Three-Dimensional Isotropic STED Nanoscopy using a Single Objective

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Hauptverfasser: Zhang, Renlong, Weng, Xiaoyu, Zhou, Haoxian, Wang, Luwei, Lin, Fangrui, Yan, Wei, Gao, Xiumin, Yu, Bin, Lin, Danying, Liu, Liwei, Zhang, Chenshuang, Green, Kayla K., Schmidt, Ewoud R. E., Zhuang, Songlin, Qu, Junle
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Veröffentlicht: 2025
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author Zhang, Renlong
Weng, Xiaoyu
Zhou, Haoxian
Wang, Luwei
Lin, Fangrui
Yan, Wei
Gao, Xiumin
Yu, Bin
Lin, Danying
Liu, Liwei
Zhang, Chenshuang
Green, Kayla K.
Schmidt, Ewoud R. E.
Zhuang, Songlin
Qu, Junle
author_facet Zhang, Renlong
Weng, Xiaoyu
Zhou, Haoxian
Wang, Luwei
Lin, Fangrui
Yan, Wei
Gao, Xiumin
Yu, Bin
Lin, Danying
Liu, Liwei
Zhang, Chenshuang
Green, Kayla K.
Schmidt, Ewoud R. E.
Zhuang, Songlin
Qu, Junle
contents Accurate three-dimensional (3D) imaging requires an isotropic point spread function (PSF). However, the inherent missing aperture of a single objective lens results in an elongated, cigar-like PSF, which has rendered isotropic resolution in fluorescence microscopy seemingly insurmountable without a 4π configuration for decades. To address this long-standing challenge, we introduce ISO-STED (Isotropic Single-Objective STED) Nanoscopy, a novel approach that employs a single objective lens and a single depletion beam. By utilizing a hollow depletion focus, ISO-STED achieves an isotropic PSF without relying on a 4π configuration. This innovative design enables uniform fluorescence suppression in all directions, thereby yielding an isotropic 3D resolution of approximately 70 nm. Our work not only demonstrates the potential of ISO-STED Nanoscopy to provide a compact and versatile solution for isotropic 3D imaging in complex specimens but also paves the way for more accessible and practical applications in various research fields, including biomedical research and neuroscience.
format Preprint
id arxiv_https___arxiv_org_abs_2507_06718
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Three-Dimensional Isotropic STED Nanoscopy using a Single Objective
Zhang, Renlong
Weng, Xiaoyu
Zhou, Haoxian
Wang, Luwei
Lin, Fangrui
Yan, Wei
Gao, Xiumin
Yu, Bin
Lin, Danying
Liu, Liwei
Zhang, Chenshuang
Green, Kayla K.
Schmidt, Ewoud R. E.
Zhuang, Songlin
Qu, Junle
Optics
Applied Physics
Accurate three-dimensional (3D) imaging requires an isotropic point spread function (PSF). However, the inherent missing aperture of a single objective lens results in an elongated, cigar-like PSF, which has rendered isotropic resolution in fluorescence microscopy seemingly insurmountable without a 4π configuration for decades. To address this long-standing challenge, we introduce ISO-STED (Isotropic Single-Objective STED) Nanoscopy, a novel approach that employs a single objective lens and a single depletion beam. By utilizing a hollow depletion focus, ISO-STED achieves an isotropic PSF without relying on a 4π configuration. This innovative design enables uniform fluorescence suppression in all directions, thereby yielding an isotropic 3D resolution of approximately 70 nm. Our work not only demonstrates the potential of ISO-STED Nanoscopy to provide a compact and versatile solution for isotropic 3D imaging in complex specimens but also paves the way for more accessible and practical applications in various research fields, including biomedical research and neuroscience.
title Three-Dimensional Isotropic STED Nanoscopy using a Single Objective
topic Optics
Applied Physics
url https://arxiv.org/abs/2507.06718