Label-free adaptive optics single-molecule localization microscopy for whole zebrafish

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22

초록

Specimen-induced aberration can limit the imaging depth in single-molecule localization microscopy (SMLM). Here, the authors apply label-free wavefront sensing adaptive optics to SMLM for deep-tissue super-resolution imaging. Specimen-induced aberration has been a major factor limiting the imaging depth of single-molecule localization microscopy (SMLM). Here, we report the application of label-free wavefront sensing adaptive optics to SMLM for deep-tissue super-resolution imaging. The proposed system measures complex tissue aberrations from intrinsic reflectance rather than fluorescence emission and physically corrects the wavefront distortion more than three-fold stronger than the previous limit. This enables us to resolve sub-diffraction morphologies of cilia and oligodendrocytes in whole zebrafish as well as dendritic spines in thick mouse brain tissues at the depth of up to 102 & mu;m with localization number enhancement by up to 37 times and localization precision comparable to aberration-free samples. The proposed approach can expand the application range of SMLM to whole zebrafish that cause the loss of localization number owing to severe tissue aberrations.

키워드

STED MICROSCOPY; NERVOUS-SYSTEM; SUPERRESOLUTION; OLIGODENDROCYTES; ABERRATIONS; MYELIN; CELLS
제목
Label-free adaptive optics single-molecule localization microscopy for whole zebrafish
저자
Park, Sanghyeon; Jo, Yonghyeon; Kang, Minsu; Hong, Jin Hee; Ko, Sangyoon; Kim, Suhyun; Park, Sangjun; Park, Hae Chul; Shim, Sang-Hee; Choi, Wonshik
DOI
10.1038/s41467-023-39896-2
발행일
2023-07-13
유형
Article
저널명
Nature Communications
권
14
호
1