally air filled, is flooded by the ethanol. The ethanol filling provides an adaptation of the refraction index and therefore imaging artifacts caused by differences in diffraction index between air and tissue are minimized. We improved the penetration depth from 200 μm up to 800 μm for subpleural lung parenchyma and we demonstrated mat the acquired 3D data sets are suitable for 3D reconstruction of alveolar tissue.
机译:胸膜下肺实质的三维肺泡几何结构对于呼吸研究非常感兴趣,可以作为模拟肺泡力学的肺部数值模型的典范。我们提出了一种通过光学相干断层扫描以小于10μm的分辨率对胸膜下800μm深度的肺组织进行3D成像的方法。向分离并固定的兔肺中灌注一系列浓度递增的乙醇(20%-50%-70%-95%-100%;每种浓度100 ml)。通常充满空气的肺泡空间被乙醇充满。乙醇填充物提供了折射率的适应性,因此最小化了由空气和组织之间的衍射指数差异引起的成像伪影。我们将胸膜下肺实质的穿透深度从200μm提高到了800μm,并证明了所采集的3D数据集适用于肺泡组织的3D重建。

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