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Reduction of distortion in photothermal microscopy and its application to the high-resolution three-dimensional imaging of nonfluorescent tissues

机译:光热显微镜中变形的减少及其在非荧光组织的高分辨率三维成像中的应用

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A scheme for reducing image distortion in photothermal microscopy is presented. In photothermal microscopy, the signal shape exhibits twin peaks corresponding to the focusing or defocusing of the probe beam when a sample is scanned in the axial direction. This causes a distortion when imaging a structured sample in the axial plane. Here, we demonstrate that image distortion caused by the twin peaks is effectively suppressed by providing a small offset between two the focal planes of the pump and the probe beams. Experimental results demonstrate improvement in resolution, especially in the axial direction, over conventional optical microscopy—even with the focal offset. When a dry objective lens with a numerical aperture of 0.95 is used, the full width at half the maximum of the axial point spread function is 0.6 μm, which is 50% (62%) smaller than the focal spot sizes of the pump (probe) beam. Herein, we present high-resolution three-dimensional imaging of thick biological tissues based on the present scheme.
机译:提出了一种减少光热显微镜图像失真的方案。在光热显微镜中,当在轴向方向上扫描样品时,信号形状会显示出对应于探测光束聚焦或散焦的双峰。当在轴向平面中对结构化样本成像时,这会导致变形。在这里,我们证明了通过在泵浦的两个焦平面和探测光束之间提供小的偏移可以有效地抑制由双峰引起的图像失真。实验结果表明,与传统的光学显微镜相比,即使在焦距偏移的情况下,分辨率也得到了改善,尤其是在轴向上。当使用数值孔径为0.95的干物镜时,轴向扩散函数最大值的一半处的全宽为0.6μm,比泵的焦点尺寸小50%(62%)(探头)光束。在这里,我们提出了基于本方案的厚厚的生物组织的高分辨率三维成像。

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