In this paper, the ideal tissue equivalent proportional counter (ideal TEPC) is introduced into Monte Carlo (MC) simulation. The ideal TEPC and MC simulation methods are used to calculate the biological effective dose of 330 MeV / u carbon ion beam with 6 cm Bragg peak (SOBP). The results show that the ideal TEPC combined with MC simulation can accurately calculate the biological effective dose of heavy ions, The distortion of radiation field caused by TEPC wall is avoided, and the distortion of radiation field caused by structural material is avoided δ The influence of electron on the line energy spectrum and the position deviation in the experiment have good portability.
| collect time | 2019/01/01 - 2019/04/10 |
|---|---|
| collect place | Lanzhou, Gansu |
| data size | 2.0 MiB |
The data come from a large number of radiation biology experimental data.
Ideal TEPC and MC simulation method
From the experimental study, the data is good
| # | number | name | type |
| 1 | 2017YFC0107500 | Research and implementation of a new conformal intensity modulation technique for multi-particle biology guided by multi-modes | National key R & D plan |
This work is licensed under
CC BY 4.0 (Creative Commons Attribution 4.0 International License).
| # | title | file size |
|---|---|---|
| 1 | 基于微剂量学蒙特卡罗模拟的重离子生物有效剂量精确计算方法.pdf | 2.0 MiB |
Microdosimetry biologically effective dose microdose kinetic model heavy ion therapy Monte Carlo simulation
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