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首页> 外文期刊>Medical Physics >Changes in optically stimulated luminescent dosimeter (OSLD) dosimetric characteristics with accumulated dose.
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Changes in optically stimulated luminescent dosimeter (OSLD) dosimetric characteristics with accumulated dose.

机译:光激发发光剂量计(OSLD)剂量特性随累积剂量的变化。

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摘要

PURPOSE: A new type of in vivo dosimeter, an optically stimulated luminescent dosimeter (OSLD), has now become commercially available for clinical use. The OSLD is a plastic disk infused with aluminum oxide doped with carbon (Al2O3:C). Crystals of Al2O3:C, when exposed to ionizing radiation, store energy that is released as luminescence (420 nm) when the OSLD is illuminated with stimulation light (540 nm). The intensity of the luminescence depends on the dose absorbed by the OSLD and the intensity of the stimulation light. The effects of accumulated dose on OSLD response were investigated. METHODS: The OSLDs used in this work were nanodot dosimeters, which were read with a MicroStar reader (Landauer, Inc., Glenwood, IL). Dose to the OSLDs was delivered by 6 MV x rays and gamma rays from Co-60 and Ir-192. The signal on the OSLDs after irradiation is removed by optical annealing with a 150 W tungsten-halogen lamp or a 14 W compact fluorescent lamp was investigated. RESULTS: It was found that OSLD response to dose was supralinear and this response was altered with the amount of accumulated dose to the OSLD. The OSLD response can be modeled by a quadratic and an exponential equation. For accumulated doses up to 60 Gy, the OSLD sensitivity (counts/dose) decreases and the extent of supralinear increases. Above 60 Gy of accumulated dose the sensitivity increases and the extent of supralinearity decreases or reaches a plateau, depending on how the OSLDs were optically annealed. With preirradiation of OSLDs with greater than 1 kGy, it is found that the sensitivity reaches a plateau 2.5 folds greater than that of an OSLD with no accumulated dose and the supralinearity disappears. A regeneration of the luminescence signal in the dark after full optical annealing occurs with a half time of about two days. The extent of this regeneration signal depends on the amount of accumulated dose. CONCLUSIONS: For in vivo dosimetric measurements, a precision of +/- 0.5% can be achieved if the sensitivity and extent of supralinearity is established for each OSLD and use. Methods are presented for accomplishing this task.
机译:目的:一种新型的体内剂量计,一种光学刺激的发光剂量计(OSLD),现已在商业上可用于临床。 OSLD是一个塑料盘,注入了掺有碳(Al2O3:C)的氧化铝。当暴露于电离辐射中时,Al2O3:C晶体存储能量,当OSLD用刺激光(540 nm)照射时,该能量以发光(420 nm)的形式释放。发光的强度取决于OSLD吸收的剂量和刺激光的强度。研究了累积剂量对OSLD反应的影响。方法:本工作中使用的OSLD是纳米点剂量计,可通过MicroStar读取器(Landauer,Inc.,Glenwood,IL)读取。通过来自Co-60和Ir-192的6 MV x射线和伽马射线向OSLD输送剂量。研究了用150 W卤素钨灯或14 W紧凑型荧光灯进行光学退火去除了辐射后OSLD上的信号。结果:发现OSLD对剂量的反应是超线性的,并且该反应随OSLD累积剂量的变化而改变。 OSLD响应可以用二次方程和指数方程建模。对于高达60 Gy的累积剂量,OSLD灵敏度(计数/剂量)降低,超线性程度增加。累积剂量超过60 Gy时,灵敏度会提高,超线性程度会降低或达到平稳状态,具体取决于OSLD的光学退火方式。发现以大于1 kGy的OSLD进行预辐照时,其灵敏度达到的平台期是没有累积剂量的OSLD的2.5倍,并且超线性消失了。完全光学退火后,黑暗中的发光信号再生发生了大约两天的一半时间。该再生信号的程度取决于累积剂量的量。结论:对于体内剂量测定,如果为每种OSLD和用途建立了灵敏度和超线性程度,则可以达到+/- 0.5%的精度。介绍了用于完成此任务的方法。

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