Kumar Munish, Kher R K, Sahni G, Chhokra Kanta
Radiological Physics and Advisory Division, Bhabha Atomic Research Centre (BARC), Mumbai 400 085, India.
Radiat Prot Dosimetry. 2008;128(3):266-73. doi: 10.1093/rpd/ncm385. Epub 2007 Aug 6.
Absorbed tissue dose measurements are carried out for high-energy photon beams using CaSO4:Dy thermo-luminescence dosemeter (TLD) badge and the results are also verified using ionisation chamber used in radiation therapy. The photon beams generated using linear accelerator at 6 and 18 MV photon beam energies have been used and the absorbed doses are measured at the surface as well as at various depths. It has been found that the depth at which maximum dose is delivered increases with the increase in photon energy and the depth of maximum absorbed dose in tissue occurs beyond 10 mm. It has also been found that the evaluation of the absorbed dose (or Hp(10) as well) using thermoluminescence readout of disc D1 clearly shows that the current TLD badge provides a reasonable estimate of the effective dose for photon fields from 6 to 18 MV linacs for anterior-posterior incidence. The paper also provides information regarding the misinterpretation of radiation pattern in multi-element/filter TLD badge.
镝热释光剂量计(TLD)徽章对高能光子束进行吸收组织剂量测量,并使用放射治疗中使用的电离室对结果进行验证。使用线性加速器产生的6兆伏和18兆伏光子束能量的光子束,并在表面以及不同深度测量吸收剂量。已发现,最大剂量传递深度随光子能量增加而增加,组织中最大吸收剂量深度出现在10毫米以外。还发现,使用圆盘D1的热释光读数评估吸收剂量(或Hp(10))清楚地表明,当前的TLD徽章为6至18兆伏直线加速器前后入射的光子场有效剂量提供了合理估计。本文还提供了有关多元素/滤光片TLD徽章中辐射模式误判的信息。