首页> 美国卫生研究院文献>The Canadian Veterinary Journal >3D-printed bolus improves dose distribution for veterinary patients treated with photon beam radiation therapy
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3D-printed bolus improves dose distribution for veterinary patients treated with photon beam radiation therapy

机译:3D印刷推注用于用光子束辐射疗法治疗的兽医患者的剂量分布

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摘要

Commercial bolus is frequently used to increase dose at the patient’s surface for superficial radiotherapy; however, uneven surfaces can create air gaps and discrepancies between prescribed and delivered dose. The purpose of this study was to determine if a customizable, 3D-printed bolus would improve dosimetry compared with a commercial bolus. For each patient, a planned bolus was generated within planning software, then created with 3D-printing. The treatment plan was recalculated with each bolus in situ. When evaluating tumor volumes at prescription, the 3D-printed bolus was closer to prescription compared to the commercial bolus. There was a significant difference in air gaps in patients receiving radiotherapy to the head (P < 0.001) but the difference was not significant for air gaps in caudal body sites (P = 0.05). Overall, the 3D-printed bolus resulted in reduced air gaps, dosimetry closer to prescription, and should be considered for superficial treatment areas of high irregularity.
机译:商用推注经常用于增加患者表面的剂量以进行表面放射疗法;然而,不均匀的表面可以在规定和交付剂量之间产生空气差距和差异。本研究的目的是确定与商业推注相比可自定义的3D印刷推注是否会改善剂量测定。对于每位患者,在规划软件中产生计划的推注,然后在3D打印创建。治疗计划用每个推注重新计算出原位。当在处方评估肿瘤体积时,与商业推注相比,3D印刷推注更接近处方。接受放射治疗到头部的患者的空气间隙有显着差异(P <0.001),但尾部位点中的空气间隙不显着(P = 0.05)。总的来说,3D印刷的推注导致空气间隙降低,剂量测定更接近处方,并且应考虑高不规则的浅表处理区域。

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