4.2.2 Development of Biological Models and Related Detectors for Ion-beam Therapy
Author:
Affiliation:
1. Department of Accelerator and Medical Physics, National Institute of Radiological Sciences, National Institutes for Quantum and Radiological Science and Technology
Publisher
Japan Radioisotope Association
Subject
Radiation
Link
https://www.jstage.jst.go.jp/article/radioisotopes/68/6/68_680603/_pdf
Reference28 articles.
1. 1) Kanai, T., Endo, M., Minohara, S., Miyahara, N., et al., Biophysical characteristics of HIMAC clinical irradiation system for heavy-ion radiation therapy, Int. J. Radiat. Oncol. Biol. Phys., 44, 201–210 (1999)
2. 2) Furusawa, Y., Fukutsu, K., Aoki, M., Itsukaichi, H., et al., Inactivation of aerobic and hypoxic cells from three different cell lines by accelerated 3He-, 12C- and 20Ne-ion beams, Radiat. Res., 154, 485–496 (2000)
3. 3) Webb, S. and Nahum, A. E., A model for calculating tumour control probability in radiotherapy including the effects of inhomogeneous distributions of dose and clonogenic cell density, Phys. Med. Biol., 38, 653–666 (1993)
4. 4) Kanai, T., Matsufuji, N., Miyamoto, T., Mizoe, J., et al., Examination of GyE system for HIMAC carbon therapy, Int. J. Radiat. Oncol. Biol. Phys., 64, 650–656 (2006)
5. 5) Hawkins, R. B., A statistical theory of cell killing by radiation of varying linear energy transfer, Radiat. Res., 140, 366–374 (1994)
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