Optical imaging for the characterization of radioactive carbon and oxygen ion beams

Shinji Sato, Seiichi Yamamoto, Ryo Horita, Han Gyu Kang, Sodai Takyu, Fumihiko Nishikido, Akram Mohammadi, Taiga Yamaya
2019-04-26

SCID:  54.1/zjnth94r
Abstract Heavy ion therapy is a promising cancer therapy technique due to the sharper Bragg peak and smaller lateral scattering characteristics of heavy ion beams as compared to a proton therapy. Recently, the potential for radioactive ion beam therapy has been investigated in combination with the OpenPET system to improve the accuracy of in vivo beam range verification. However, the characteristics of the radioactive ion beams have not been investigated thoroughly. Optical imaging has been proposed as a novel high-resolution beam range estimation method for heavy ion beams. In this study, high-resolution luminescence imaging and Cerenkov light imaging were performed for the range estimation of radioactive ion beams such as 11 C and 15 O in the Heavy Ion Medical Accelerator in Chiba (HIMAC) secondary beam line. A polymethyl methacrylate (PMMA) phantom (10.0 × 10.0 × 9.9 cm 3 ) was irradiated by 11 C and 15 O ion beams. In order to obtain the in-beam luminescence and off-line beam Cerenkov light images, an optical system was used that consisted of a lens and a cooled CCD camera. The Bragg peaks and stopping positions of the 11 C and 15 O ion beams could be visualized by using the luminescence and Cerenkov light imaging, respectively. The Bragg peaks showed a good correlation with the peak of the luminescence profile with a positional discrepancy of 1 mm and 0.4 mm for the 11 C and 15 O ion beams, respectively. In conclusion, optical imaging using luminescence and Cerenkov light could be used for the precise range estimation of radioactive ion beams.
Publication Details
Publication Date
2019-04-26
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Shinji Sato
Seiichi Yamamoto
Ryo Horita
Han Gyu Kang
Sodai Takyu
Fumihiko Nishikido
Akram Mohammadi
Taiga Yamaya
Explore More Research
Use the citation graph to discover related papers and expand your research horizons.
Click any node to explore
Download PDF
100%