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Single-scan HiLo with line-illumination strategy for optical section imaging of thick tissues

机译:具有线照明策略的单扫描HILO用于厚组织的光学截面成像

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摘要

Optical sectioning has been widely employed for inhibiting out-of-focus backgrounds in three-dimensional (3D) imaging of biological samples. However, point scanning imaging or multiple acquisitions for wide-field optical sectioning in epi-illumination microscopy remains time-consuming for large-scale imaging. In this paper, we propose a single-scan optical sectioning method based on the hybrid illumination (HiLo) algorithm with a line-illumination strategy. Our method combines HiLo background inhibition with confocal slit detection. It thereby offers a higher optical sectioning capability than wide-field HiLo and line-confocal imaging without extra modulation and multiple data acquisition. To demonstrate the optical-sectioning capability of our system, we imaged a thin fluorescent plane and different fluorescence-labeled mouse tissue. Our method shows an excellent background inhibition in thick tissue and thus potentially provides an alternative tool for 3D imaging of large-scale biological tissue.
机译:光学切片已广泛用于抑制生物样品的三维(3D)成像中的焦点背景。然而,在跨越显微镜中的宽场光学切片的点扫描成像或多次采集仍然对大规模成像进行耗时。本文提出了一种基于具有线照明策略的混合照明(HILO)算法的单扫描光学截面方法。我们的方法将HILO背景抑制与共聚焦狭缝检测相结合。由此提供比宽野HILO和线 - 共聚焦成像更高的光学切片能力,而无需额外调制和多个数据采集。为了证明我们的系统的光学切片能力,我们成像薄荧光平面和不同的荧光标记的小鼠组织。我们的方法在厚组织中显示出优异的背景抑制,因此可能提供用于大规模生物组织的3D成像的替代工具。

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