Università di Napoli Federico II, Dipartimento di Fisica "Ettore Pancini", I-80126 Napoli, Italy; INFN Sezione di Napoli, I-80126 Napoli, Italy.
Università di Napoli Federico II, Dipartimento di Fisica "Ettore Pancini", I-80126 Napoli, Italy.
Phys Med. 2019 Jun;62:63-72. doi: 10.1016/j.ejmp.2019.05.002. Epub 2019 May 9.
We investigated the feasibility of kilovoltage rotational radiotherapy for breast cancer (kV-EBRT) via Monte Carlo simulations and measurements on phantoms.
We derived the dose distributions for X-ray beams at 150 kV, 300 kVp and 320 kV irradiating breast cylindrical phantoms of 14 cm diameter, mimicking the pendant breast. Simulations were based on the Geant4 toolkit. The point-like X-ray source was rotated either over a full circle or on a limited arc around the phantom. We studied the influence on the surface dose of the distance between the tumor lesion to the skin, of the irradiation protocol (full scan or partial scan) and of the X-ray tube current modulation.
Rotational kV-EBRT permitted a periphery-to-center dose ratio from 13% to 9% in homogeneous breast phantoms. Dose distributions in phantoms with off-center simulated lesions, showed a skin-to-tumor dose ratio of 16% and 34% for lesions at 3.25 and 5.25 cm from cylinder axis, respectively. Simulation of the X-ray tube current modulation during the rotation, permits to reach a dose ratio of 20% for the lesion located at 5.25 cm from phantom axis.
We showed the possibility of using low-energy X-ray spectra for kV-EBRT with collimated beams, for obtaining a periphery-to-center dose ratio in the same order of conventional accelerator based megavoltage radiotherapy, when the irradiated area is localized in the center of the breast. For tumors localized near the breast border, we showed that the tube current modulation can be a good solution in order to reduce the skin-to-tumor dose ratio.
通过蒙特卡罗模拟和体模测量,研究千伏旋转放射治疗(kV-EBRT)治疗乳腺癌的可行性。
我们推导了 150kV、300kVp 和 320kV 的 X 射线束在直径为 14cm 的模拟悬挂乳房的圆柱形体模上的剂量分布。模拟基于 Geant4 工具包。点源 X 射线源在体模周围旋转一整圈或有限的弧形。我们研究了肿瘤病变到皮肤的距离、照射方案(全扫描或部分扫描)和 X 射线管电流调制对表面剂量的影响。
旋转千伏 EBRT 可使均匀乳腺体模的外周到中心剂量比从 13%降至 9%。在偏离中心的模拟病变体模中,病变位于圆柱体轴 3.25 和 5.25cm 处时,皮肤到肿瘤的剂量比分别为 16%和 34%。在旋转过程中模拟 X 射线管电流调制,可以使位于 5.25cm 处的病变的剂量比达到 20%。
我们证明了使用准直光束的低能 X 射线谱进行千伏 EBRT 的可能性,当照射区域位于乳房中心时,可以获得与传统加速器基于兆伏放疗相同数量级的外周到中心剂量比。对于位于乳房边缘附近的肿瘤,我们表明管电流调制是降低皮肤到肿瘤剂量比的一种很好的解决方案。