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Optical coherence microscopy in 1700 nm spectral band for high-resolution label-free deep-tissue imaging

机译:1700 nm光谱带的光学相干显微镜用于高分辨率无标记的深层组织成像

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摘要

Optical coherence microscopy (OCM) is a label-free, high-resolution, three-dimensional (3D) imaging technique based on optical coherence tomography (OCT) and confocal microscopy. Here, we report that the 1700-nm spectral band has the great potential to improve the imaging depth in high-resolution OCM imaging of animal tissues. Recent studies to improve the imaging depth in OCT revealed that the 1700-nm spectral band is a promising choice for imaging turbid scattering tissues due to the low attenuation of light in the wavelength region. In this study, we developed high-resolution OCM by using a high-power supercontinuum source in the 1700-nm spectral band, and compared the attenuation of signal-to-noise ratio between the 1700-nm and 1300-nm OCM imaging of a mouse brain under the condition of the same sensitivity. The comparison clearly showed that the 1700-nm OCM provides larger imaging depth than the 1300-nm OCM. In this 1700-nm OCM, the lateral resolution of 1.3 μm and the axial resolution of 2.8 μm, when a refractive index was assumed to be 1.38, was achieved.
机译:光学相干显微镜(OCM)是基于光学相干断层扫描(OCT)和共聚焦显微镜的无标记,高分辨率,三维(3D)成像技术。在这里,我们报告1700 nm光谱带具有巨大的潜力,以提高动物组织的高分辨率OCM成像中的成像深度。改善OCT中成像深度的最新研究表明,由于波长范围内光的衰减很小,因此1700 nm光谱带是对浑浊的散射组织进行成像的有前途的选择。在这项研究中,我们通过使用1700 nm光谱带中的高功率超连续谱源开发了高分辨率OCM,并比较了1700 nm和1300 nm OCM成像的信噪比衰减。小鼠大脑在相同灵敏度的条件下。比较清楚地表明,1700-nm OCM比1300-nm OCM提供更大的成像深度。在此1700nm OCM中,假设折射率为1.38,则横向分辨率为1.3μm,轴向分辨率为2.8μm。

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