Wang Shaohu
Chinese Academy of Sciences
9 Papers
12 Citations
Wang Shaohu is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Microbeam & Beam (structure). The author has an hindex of 2, co-authored 9 publications.
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Papers
Quantitative Single-Ion Irradiation by ASIPP Microbeam
Wang Xu-Fei,Chen Lianyun,Hu Zhiwen,Wang Xiaohua,Zhang Jun,Li Jun,Chen Bin,Hu Suhua,Shi Zhong-tao,Wu Yu,Xu Mingliang,Wu Li-Jun,Wang Shaohu,Yu Zengliang +13 more
TL;DR: In this article, a single-ion microbeam facility has been constructed by the microbeam research group in ASIPP (Institute of Plasma Physics, Chinese Academy of Science), which was designed to deliver defined numbers of hydrogen ions produced by a van de Graaff accelerator, covering an energy range from 200?keV to 3?MeV, into living cells (5??m?20m diameter) growing in culture on thin plastic films.
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Studies of the beam finding and targeting accuracy of the CAS-LIBB single-particle microbeam
Wang Xiaohua,Wang Xu-Fei,Hu Zhiwen,Cheng Lian-Yun,Zhang Jun,Zhan Furu,Li Jun,Chen Bin,Xu Mingliang,Wu Li-Jun,Wang Shaohu,Yu Zengliang +11 more
TL;DR: In this article, a single-particle microbeam facility has been constructed at the Key Laboratory of Ion Beam Bioengineering (LIBB), Chinese Academy of Sciences (CAS), which was designed to deliver a defined number of hydrogen ions produced by a Van de Graaff accelerator, in an energy range of 2.0-3.0MeV, into an area smaller than the nuclei of individual living cells grown on thin plastic films.
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Cell Locating with the Image Analysis System of the CAS-LIBB Single-Particle Microbeam Facility
TL;DR: This paper addresses the methods for nucleus, cytoplasm and bystander irradiation in detail from the precision of target finding and cell locating in the image analysis system.
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Analysis of Magnetic Field of the DNB Ion Source
TL;DR: In this article, a distribution of the magnetic field produced by permanent magnets in the DNB ion source is calculated and analyzed in order to understand the plasma confinement in a cusped magnetic field and optimize plasma discharge.
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The Progress of a Microbeam Facility in the Institute of Plasma Physics
Wu Yu,Hu Suhua,Li Jun,Chen Bin,Zhang Shuqing,Wang Xu-Fei,Shi Zhong-tao,Yuan Hang,Zhang Jun,Wang Shaohu,Yu Zengliang +10 more
TL;DR: In this paper, the beam quality was optimized to get smaller diameter of beam-spot in microbeam system, and the results showed that the beam can go through the collimator including a 10 μm diameter aperture and the 3.5 μm thick vacuum sealing film.
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