|Table of Contents|

Analysis of beam characteristics of the first Mevion pencil beam scanning proton therapy system in China(PDF)

《中国医学物理学杂志》[ISSN:1005-202X/CN:44-1351/R]

Issue:
2024年第3期
Page:
282-288
Research Field:
医学放射物理
Publishing date:

Info

Title:
Analysis of beam characteristics of the first Mevion pencil beam scanning proton therapy system in China
Author(s):
WU Weiqing LU Xiaoguang ZHENG Renchao PENG Zhiyi LIU Fei HU Guangyuan YUAN Xianglin
Department of Oncology, Tongji Hospital Affiliated to Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China
Keywords:
Keywords: pencil beam scanning proton therapy system beam characteristic
PACS:
R318;R811.1
DOI:
DOI:10.3969/j.issn.1005-202X.2024.03.003
Abstract:
Abstract: Objective To present and discuss beam characteristics of the first Mevion S250i gantry-mounted accelerator pencil beam scanning proton therapy system in China. Methods The output dose was measured using a parallel-plate ionization chamber. The integrated depth dose was measured with a large-radius Bragg peak ionization chamber, covering 19 energy levels ranging from 227 MeV to 28 MeV, to analyze the proton beam characteristics. The spots in the air were measured with Phoenix flat panel detector on the beam central axis, and the precision of the delivery position was verified by measuring the multi-spot beam map. The interleaf leakage and penumbra reduction of adaptive aperture were measured to characterize its performance. Results The proton system was calibrated for a maximum energy of 227 MeV, with a (10×10) cm?uniform field delivering 1 Gy dose at a depth of 5 cm underwater. The system effectively modulated the proton beam range to the patients surface, maintaining a constant 80%-80% Bragg peak width of 8.6 mm at all energy levels. The spot size of the highest energy beam at the isocenter was about 4 mm in the air, and the spot delivery position error was less than 1 mm. The interleaf leakage rate of the adaptive aperture for the highest energy beam was below 1.5%, and the penumbra was significantly reduced. Conclusion Mevion S250i proton therapy system demonstrates unique design and beam characteristics, which is reflected in the Bragg peak shape, spot size variation with energy, and penumbra sharpening of adaptive aperture and these differences should be considered in treatment planning system modeling and planning for precision treatment.

References:

-

Memo

Memo:
-
Last Update: 2024-03-27