Centre of Medical and Radiation Physics, University of Wollongong, Wollongong, NSW, Australia.
Townsville Cancer Centre, Townsville Hospital and Health Service, Townsville, QLD, Australia.
Phys Eng Sci Med. 2023 Jun;46(2):787-800. doi: 10.1007/s13246-023-01251-6. Epub 2023 Mar 29.
The magnetic field of a transverse MR-linac alters electron trajectories as the photon beam transits through materials, causing lower doses at flat entry surfaces and increased doses at flat beam-exiting surfaces. This study investigated the response of a MOSFET detector, known as the MOSkin™, for high-resolution surface and near-surface percentage depth dose measurements on an Elekta Unity. Simulations with Geant4 and the Monaco treatment planning system (TPS), and EBT-3 film measurements, were also performed for comparison. Measured MOSkin™ entry surface doses, relative to D, were (9.9 ± 0.2)%, (10.1 ± 0.3)%, (11.3 ± 0.6)%, (12.9 ± 1.0)%, and (13.4 ± 1.0)% for 1 × 1 cm, 3 × 3 cm, 5 × 5 cm, 10 × 10 cm, and 22 × 22 cm fields, respectively. For the investigated fields, the maximum percent differences of Geant4, TPS, and film doses extrapolated and interpolated to a depth suitable for skin dose assessment at the beam entry, relative to MOSkin™ measurements at an equivalent depth were 1.0%, 2.8%, and 14.3%, respectively, and at a WED of 199.67 mm at the beam exit, 3.2%, 3.7% and 5.7%, respectively. The largest measured increase in exit dose, due to the electron return effect, was 15.4% for the 10 × 10 cm field size using the MOSkin™ and 17.9% for the 22 × 22 cm field size, using Geant4 calculations. The results presented in the study validate the suitability of the MOSkin™ detector for transverse MR-linac surface dosimetry.
横向磁共振直线加速器的磁场会改变光子束穿过材料时的电子轨迹,从而导致在平坦的入射表面剂量较低,在平坦的出射表面剂量增加。本研究调查了 MOSFET 探测器(称为 MOSkin™)在 Elekta Unity 上进行高分辨率表面和近表面百分深度剂量测量的响应。还进行了 Geant4 和 Monaco 治疗计划系统(TPS)的模拟以及 EBT-3 胶片测量,以便进行比较。测量的 MOSkin™ 入射表面剂量与 D 的比值分别为(9.9 ± 0.2)%、(10.1 ± 0.3)%、(11.3 ± 0.6)%、(12.9 ± 1.0)%和(13.4 ± 1.0)%,用于 1×1cm、3×3cm、5×5cm、10×10cm 和 22×22cm 射野。对于所研究的射野,最大的差异百分比为 1.0%、2.8%和 14.3%,相对于 MOSkin™ 在等效深度处的测量值,Geant4、TPS 和胶片剂量外推和内插到适合于评估皮肤剂量的深度,分别在束出口处的 WED 为 199.67mm 时,分别为 3.2%、3.7%和 5.7%。由于电子返回效应,出口剂量最大的测量增加量为 10×10cm 射野大小的 15.4%,使用 MOSkin™ 和 22×22cm 射野大小的 17.9%,使用 Geant4 计算。本研究中呈现的结果验证了 MOSkin™ 探测器用于横向磁共振直线加速器表面剂量测量的适用性。