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Development Of The Compact Proton Beam Therapy System Dedicated To Spot Scanning With Real-Time Tumor-Tracking Technology
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Development Of The Compact Proton Beam Therapy System Dedicated To Spot Scanning With Real-Time Tumor-Tracking Technology

Masumi Umezawa, Rintaro Fujimoto, Tooru Umekawa, Yuusuke Fujii, Taisuke Takayanagi, Futaro Ebina, Takamichi Aoki, Yoshihiko Nagamine, Koji Matsuda, Kazuo Hiramoto, …
APPLICATION OF ACCELERATORS IN RESEARCH AND INDUSTRY, 卷.1525(1), 頁碼.360-363
AIP Conference Proceedings
19/04/2013
Web of Science ID: WOS:000319997900072

摘要

Physical Sciences Physics Physics, Applied Physics, Nuclear Physics, Particles & Fields Science & Technology
Hokkaido University and Hitachi Ltd. have started joint development of the Gated Spot Scanning Proton Therapy with Real-Time Tumor-Tracking System by integrating real-time tumor tracking technology (RTRT) and the proton therapy system dedicated to discrete spot scanning techniques under the "Funding Program for World-Leading Innovative R&D on Science and Technology (FIRST Program)". In this development, we have designed the synchrotron-based accelerator system by using the advantages of the spot scanning technique in order to realize a more compact and lower cost proton therapy system than the conventional system. In the gated irradiation, we have focused on the issues to maximize irradiation efficiency and minimize the dose errors caused by organ motion. In order to understand the interplay effect between scanning beam delivery and target motion, we conducted a simulation study. The newly designed system consists of the synchrotron, beam transport system, one compact rotating gantry treatment room with robotic couch, and one experimental room for future research. To improve the irradiation efficiency, the new control function which enables multiple gated irradiations per synchrotron cycle has been applied and its efficacy was confirmed by the irradiation time estimation. As for the interplay effect, we confirmed that the selection of a strict gating width and scan direction enables formation of the uniform dose distribution.

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