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基于 Schwartz 调制的大视场光片荧光显微镜在深部组织中的应用。

Enlarged field of view based on Schwartz modulation for light sheet fluorescence microscopy in deep tissue.

出版信息

Opt Lett. 2020 Sep 1;45(17):4851-4854. doi: 10.1364/OL.398985.

Abstract

The combination of light sheet fluorescence microscopy (LSFM) and the optical clearing method can achieve fast three-dimensional high-resolution imaging. However, there is an essential contradiction between the field of view (FoV) and spatial resolution. Also, aberration and scattering still exist after tissue clearing, which seriously limits the imaging depth of LSFM. Here we propose a Schwartz modulation method and implement it in LSFM based on a quasi-Bessel beam to enlarge the imaging FoV without sacrificing its spatial resolution. The simulation results show that the FoV of the LSFM is enlarged by a factor of 1.73 compared to the Bessel beam. The capability of extremely fast decay along the optical axis makes Schwartz modulation more tolerant for scattering, indicating potential applications for deep tissue imaging. Also, the capability of sidelobe suppression effectively decreases unnecessary fluorescence excitation and photobleaching.

摘要

光片荧光显微镜(LSFM)与光学透明化方法相结合,可以实现快速的三维高分辨率成像。然而,视野(FOV)和空间分辨率之间存在着本质的矛盾。此外,组织透明化后仍然存在像差和散射,这严重限制了 LSFM 的成像深度。在这里,我们提出了一种 Schwartz 调制方法,并将其应用于基于准贝塞尔光束的 LSFM 中,在不牺牲空间分辨率的情况下扩大成像 FOV。模拟结果表明,与贝塞尔光束相比,LSFM 的 FOV 放大了 1.73 倍。Schwartz 调制沿光轴的极快衰减能力使其对散射更具容忍性,表明其在深层组织成像中有潜在的应用。此外,旁瓣抑制能力有效地减少了不必要的荧光激发和光漂白。

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