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Quantitative investigation of alveolar structures with OCT using total liquid ventilation during mechanical ventilation

机译:机械通气期间采用全液体通气的OCT定量研究牙槽结构

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To develop new treatment possibilities for patients with severe lung diseases it is crucial to understand the lung function on an alveolar level. Optical coherence tomography (OCT) in combination with intravital microscopy (IVM) are used for imaging subpleural alveoli in animal models to gain information about dynamic and morphological changes of lung tissue during mechanical ventilation. The image content suitable for further analysis is influenced by image artifacts caused by scattering, refraction, reflection, and absorbance. Because the refractive index varies with each air-tissue interface in lung tissue, these effects decrease OCT image quality exceedingly. The quality of OCT images can be increased when the refractive index inside the alveoli is matched to the one of tissue via liquid-filling. Thereby, scattering loss can be decreased and higher penetration depth and tissue contrast can be achieved. To use the advantages of liquid-filling for in vivo imaging of small rodent lungs, a suitable breathing fluid (perfluorodecalin) and a special liquid respirator are necessary. Here we show the effect of liquid-filling on OCT and IVM image quality of subpleural alveoli in a mouse model.
机译:为了为患有严重肺部疾病的患者开发新的治疗方法,至关重要的是要了解肺泡水平的肺功能。光学相干断层扫描(OCT)结合活体显微镜检查(IVM)用于在动物模型中对胸膜下肺泡进行成像,以获取有关机械通气过程中肺组织动态和形态变化的信息。适用于进一步分析的图像内容受由散射,折射,反射和吸收率引起的图像伪影的影响。因为折射率随肺组织中每个空气组织界面的不同而变化,所以这些影响会大大降低OCT图像质量。当肺泡内部的折射率通过液体填充与组织之一匹配时,可以提高OCT图像的质量。由此,可以减少散射损失并且可以实现更高的穿透深度和组织对比度。为了利用液体填充的优势对啮齿动物的小肺进行体内成像,需要合适的呼吸液(全氟萘烷)和专用的液体呼吸器。在这里,我们显示了液体填充对小鼠模型中胸膜下肺泡的OCT和IVM图像质量的影响。

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