Kubo H D, Hill B C
University of California, Davis Cancer Center, Section of Radiation Oncology, Sacramento 95817, USA.
Phys Med Biol. 1996 Jan;41(1):83-91. doi: 10.1088/0031-9155/41/1/007.
In order to optimize external-beam conformal radiotherapy, patient movement during treatment must be minimized. For treatment on the upper torso, the target organs are known to move substantially due to patient respiration. This paper deals with the technical aspects of gating the radiotherapy beam synchronously with respiration: the optimal respiration monitoring system, measurements of organ displacement and linear accelerator gating. Several respiration sensors including a thermistor, a thermocouple, a strain gauge and a pneumotachograph were examined to find the optimal sensor. The magnitude of breast, chest wall and lung motion were determined using playback of fluoroscopic x-ray images recorded on a VCR during routine radiotherapy simulation. Total dose, beam symmetry and beam uniformity were examined to determine any effects on the Varian 2100C linear accelerator due to gating.
为了优化外照射适形放疗,治疗期间患者的运动必须减至最小。对于上半身的治疗,已知由于患者呼吸,靶器官会有显著移动。本文探讨了使放疗束与呼吸同步进行门控的技术方面:最佳呼吸监测系统、器官位移测量以及直线加速器门控。研究了几种呼吸传感器,包括热敏电阻、热电偶、应变仪和呼吸速度描记器,以找出最佳传感器。在常规放疗模拟期间,通过回放录像带上记录的荧光透视X射线图像,确定乳房、胸壁和肺部的运动幅度。检查了总剂量、射束对称性和射束均匀性,以确定门控对瓦里安2100C直线加速器是否有任何影响。