Literature DB >> 35768724

A practical guide to scanning light-field microscopy with digital adaptive optics.

Zhi Lu1,2, Yeyi Cai1,2, Yixin Nie1,2, Yuxin Yang1,2, Jiamin Wu3,4, Qionghai Dai5,6,7.   

Abstract

With the development of a wide variety of animal models in recent years, there is a rapidly growing demand for long-term, high-speed intravital fluorescence imaging to observe intercellular and intracellular interactions in their native states. Scanning light-field microscopy (sLFM) with digital adaptive optics provides a compact computational solution by imaging the entire volume in a tomographic way with orders-of-magnitude improvement in spatiotemporal resolution and reduction in phototoxicity, as compared to traditional intravital microscopy. Here, we present a step-by-step protocol for both hardware and software implementation of multicolor sLFM as an add-on to a normal wide-field fluorescence microscope by using off-the-shelf lenses and devices at low cost. The procedure can be easily applied to other LFM variants, which can be advantageous in certain experimental contexts. Owing to the strong reliance of sLFM on algorithmic post-processing for high-quality data, the protocol describes various kinds of artefacts and corresponding parameters used for correcting and performance optimization. To increase the tolerance to system misalignment and differences in device fabrication, we describe a one-step calibration method for robust imaging performance up to the diffraction limit. An open-source graphical user interface is presented for hardware synchronization and real-time rendering of multiview images. The whole procedure including optical setup, software installation, system calibration and 3D reconstruction can be executed in 3-4 d with basic knowledge in optics and electronics.
© 2022. Springer Nature Limited.

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Year:  2022        PMID: 35768724     DOI: 10.1038/s41596-022-00703-9

Source DB:  PubMed          Journal:  Nat Protoc        ISSN: 1750-2799            Impact factor:   17.021


  41 in total

1.  Wave optics theory and 3-D deconvolution for the light field microscope.

Authors:  Michael Broxton; Logan Grosenick; Samuel Yang; Noy Cohen; Aaron Andalman; Karl Deisseroth; Marc Levoy
Journal:  Opt Express       Date:  2013-10-21       Impact factor: 3.894

2.  Video rate volumetric Ca2+ imaging across cortex using seeded iterative demixing (SID) microscopy.

Authors:  Tobias Nöbauer; Oliver Skocek; Alejandro J Pernía-Andrade; Lukas Weilguny; Francisca Martínez Traub; Maxim I Molodtsov; Alipasha Vaziri
Journal:  Nat Methods       Date:  2017-06-26       Impact factor: 28.547

Review 3.  Recording the wild lives of immune cells.

Authors:  Mikael J Pittet; Christopher S Garris; Sean P Arlauckas; Ralph Weissleder
Journal:  Sci Immunol       Date:  2018-09-07

4.  High-resolution Fourier light-field microscopy for volumetric multi-color live-cell imaging.

Authors:  Xuanwen Hua; Wenhao Liu; Shu Jia
Journal:  Optica       Date:  2021-04-29       Impact factor: 11.104

5.  Observing the cell in its native state: Imaging subcellular dynamics in multicellular organisms.

Authors:  Tsung-Li Liu; Srigokul Upadhyayula; Daniel E Milkie; Ved Singh; Kai Wang; Ian A Swinburne; Kishore R Mosaliganti; Zach M Collins; Tom W Hiscock; Jamien Shea; Abraham Q Kohrman; Taylor N Medwig; Daphne Dambournet; Ryan Forster; Brian Cunniff; Yuan Ruan; Hanako Yashiro; Steffen Scholpp; Elliot M Meyerowitz; Dirk Hockemeyer; David G Drubin; Benjamin L Martin; David Q Matus; Minoru Koyama; Sean G Megason; Tom Kirchhausen; Eric Betzig
Journal:  Science       Date:  2018-04-20       Impact factor: 47.728

6.  Rapid whole brain imaging of neural activity in freely behaving larval zebrafish (Danio rerio).

Authors:  Lin Cong; Zeguan Wang; Yuming Chai; Wei Hang; Chunfeng Shang; Wenbin Yang; Lu Bai; Jiulin Du; Kai Wang; Quan Wen
Journal:  Elife       Date:  2017-09-20       Impact factor: 8.140

Review 7.  Faster fluorescence microscopy: advances in high speed biological imaging.

Authors:  Peter W Winter; Hari Shroff
Journal:  Curr Opin Chem Biol       Date:  2014-05-09       Impact factor: 8.822

8.  Intravital Microscopy Reveals Differences in the Kinetics of Endocytic Pathways between Cell Cultures and Live Animals.

Authors:  Andrius Masedunskas; Natalie Porat-Shliom; Kamil Rechache; Myo-Pale' Aye; Roberto Weigert
Journal:  Cells       Date:  2012-11-16       Impact factor: 6.600

9.  Iterative tomography with digital adaptive optics permits hour-long intravital observation of 3D subcellular dynamics at millisecond scale.

Authors:  Jiamin Wu; Zhi Lu; Dong Jiang; Yuduo Guo; Hui Qiao; Yi Zhang; Tianyi Zhu; Yeyi Cai; Xu Zhang; Karl Zhanghao; Hao Xie; Tao Yan; Guoxun Zhang; Xiaoxu Li; Zheng Jiang; Xing Lin; Lu Fang; Bing Zhou; Peng Xi; Jingtao Fan; Li Yu; Qionghai Dai
Journal:  Cell       Date:  2021-05-25       Impact factor: 41.582

10.  Simultaneous whole-animal 3D imaging of neuronal activity using light-field microscopy.

Authors:  Robert Prevedel; Young-Gyu Yoon; Maximilian Hoffmann; Nikita Pak; Gordon Wetzstein; Saul Kato; Tina Schrödel; Ramesh Raskar; Manuel Zimmer; Edward S Boyden; Alipasha Vaziri
Journal:  Nat Methods       Date:  2014-05-18       Impact factor: 28.547

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