Laboratorio de Física Médica, Instituto Nacional de Neurología y Neurocirugía, Insurgentes sur 3877, La Fama, Tlalpan 14269, Cd. de México, Mexico.
Laboratorio de Física Médica, Instituto Nacional de Neurología y Neurocirugía, Insurgentes sur 3877, La Fama, Tlalpan 14269, Cd. de México, Mexico.
Phys Med. 2018 Mar;47:86-91. doi: 10.1016/j.ejmp.2018.02.010. Epub 2018 Mar 6.
Flatbed scanners are the most frequently used reading instrument for radiochromic film dosimetry because its low cost, high spatial resolution, among other advantages. These scanners use a fluorescent lamp and a CCD array as light source and detector, respectively. Recently, manufacturers of flatbed scanners replaced the fluorescent lamp by light emission diodes (LED) as a light source. The goal of this work is to evaluate the performance of a commercial flatbed scanner with LED based source light for radiochromic film dosimetry. Film read out consistency, response uniformity, film-scanner sensitivity, long term stability and total dose uncertainty was evaluated. In overall, the performance of the LED flatbed scanner is comparable to that of a cold cathode fluorescent lamp (CCFL). There are important spectral differences between LED and CCFL lamps that results in a higher sensitivity of the LED scanner in the green channel. Total dose uncertainty, film response reproducibility and long-term stability of LED scanner are slightly better than those of the CCFL. However, the LED based scanner has a strong non-uniform response, up to 9%, that must be adequately corrected for radiotherapy dosimetry QA. The differences in light emission spectra between LED and CCFL lamps and its potential impact on film-scanner sensitivity suggest that the design of a dedicated flat-bed scanner with LEDs may improve sensitivity and dose uncertainty in radiochromic film dosimetry.
平板扫描仪是最常用于放射性色迹胶片剂量测定的阅读仪器,因为它具有成本低、空间分辨率高等优点。这些扫描仪分别使用荧光灯和 CCD 阵列作为光源和探测器。最近,平板扫描仪制造商已用发光二极管 (LED) 取代荧光灯作为光源。本工作的目的是评估一种带有基于 LED 的光源的商用平板扫描仪在放射性色迹胶片剂量测定中的性能。评估了胶片读出一致性、响应均匀性、胶片-扫描仪灵敏度、长期稳定性和总剂量不确定度。总体而言,LED 平板扫描仪的性能可与冷阴极荧光灯 (CCFL) 相媲美。LED 和 CCFL 灯之间存在重要的光谱差异,这导致 LED 扫描仪在绿色通道中的灵敏度更高。LED 扫描仪的总剂量不确定度、胶片响应重复性和长期稳定性略优于 CCFL。然而,基于 LED 的扫描仪具有高达 9%的强烈非均匀响应,必须对此进行充分校正,以用于放射治疗剂量学 QA。LED 和 CCFL 灯之间的发光光谱差异及其对胶片-扫描仪灵敏度的潜在影响表明,设计专用的带有 LED 的平板扫描仪可能会提高放射性色迹胶片剂量测定中的灵敏度和剂量不确定度。