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Dose-free monitoring of radiotherapy treatments with scattered photons: First experimental results at a 6-MV Linac

机译:无需散射光子的放射疗法治疗的剂量监测:6-MV Linac的首先实验结果

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Radiotherapy (RT) is nowadays, after surgery, among the most commonly used treatment regarding cancer. For predicted clinical outcomes it is of importance assuring that the treatment plan is correctly delivered without dose deviations, namely target underdosage and/or organ-at-risk overdosage. For that, a new multi-pixel imaging technique for real-time dose verification during photon RT has been proposed (RTmon). First scanned, single-pixel experimental results are presented here. The principle of operation of RTmon relies on the detection of scattered photons emitted perpendicularly to the beam direction. The first experimental results were obtained with a collimated γ-ray detector operated under a 6-MV clinical linac beam. A large contaminating background originating from the head of the linac was found. We show that its mitigation is possible by (1) using appropriate shielding, (2) decreasing the scintillator volume pointing towards out-of-field, background-prone regions, and (3) optimizing the collimation by means of detector positioning and differential signal sampling. Simulation and experimental data showed that multiple scattering inside a phantom target constitutes an additional source of background that increases along the beam direction due to momentum conservation in collisions between the incoming photons and target electrons. This second source of background can be reduced effectively by optimizing the distance between the collimated detector and the beam axis, at the expense of decreased collimation sensitivity. Despite the harsh therapeutic irradiation conditions, background and noise suppression by appropriate shielding and differential signal sampling renders the scanned experimental results quite similar to those obtained by means of Geant4 simulations. Such experimental results suggest therefore that this detector system may be useful for real-time dose verification in external X-ray radiotherapy.
机译:在癌症中最常用的治疗后,在手术后,如今,放射疗法(RT)如今。对于预测的临床结果,确保在没有剂量偏差的情况下正确递送治疗计划,即靶标和/或风险过量过量的治疗计划是正确的。为此,已经提出了一种新的多映射成像技术,用于在光子RT期间进行实时剂量验证(RTMON)。首先扫描,单像素的实验结果在此提出。 RTMON的操作原理依赖于检测垂直于光束方向发射的散射光子。使用在6mV临床LINAC光束下操作的准直的γ射线检测器获得第一种实验结果。发现了来自Linac的头部的大污染背景。我们表明,它的减轻可以通过(1)用适当的屏蔽,(2)减少闪烁体体积朝向,背景多发地区,以及(3)由检测器定位和差动信号来优化准直字段外的指向采样。模拟和实验数据表明,由于进入光子和目标电子之间的碰撞中的动量守恒,模拟目标内部的多个散射构成沿着光束方向增加的附加背景源。通过优化准直的检测器和光束轴之间的距离,可以有效地减少该背景的第二个背景源,以减少准直灵敏度。尽管具有苛刻的治疗辐照条件,但是通过适当的屏蔽和差分信号采样的背景和噪声抑制使得扫描的实验结果与通过GEANT4模拟获得的那些非常相似。因此,这种实验结果表明,该检测器系统可用于外部X射线放射治疗中的实时剂量验证。

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