Kyoto University, Research Reactor Institute, Nuclear Engineering Science Division, Asashiro-nishi, Kumatori-cho, Sennan-gun, Osaka 590-0494, Japan.
J Biomed Opt. 2013 Feb;18(2):27001. doi: 10.1117/1.JBO.18.2.027001.
A Cerenkov fiber-optic dosimeter (CFOD) is fabricated using plastic optical fibers to measure Cerenkov radiation induced by a therapeutic photon beam. We measured the Cerenkov radiation generated in optical fibers in various irradiation conditions to evaluate the usability of Cerenkov radiation for a photon beam therapy dosimetry. As a results, the spectral peak of Cerenkov radiation was measured at a wavelength of 515 nm, and the intensity of Cerenkov radiation increased linearly with increasing irradiated length of the optical fiber. Also, the intensity peak of Cerenkov radiation was measured in the irradiation angle range of 30 to 40 deg. In the results of Monte Carlo N-particle transport code simulations, the relationship between fluxes of electrons over Cerenkov threshold energy and energy deposition of a 6 MV photon beam had a nearly linear trend. Finally, percentage depth doses for the 6 MV photon beam could be obtained using the CFOD and the results were compared with those of an ionization chamber. Here, the mean dose difference was about 0.6%. It is anticipated that the novel and simple CFOD can be effectively used for measuring depth doses in radiotherapy dosimetry.
一种切伦科夫光纤剂量计(CFOD)是使用塑料光纤制成的,用于测量治疗光子束产生的切伦科夫辐射。我们测量了在不同辐照条件下光纤中产生的切伦科夫辐射,以评估切伦科夫辐射在光子束治疗剂量学中的可用性。结果表明,切伦科夫辐射的光谱峰值在 515nm 波长处测量,并且随着光纤辐照长度的增加,切伦科夫辐射的强度呈线性增加。此外,在 30 到 40 度的辐照角度范围内测量了切伦科夫辐射的强度峰值。在蒙特卡罗 N 粒子输运代码模拟的结果中,超过切伦科夫阈值能量的电子通量与 6MV 光子束的能量沉积之间存在近乎线性的趋势。最后,使用 CFOD 可以获得 6MV 光子束的百分深度剂量,并且将结果与电离室的结果进行了比较。这里,平均剂量差异约为 0.6%。预计这种新颖简单的 CFOD 可以有效地用于放射治疗剂量学中的深度剂量测量。