Edwards C R, Mountford P J, Moloney A J
Medical Physics Directorate, University Hospital of North Staffordshire, Princes Road, Hartshill, Stoke-on-Trent, Staffordshire, ST4 7LN, UK.
Phys Med Biol. 2006 Dec 21;51(24):6471-82. doi: 10.1088/0031-9155/51/24/013. Epub 2006 Dec 1.
In critical organ in vivo x-ray dosimetry, the relative contaminating electron contribution to the total dose and total detector response outside the field will be different to the corresponding contributions at the central axis detector calibration position, mainly due to the effects of shielding in the linear accelerator head on the electron and x-ray energy spectrum. To investigate these contributions, the electron energy response of a Scanditronix PFD diode was measured using electrons with mean energies from 0.45 to 14.6 MeV, and the Monte Carlo code MCNP-4C was used to calculate the electron energy spectra on the central axis, and at 1 and 10 cm outside the edge of a 4 x 4, 10 x 10 and a 15 x 15 cm(2) 6 MV x-ray field. The electron contribution to the total dose varied from about 8% on the central axis of the smallest field to about 76% at 10 cm outside the edge of the largest field. The electron contribution to the total diode response varied from about 7-8% on the central axis of all three fields to about 58% at 10 cm outside the edge of the smallest field. The results indicated that a near surface x-ray dose measurement with a diode outside the treatment field has to be interpreted with caution and requires knowledge of the relative electron contribution specific to the measurement position and field size.
在关键器官的体内X射线剂量测定中,相对于中心轴探测器校准位置,场外总剂量和总探测器响应中电子的相对污染贡献会有所不同,这主要是由于直线加速器机头中的屏蔽对电子和X射线能谱的影响。为了研究这些贡献,使用平均能量为0.45至14.6 MeV的电子测量了Scanditronix PFD二极管的电子能量响应,并使用蒙特卡罗代码MCNP - 4C计算了4×4、10×10和15×15 cm² 6 MV X射线射野边缘中心轴上以及边缘外1 cm和10 cm处的电子能谱。电子对总剂量的贡献从小射野中心轴处的约8%变化到大射野边缘外10 cm处的约76%。电子对二极管总响应的贡献在所有三个射野的中心轴处约为7 - 8%,在小射野边缘外10 cm处约为58%。结果表明,在治疗射野外使用二极管进行近表面X射线剂量测量时必须谨慎解读,并且需要了解特定于测量位置和射野大小的相对电子贡献。