Mirror-enhanced scanning light-field microscopy for long-term high-speed 3D imaging with isotropic resolution

Mirror-enhanced scanning light-field microscopy (MiSLFM) achieves long-term high-speed 3D imaging at near-isotropic subcellular resolution with a single objective, facilitating native observations of various intracellular and intercellular interactions.

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Autores principales: Bo Xiong, Tianyi Zhu, Yuhan Xiang, Xiaopeng Li, Jinqiang Yu, Zheng Jiang, Yihan Niu, Dong Jiang, Xu Zhang, Lu Fang, Jiamin Wu, Qionghai Dai
Formato: article
Lenguaje:EN
Publicado: Nature Publishing Group 2021
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Acceso en línea:https://doaj.org/article/5bd89dfe289c47818b2a19a83d1066ae
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spelling oai:doaj.org-article:5bd89dfe289c47818b2a19a83d1066ae2021-11-08T10:57:46ZMirror-enhanced scanning light-field microscopy for long-term high-speed 3D imaging with isotropic resolution10.1038/s41377-021-00665-92047-7538https://doaj.org/article/5bd89dfe289c47818b2a19a83d1066ae2021-11-01T00:00:00Zhttps://doi.org/10.1038/s41377-021-00665-9https://doaj.org/toc/2047-7538Mirror-enhanced scanning light-field microscopy (MiSLFM) achieves long-term high-speed 3D imaging at near-isotropic subcellular resolution with a single objective, facilitating native observations of various intracellular and intercellular interactions.Bo XiongTianyi ZhuYuhan XiangXiaopeng LiJinqiang YuZheng JiangYihan NiuDong JiangXu ZhangLu FangJiamin WuQionghai DaiNature Publishing GrouparticleApplied optics. PhotonicsTA1501-1820Optics. LightQC350-467ENLight: Science & Applications, Vol 10, Iss 1, Pp 1-11 (2021)
institution DOAJ
collection DOAJ
language EN
topic Applied optics. Photonics
TA1501-1820
Optics. Light
QC350-467
spellingShingle Applied optics. Photonics
TA1501-1820
Optics. Light
QC350-467
Bo Xiong
Tianyi Zhu
Yuhan Xiang
Xiaopeng Li
Jinqiang Yu
Zheng Jiang
Yihan Niu
Dong Jiang
Xu Zhang
Lu Fang
Jiamin Wu
Qionghai Dai
Mirror-enhanced scanning light-field microscopy for long-term high-speed 3D imaging with isotropic resolution
description Mirror-enhanced scanning light-field microscopy (MiSLFM) achieves long-term high-speed 3D imaging at near-isotropic subcellular resolution with a single objective, facilitating native observations of various intracellular and intercellular interactions.
format article
author Bo Xiong
Tianyi Zhu
Yuhan Xiang
Xiaopeng Li
Jinqiang Yu
Zheng Jiang
Yihan Niu
Dong Jiang
Xu Zhang
Lu Fang
Jiamin Wu
Qionghai Dai
author_facet Bo Xiong
Tianyi Zhu
Yuhan Xiang
Xiaopeng Li
Jinqiang Yu
Zheng Jiang
Yihan Niu
Dong Jiang
Xu Zhang
Lu Fang
Jiamin Wu
Qionghai Dai
author_sort Bo Xiong
title Mirror-enhanced scanning light-field microscopy for long-term high-speed 3D imaging with isotropic resolution
title_short Mirror-enhanced scanning light-field microscopy for long-term high-speed 3D imaging with isotropic resolution
title_full Mirror-enhanced scanning light-field microscopy for long-term high-speed 3D imaging with isotropic resolution
title_fullStr Mirror-enhanced scanning light-field microscopy for long-term high-speed 3D imaging with isotropic resolution
title_full_unstemmed Mirror-enhanced scanning light-field microscopy for long-term high-speed 3D imaging with isotropic resolution
title_sort mirror-enhanced scanning light-field microscopy for long-term high-speed 3d imaging with isotropic resolution
publisher Nature Publishing Group
publishDate 2021
url https://doaj.org/article/5bd89dfe289c47818b2a19a83d1066ae
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