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2
A quantitative analysis of various patterns applied in lattice light sheet microscopy.对晶格光片显微镜中应用的各种模式进行定量分析。
Nat Commun. 2022 Aug 8;13(1):4607. doi: 10.1038/s41467-022-32341-w.
3
A hybrid open-top light-sheet microscope for versatile multi-scale imaging of cleared tissues.一种混合式开顶光片显微镜,可用于清除组织的多功能多尺度成像。
Nat Methods. 2022 May;19(5):613-619. doi: 10.1038/s41592-022-01468-5. Epub 2022 May 11.
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Isotropic super-resolution light-sheet microscopy of dynamic intracellular structures at subsecond timescales.亚秒级时间尺度下动态细胞内结构的各向同性超分辨率光片显微镜技术。
Nat Methods. 2022 Mar;19(3):359-369. doi: 10.1038/s41592-022-01395-5. Epub 2022 Mar 11.
5
Volumetric interferometric lattice light-sheet imaging.体干涉格子光片成像。
Nat Biotechnol. 2021 Nov;39(11):1385-1393. doi: 10.1038/s41587-021-01042-y. Epub 2021 Oct 11.
6
Evaluation and development of deep neural networks for image super-resolution in optical microscopy.光学显微镜图像超分辨率的深度神经网络评估与发展。
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7
Minutes-timescale 3D isotropic imaging of entire organs at subcellular resolution by content-aware compressed-sensing light-sheet microscopy.基于内容感知压缩感知光片显微镜的亚细胞分辨率下整个器官的分钟级时间尺度 3D 各向同性成像。
Nat Commun. 2021 Jan 4;12(1):107. doi: 10.1038/s41467-020-20329-3.
8
Systematic and quantitative comparison of lattice and Gaussian light-sheets.晶格光片和高斯光片的系统定量比较
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9
Three-dimensional virtual refocusing of fluorescence microscopy images using deep learning.基于深度学习的荧光显微镜图像三维虚拟聚焦。
Nat Methods. 2019 Dec;16(12):1323-1331. doi: 10.1038/s41592-019-0622-5. Epub 2019 Nov 4.
10
Fourier ring correlation simplifies image restoration in fluorescence microscopy.傅里叶圆环相关技术简化了荧光显微镜的图像恢复。
Nat Commun. 2019 Jul 15;10(1):3103. doi: 10.1038/s41467-019-11024-z.

通过两个光片叠加实现结构光片荧光显微镜中的旁瓣抑制

Sidelobe suppression in structured light sheet fluorescence microscopy by the superposition of two light sheets.

作者信息

Han Qian, Shi Jianping, Shi Fenghua

机构信息

College of Physics and Electronic Technology, Anhui Normal University, Wuhu, 241000, Anhui, China.

出版信息

Biomed Opt Express. 2023 Feb 17;14(3):1178-1191. doi: 10.1364/BOE.481508. eCollection 2023 Mar 1.

DOI:10.1364/BOE.481508
PMID:36950249
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10026568/
Abstract

Light sheet microscopy has emerged as a powerful technique for three-dimensional and long-term vivo imaging within neuroscience and developmental biology. A light sheet illumination with structured light fields allows a better tradeoff between the field of view and axial resolution but suffers from strong side lobes. Here, we propose a method of producing structured light sheet illumination with suppressed side lobes by applying the superposition of two light sheets. The side lobe suppression results from the destructive interference between the side lobes and constructive interference between the main lobe of the two light sheets. In the proposed method, the incident light pattern in the rear pupil plane of the illumination objective is a combination of the incident light line beams required for the generation of the two interfering light sheets. We present a fast and simple calculation method to determine the incident light pattern in the rear pupil plane. Simulation results demonstrate the effectiveness of the proposed sidelobe suppression method for double-line light sheet, four-line light sheet, as well as line Bessel sheet. In particular, an 81% decrease in the relative side lobe energy can be achieved in case of double-line light sheet with an almost nonchanging propagation length. We show a way of using combined incident light patterns to generate structured light sheets with interference-resulted side lobe suppression, which is straightforward in design and with advantages of improved imaging performance.

摘要

光片显微镜已成为神经科学和发育生物学中用于三维和长期体内成像的强大技术。具有结构化光场的光片照明在视场和轴向分辨率之间实现了更好的权衡,但存在较强的旁瓣。在此,我们提出一种通过叠加两个光片来产生具有抑制旁瓣的结构化光片照明的方法。旁瓣抑制源于两个光片的旁瓣之间的相消干涉以及主瓣之间的相长干涉。在所提出的方法中,照明物镜后焦平面上的入射光图案是产生两个干涉光片所需的入射光线束的组合。我们提出一种快速简单的计算方法来确定后焦平面上的入射光图案。仿真结果证明了所提出的旁瓣抑制方法对双线光片、四线光片以及线贝塞尔光片的有效性。特别是,对于双线光片,在传播长度几乎不变的情况下,相对旁瓣能量可降低81%。我们展示了一种使用组合入射光图案来生成具有干涉导致旁瓣抑制的结构化光片的方法,该方法设计简单,具有改善成像性能的优点。