Beddar A S
Department of Radiation Physics, Division of Radiation Oncology, University of Texas M. D. Anderson Cancer Center, Houston, TX, USA.
Radiat Prot Dosimetry. 2006;120(1-4):1-6. doi: 10.1093/rpd/nci694. Epub 2006 Aug 1.
A review of the dosimetric characteristics and properties of plastic scintillation detectors for use in radiation therapy is presented. The detectors show many desirable qualities when exposed to megavoltage photon and electron beams, including water equivalence, energy independence, reproducibility, dose linearity, resistance to radiation damage and near temperature independence. These detectors do not require the usual conversion and/or correction factors used to convert the readings from common dosemeters to absorbed dose. Due to their small detecting volume, plastic scintillation detectors exhibit excellent spatial resolution. Detector performance, in certain specific cases, can be affected by radiation-induced light arising in the optical fibres that carry the scintillator signal to a photodetector. While this effect is negligible for photon beams, it may not be ignored for electron beams and needs to be accounted for.
本文介绍了用于放射治疗的塑料闪烁探测器的剂量学特性和性能。当暴露于兆伏级光子和电子束时,这些探测器表现出许多理想的特性,包括水等效性、能量独立性、可重复性、剂量线性、抗辐射损伤性以及几乎与温度无关。这些探测器不需要用于将普通剂量计的读数转换为吸收剂量的常规转换和/或校正因子。由于其探测体积小,塑料闪烁探测器具有出色的空间分辨率。在某些特定情况下,探测器性能可能会受到将闪烁体信号传输到光电探测器的光纤中产生的辐射诱导光的影响。虽然这种效应对于光子束可以忽略不计,但对于电子束可能不能忽视,需要加以考虑。