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Isotropic three-dimensional imaging with lattice light-sheet difference microscopy

机译:具有晶格光片差显微镜的各向同性三维成像

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Through the interference of several beams with the same phase at the rear pupil, an optical lattice is generated and used as the excitation light field in lattice light-sheet microscopy (LLSM). Although, LLSM offers fast imaging ability through the dithered mode, it suffers from poor axial resolution. On the other hand, the structured illumination microscopy (SIM) mode in LLSM provides a high but anisotropic spatial resolution at the price of a lower imaging speed. In this Letter, we propose a new, to the best of our knowledge, type of optical lattice by defining the composed beam vectors with different phases. The lattice light-sheet difference microscopy (LLSDM) proposed in this work utilizes the new optical lattice along with the conventional one by simply changing the pattern loaded on the spatial light modulator. Through simulations with parameters obtained from the real acquisition procedures and the microscope properties, we examine the feasibility of LLSDM, and obtain nearly isotropic spatial resolution and great alleviation of the sidelobes. These characteristics enable LLSDM to broaden the accessible imaging content of light-sheet microscopes and further facilitate their applications in life sciences. (C) 2020 Optical Society of America.
机译:通过在后瞳孔中的几个具有相同相的梁的干扰,产生光学晶格并用作晶格光纸显微镜(LLSM)中的激发光场。虽然LLSM通过抖动模式提供快速的成像能力,但它具有良好的轴向分辨率。另一方面,LLSM中的结构化照明显微镜(SIM)模式以较低的成像速度的价格提供高但各向异性的空间分辨率。在这封信中,我们通过定义具有不同阶段的组合的光束向量来提出新的,通过我们的知识键入光学晶格。本作工作中提出的晶格光板差异显微镜(LLSDM)通过简单地改变在空间光调制器上的图案来利用新的光学晶格以及传统的光栅。通过模拟从真实采集程序和显微镜特性获得的参数,我们研究了LLSDM的可行性,并获得了几乎各向同性的空间分辨率和对侧链的巨大缓解。这些特性使LLSDM能够拓宽光板显微镜的可接近的成像含量,并进一步促进其在生命科学中的应用。 (c)2020美国光学学会。

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