Huang Peng, Yin Zhiguo, Bian Tianjian, Hou Shigang, Guan Fengping, An Shizhong, Wang Yang, Zhang Tianjue, Ji Luyu, Wen Lipeng, Mu Xueer
China Institute of Atomic Energy, Beijing, 102413, China.
Sci Rep. 2024 May 27;14(1):12092. doi: 10.1038/s41598-024-62515-z.
A set of nozzle equipment for proton therapy is currently under development at China Institute of Atomic Energy (CIAE). To facilitate the off-line commissioning of the whole equipment, a set of ionization chamber signal generation system, known as the test electronics, was designed. The results showed that the system can simulate the beam position, beam fluence (which exhibits a positive correlation with the dose), and other related analog signals generated by the proton beam when it traverses the ionization chamber. Moreover, the accuracy of the simulated beam position is within ± 0.33 mm, and the accuracy of the simulated beam fluence signal is within ± 1%. The test electronics can output analog signals representing environmental parameters. The test electronics meets the design requirements, which can be used for the commissioning of the nozzle system as well as the treatment control system without the presence of the proton beam.
中国原子能科学研究院(CIAE)目前正在研发一套用于质子治疗的喷嘴设备。为便于对整套设备进行离线调试,设计了一套电离室信号生成系统,即测试电子设备。结果表明,该系统能够模拟质子束穿过电离室时产生的束流位置、束流注量(与剂量呈正相关)以及其他相关模拟信号。此外,模拟束流位置的精度在±0.33毫米以内,模拟束流注量信号的精度在±1%以内。测试电子设备能够输出代表环境参数的模拟信号。该测试电子设备满足设计要求,可在无质子束的情况下用于喷嘴系统以及治疗控制系统的调试。