Sullivan P R, Hasson B F, Grossman C H, Simpson L D
Department of Radiation Oncology, MCP Hahnemann University, Philadelphia, Pennsylvania 19102, USA.
Med Phys. 2000 Jan;27(1):245-51. doi: 10.1118/1.598867.
Laser-based scanners provide a sensitive means for measuring optical density (OD) of Gafchromic films. Such instruments were reviewed in a recent AAPM report (task group 55) which provided recommendations and information on OD measurements (effect of wavelength, temperature, etc.). The present article reports that variable rate scanners and spot densitometers using laser diodes (671 nm) and HeNe lasers (633 nm) can cause polymerization of Gafchromic film. The light induced polymerization depends on light power, wavelength, beam spot size, dwell time, and prior radiation dose of the film. Measurements were made with a custom built scanner that provided accurate control of light power, light polarization, dwell time, and film position in relation to the beam focus. The results demonstrate that lasers operating with powers of 0.1, 0.5, 1.0, and 1.5 mW produce a nonlinear increase in OD of Gafchromic film. The measured change in OD after 1 min of exposure ranges from 0.150 to 0.244 for a laser diode operating at 0.5 and 1.5 mW, respectively. Tables are included that tabulate the increase in OD for laser power, dwell time, and prior dose. Laser light induced polymerization can have a significant impact on dosimetry measurements acquired using these laser-based systems.
基于激光的扫描仪为测量放射变色薄膜的光密度(OD)提供了一种灵敏的方法。最近的一份美国医学物理学家协会报告(任务组55)对这类仪器进行了综述,该报告提供了关于OD测量的建议和信息(波长、温度等的影响)。本文报道,使用激光二极管(671纳米)和氦氖激光器(633纳米)的可变速率扫描仪和点密度计会导致放射变色薄膜发生聚合。光诱导聚合取决于光功率、波长、束斑尺寸、停留时间以及薄膜的先前辐射剂量。使用定制的扫描仪进行测量,该扫描仪能精确控制光功率、光偏振、停留时间以及薄膜相对于光束焦点的位置。结果表明,功率为0.1、0.5、1.0和1.5毫瓦的激光器会使放射变色薄膜的OD呈非线性增加。对于分别以0.5和1.5毫瓦运行的激光二极管,曝光1分钟后测得的OD变化范围为0.150至0.244。文中还列出了表格,详细列出了激光功率、停留时间和先前剂量对应的OD增加情况。激光诱导聚合会对使用这些基于激光的系统获得的剂量测定测量产生重大影响。