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Ultrahigh resolution optical coherence tomography imaging of lung structure using Gaussian shaped super continuum sources

机译:使用高斯形超连续谱源对肺结构进行超高分辨率光学相干层析成像

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Optical coherence tomography (OCT) is an emerging technology for non-invasive cross-sectional imaging of biological tissue and material with um resolution. In the field of pulmonary medicine, non-invasive high resolution cross-sectional imaging is desired for investigation of diseases in lung. So far, a few works have been reported about OCT imaging of lung. Since the lung consists of alveoli separated by thin wall, ultrahigh resolution (UHR) OCT is supposed to be effective for the imaging of fine structure in lung tissue.rnIn this work, ex vivo cross-sectional imaging of isolated rat and hamster lungs was demonstrated using UHR-OCT. A 120 nm-wide, high-power, Gaussian-like supercontinuum (SC) was generated at wavelength of 0.8 um region. The generated SC was used in a time-domain OCT system, and UHR-OCT imaging was demonstrated. An ultrahigh resolution of 2.9 um in air and 2.1 um in tissue was obtained. The achieved sensitivity was 105 dB. Using this system, ex vivo UHR-OCT imaging of isolated rat and hamster lungs was demonstrated for the first time. The structures of the trachea, visceral pleura, and alveoli were observed clearly. When saline was instilled into the lung, the penetration depth was improved, and clear images of the fine structure of the lung, including alveoli, were observed owing to the index matching effect.rnWe have also demonstrated the UHR-OCT imaging of lung tissue using 1.3 um and 1.7 um SC sources. As the results, owing to the precise structures of lung tissues and index matching by saline, the finest images were observed with 0.8 um UHR-OCT system.
机译:光学相干断层扫描(OCT)是一种新兴技术,用于以um分辨率对生物组织和材料进行无创横截面成像。在肺医学领域,需要非侵入性高分辨率横截面成像来研究肺部疾病。到目前为止,已经报道了一些有关肺部OCT成像的工作。由于肺由薄壁隔开的肺泡组成,因此超高分辨率(UHR)OCT被认为对肺组织的精细结构成像有效.rn在这项工作中,对离体大鼠和仓鼠肺进行了离体断层成像使用UHR-OCT。在波长为0.8 um的区域产生了120 nm宽的高功率类高斯超连续谱(SC)。生成的SC用于时域OCT系统,并演示了UHR-OCT成像。获得了空气中2.9 um和组织中2.1 um的超高分辨率。达到的灵敏度为105 dB。使用该系统,首次展示了离体大鼠和仓鼠肺的离体UHR-OCT成像。清楚地观察到气管,内脏胸膜和肺泡的结构。当将盐水滴入肺中时,由于指数匹配作用,渗透深度得到了改善,并且可以观察到包括肺泡在内的肺细微结构的清晰图像。我们还证明了使用UHR-OCT成像的肺组织1.3 um和1.7 um SC源。结果,由于肺组织的精确结构和盐水的指数匹配,使用0.8 um UHR-OCT系统可以观察到最精细的图像。

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