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利用腔内控制和非相干脉冲整形实现高轴向分辨率和大视场的深度线时聚焦。

Deep line-temporal focusing with high axial resolution and a large field-of-view using intracavity control and incoherent pulse shaping.

出版信息

Opt Lett. 2018 Oct 15;43(20):4919-4922. doi: 10.1364/OL.43.004919.

Abstract

Line-temporal focusing has been recognized as an elegant strategy that provides two-photon microscopy with an effective means for fast imaging through parallelization, together with an improved resilience to scattering for deep imaging. However, the axial resolution remains sub-optimal, except when using high NA objectives and a small field-of-view. With the introduction of an intracavity control of the spectral width of the femtosecond laser to adaptively fill the back aperture of the objective lens, line-temporal focusing two-photon microscopy is demonstrated to reach near-diffraction-limited axial resolution with a large back-aperture objective lens, and improved immunity to sample scattering. In addition, a new incoherent flattop beam shaping method is proposed which provides a uniform contrast with little degradation of the axial resolution along the focus line, even deep in the sample. This is demonstrated in large volumetric imaging of mouse lung samples.

摘要

线时聚焦已被认为是一种优雅的策略,它为双光子显微镜提供了一种有效的快速成像方法,通过并行化提高了对散射的弹性,同时还提高了深成像的分辨率。然而,轴向分辨率仍然不理想,除非使用高数值孔径物镜和小视场。通过腔内控制飞秒激光的光谱宽度来自适应地填充物镜的后孔径,实现了线时聚焦双光子显微镜,达到了近衍射极限的轴向分辨率,同时具有大后孔径物镜和提高的抗样品散射能力。此外,提出了一种新的非相干平顶光束整形方法,即使在样品深处,该方法也能在线聚焦线上提供均匀的对比度,轴向分辨率几乎没有降低。这在小鼠肺样本的大体积成像中得到了证明。

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