Literature DB >> 21148591

Analysis of cell-survival fractions for heavy-ion irradiations based on microdosimetric kinetic model implemented in the particle and heavy ion transport code system.

T Sato1, R Watanabe, Y Kase, C Tsuruoka, M Suzuki, Y Furusawa, K Niita.   

Abstract

It is considered that the linear energy transfer (LET) may not be the ideal index for expressing the relative biological effectiveness (RBE) of cell killing for heavy-ion irradiation, as the ion-species dependencies have clearly been observed in the relation between LET and RBE derived from cell-survival fraction data. The previously measured survival fractions of four cell lines irradiated by various ion species, employing the saturation-corrected dose-mean lineal energy, y*, instead of LET as the index of the RBE were therefore re-analysed. In the analysis, the initial slopes of the survival fractions, the so-called α-parameter in the linear-quadratic model, were plotted as a function of y*, which was calculated by the microdosimetric kinetic (MK) model implemented in the Particle and Heavy Ion Transport code System. It was found from the analysis that the ion-species dependencies observed in the relations between α and LET disappeared from those between α and y*, and their relations can be well reproduced by a simple equation derived from the MK model. These results clearly indicate the suitability of y* to be used in the estimation of the RBE of cell killing for heavy-ion irradiations, which is of great importance in the treatment planning of charged-particle therapy.

Mesh:

Year:  2010        PMID: 21148591     DOI: 10.1093/rpd/ncq484

Source DB:  PubMed          Journal:  Radiat Prot Dosimetry        ISSN: 0144-8420            Impact factor:   0.972


  6 in total

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Authors:  Lisa Polster; Jan Schuemann; Ilaria Rinaldi; Lucas Burigo; Aimee L McNamara; Robert D Stewart; Andrea Attili; David J Carlson; Tatsuhiko Sato; José Ramos Méndez; Bruce Faddegon; Joseph Perl; Harald Paganetti
Journal:  Phys Med Biol       Date:  2015-06-10       Impact factor: 3.609

2.  The effect of microdosimetric 12C6+ heavy ion irradiation and Mg2+ on canthaxanthin production in a novel strain of Dietzia natronolimnaea.

Authors:  Xiang Zhou; Jia-Rong Xie; Lei Tao; Zhi-Jun Xin; Feng-Wu Zhao; Xi-Hong Lu; Mei-Rong Zhao; Liang Wang; Jian-Ping Liang
Journal:  BMC Microbiol       Date:  2013-09-28       Impact factor: 3.605

3.  Validation of the physical and RBE-weighted dose estimator based on PHITS coupled with a microdosimetric kinetic model for proton therapy.

Authors:  Kenta Takada; Tatsuhiko Sato; Hiroaki Kumada; Junichi Koketsu; Hideyuki Takei; Hideyuki Sakurai; Takeji Sakae
Journal:  J Radiat Res       Date:  2018-01-01       Impact factor: 2.724

4.  Monte Carlo investigation of the characteristics of radioactive beams for heavy ion therapy.

Authors:  Andrew Chacon; Mitra Safavi-Naeini; David Bolst; Susanna Guatelli; Daniel R Franklin; Yuma Iwao; Go Akamatsu; Hideaki Tashima; Eiji Yoshida; Fumihiko Nishikido; Atsushi Kitagawa; Akram Mohammadi; Marie-Claude Gregoire; Taiga Yamaya; Anatoly B Rosenfeld
Journal:  Sci Rep       Date:  2019-04-25       Impact factor: 4.379

5.  Microdosimetric calculation of relative biological effectiveness for design of therapeutic proton beams.

Authors:  Yuki Kase; Wataru Yamashita; Naruhiro Matsufuji; Kenta Takada; Takeji Sakae; Yoshiya Furusawa; Haruo Yamashita; Shigeyuki Murayama
Journal:  J Radiat Res       Date:  2012-11-23       Impact factor: 2.724

6.  Radiation induces acid tolerance of Clostridium tyrobutyricum and enhances bioproduction of butyric acid through a metabolic switch.

Authors:  Xiang Zhou; Xi-Hong Lu; Xue-Hu Li; Zhi-Jun Xin; Jia-Rong Xie; Mei-Rong Zhao; Liang Wang; Wen-Yue Du; Jian-Ping Liang
Journal:  Biotechnol Biofuels       Date:  2014-02-18       Impact factor: 6.040

  6 in total

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