2.2.3 Development of New Heavy-ion Radiotherapy Technology—Toward Upgrading Heavy-ion Radiotherapy—
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/68/4/68_680407/_pdf
Reference11 articles.
1. 1) Furukawa, T., Inaniwa, T., Sato, S., Shirai, T., et al., Moving target irradiation with fast rescanning and gating in particle therapy, Med. Phys., 37, 4874–4879 (2010)
2. 2) Furukawa, T., Inaniwa, T., Sato, S., Shirai, T., et al., Performance of the NIRS fast scanning system for heavy-ion radiotherapy, Med. Phys., 37, 5672–5682 (2010)
3. 3) Furukawa, T., Hara, Y., Mizushima, K., Saotome, N., et al., Development of NIRS pencil beam scanning system for carbon ion radiotherapy, Nucl Instrum Methods B, 406, 361–367 (2017)
4. 4) Mori, S., Real-time image processing algorithm for marker-less tumor tracking using X-ray fluoroscopic imaging, Br. J. Radiol., 87, 20140001 (2014)
5. 6) Eickhoff, H., Test of a light-ion gantry section as an example of preparations of the therapy facility in Heidelberg, Proceedings of the 8th European Particle Accelerator Conference, Paris, EPS-IGA and CERN, Geneva, 2730–2732 (2002)
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