xSCYTE: Express Single-frame Cytometer through Tomographic Phase

Fuente: arXiv
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Autori principali: Ge, Baoliang, He, Yanping, Deng, Mo, Rahman, Md Habibur, Wang, Yijin, Wu, Ziling, Yang, Yongliang, Kuang, Cuifang, Wong, Chung Hong N., Chan, Michael K., Ho, Yi-Ping, Duan, Liting, Yaqoob, Zahid, So, Peter T. C., Barbastathis, George, Zhou, Renjie
Natura: Preprint
Pubblicazione: 2022
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author Ge, Baoliang
He, Yanping
Deng, Mo
Rahman, Md Habibur
Wang, Yijin
Wu, Ziling
Yang, Yongliang
Kuang, Cuifang
Wong, Chung Hong N.
Chan, Michael K.
Ho, Yi-Ping
Duan, Liting
Yaqoob, Zahid
So, Peter T. C.
Barbastathis, George
Zhou, Renjie
author_facet Ge, Baoliang
He, Yanping
Deng, Mo
Rahman, Md Habibur
Wang, Yijin
Wu, Ziling
Yang, Yongliang
Kuang, Cuifang
Wong, Chung Hong N.
Chan, Michael K.
Ho, Yi-Ping
Duan, Liting
Yaqoob, Zahid
So, Peter T. C.
Barbastathis, George
Zhou, Renjie
contents Rapid, comprehensive, and accurate cell phenotyping without compromising viability, is crucial to many important biomedical applications, including stem-cell therapy, drug screening, and liquid biopsy. Typical image cytometry methods acquire two-dimensional (2D) fluorescence images, where the fluorescence labelling process may damage living cells, and the information from 2D images is not comprehensive enough for precise cell analysis. Although three-dimensional (3D) label-free image cytometry holds great promise, its high throughput development faces several technical challenges. Here, we report eXpress Single-frame CYtometer through Tomographic phasE (xSCYTE), which reconstructs 3D Refractive Index (RI) maps of cells with diffraction-limited resolution. With these high-speed and high-precision imaging capabilities empowered by artificial intelligence, we envision xSCYTE may open up many new avenues of biomedical investigations and industries, such as multi-omic assays and quality control during cellular therapeutic manufacturing.
format Preprint
id arxiv_https___arxiv_org_abs_2202_03627
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle xSCYTE: Express Single-frame Cytometer through Tomographic Phase
Ge, Baoliang
He, Yanping
Deng, Mo
Rahman, Md Habibur
Wang, Yijin
Wu, Ziling
Yang, Yongliang
Kuang, Cuifang
Wong, Chung Hong N.
Chan, Michael K.
Ho, Yi-Ping
Duan, Liting
Yaqoob, Zahid
So, Peter T. C.
Barbastathis, George
Zhou, Renjie
Optics
Biological Physics
Rapid, comprehensive, and accurate cell phenotyping without compromising viability, is crucial to many important biomedical applications, including stem-cell therapy, drug screening, and liquid biopsy. Typical image cytometry methods acquire two-dimensional (2D) fluorescence images, where the fluorescence labelling process may damage living cells, and the information from 2D images is not comprehensive enough for precise cell analysis. Although three-dimensional (3D) label-free image cytometry holds great promise, its high throughput development faces several technical challenges. Here, we report eXpress Single-frame CYtometer through Tomographic phasE (xSCYTE), which reconstructs 3D Refractive Index (RI) maps of cells with diffraction-limited resolution. With these high-speed and high-precision imaging capabilities empowered by artificial intelligence, we envision xSCYTE may open up many new avenues of biomedical investigations and industries, such as multi-omic assays and quality control during cellular therapeutic manufacturing.
title xSCYTE: Express Single-frame Cytometer through Tomographic Phase
topic Optics
Biological Physics
url https://arxiv.org/abs/2202.03627