Carbon fiber is commonly used in radiation therapy for treatment tabletops and various immobilization and support devices, partially because it is generally perceived to be almost radiotransparent to high-energy photons. To avoid exposure to normal tissue during modern radiation therapy, one must deliver the radiation from all gantry angles; hence, beams often transit the couch proximal to the patient. The effects of the beam attenuation by the support structure of the couch are often neglected in the planning process. In this study, we investigate the attenuation of 6-MV and 18-MV photon beams by a Medtec (Orange City, IA) carbon fiber couch. We have determined that neglecting the attenuation of oblique treatment fields by the carbon fiber couch can result in localized dose reduction from 4% to 16%, depending on energy, field size, and geometry. Further, we investigate the ability of a commercial treatment-planning system (Theraplan Plus v3.8) to account for the attenuation by the treatment couch. Results show that incorporating the carbon fiber couch in the patient model reduces the dose error to less than 2%. The variation in dose reduction as a function of longitudinal couch position was also measured. In the triangular strut region of the couch, the attenuation varied +/- 0.5% following the periodic nature of the support structure. Based on these findings, we propose the routine incorporation of the treatment tabletop into patient treatment planning dose calculations.

译文

:碳纤维通常用于治疗桌面以及各种固定和支撑设备的放射疗法中,部分原因是通常认为碳纤维对高能光子几乎是辐射透明的。为了避免在现代放射治疗期间暴露于正常组织,必须从所有机架角度传送放射线。因此,光束通常在靠近患者的地方穿过沙发。在设计过程中,经常会忽略沙发床支撑结构对光束的衰减影响。在这项研究中,我们研究了Medtec(爱荷华州橙色市)碳纤维沙发对6-MV和18-MV光子束的衰减。我们已经确定,忽略碳纤维床对倾斜治疗场的衰减会导致局部剂量从4%降低到16%,具体取决于能量,场大小和几何形状。此外,我们研究了商业治疗计划系统(Theraplan Plus v3.8)解决治疗床衰减的能力。结果表明,将碳纤维床纳入患者模型可将剂量误差降低至小于2%。还测量了剂量降低随纵向床位置变化的变化。在沙发的三角形支撑区域中,衰减随支撑结构的周期性变化而变化±0.5%。基于这些发现,我们建议将治疗台面例行纳入患者治疗计划剂量计算中。

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