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Cited 2 time in webofscience Cited 3 time in scopus
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Quantitative analysis of the effect of radiation on mitochondria structure using coherent diffraction imaging with a clustering algorithm SCIE SCOPUS

Title
Quantitative analysis of the effect of radiation on mitochondria structure using coherent diffraction imaging with a clustering algorithm
Authors
Pan, DanFan, JiadongNie, ZhenzhenSun, ZhibinZhang, JianhuaTong, YajunHe, BoSong, ChangyongKohmura, YoshikiYabashi, MakinaIshikawa, TetsuyaShen, YuequanJiang, Huaidong
Date Issued
2022-03
Publisher
INT UNION CRYSTALLOGRAPHY
Abstract
Radiation damage and a low signal-to-noise ratio are the primary factors that limit spatial resolution in coherent diffraction imaging (CDI) of biomaterials using X-ray sources. Introduced here is a clustering algorithm named ConvRe based on deep learning, and it is applied to obtain accurate and consistent image reconstruction from noisy diffraction patterns of weakly scattering biomaterials. To investigate the impact of X-ray radiation on soft biomaterials, CDI experiments were performed on mitochondria from human embryonic kidney cells using synchrotron radiation. Benefiting from the new algorithm, structural changes in the mitochondria induced by X-ray radiation damage were quantitatively characterized and analysed at the nanoscale with different radiation doses. This work also provides a promising approach for improving the imaging quality of biomaterials with XFEL-based plane-wave CDI.
URI
https://oasis.postech.ac.kr/handle/2014.oak/117914
DOI
10.1107/S2052252521012963
Article Type
Article
Citation
IUCRJ, vol. 9, page. 223 - 230, 2022-03
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