Department of Radiation Oncology, Ospedale Di Vicenza, I-36100 Vicenza, Italy.
Phys Med Biol. 2020 Jan 13;65(1):01NT01. doi: 10.1088/1361-6560/ab6154.
The PTW 60023 microSilicon is a new unshielded diode detector for small-field photon dosimetry. It provides improved water equivalence and a slightly larger sensitive region diameter in comparison to previous diode detectors in this range. In this study we evaluated the correction factors relevant to commissioning a CyberKnife System with this detector by Monte Carlo simulation and verified this data by multi-detector measurement comparison. The correction factors required for output factor determination were substantially closer to unity at small field sizes than for previous diode versions (e.g. [Formula: see text] = 0.981 at 5 mm field size which compares with corrections of 5%-6% with other stereotactic diodes). Because of these differences we recommend that corrections to small field output factor measurements generated specifically for the microSilicon detector rather than generic data taken from other diode types should be used with this new detector. For depth-dose measurements the microSilicon is consistent with a microDiamond detector to <1% (global), except at depths <10 mm where the diode gives a significantly lower measurement, by 6%-8% at the surface. For profile measurements, the microSilicon requires negligible corrections except in the low dose region outside the beam, where it underestimates off-axis-ratio (OAR) for small fields and overestimates for large fields. Where this effect is most noticeable at the largest field size and depth (115 mm × 100 mm and 300 mm depth) the microSilicon overestimates OAR by 2.3% (global) in the profile tail. This is consistent with other unshielded diodes.
PTW 60023 microSilicon 是一种新的用于小野光子剂量测量的非屏蔽二极管探测器。与该范围内以前的二极管探测器相比,它提供了更好的水等效性和稍大的灵敏区直径。在这项研究中,我们通过蒙特卡罗模拟评估了用该探测器为 CyberKnife 系统进行验收测试所需的校正因子,并通过多探测器测量比较验证了这些数据。与以前的二极管版本相比(例如,在 5mm 野尺寸下,[公式:见文本] = 0.981,而其他立体定向二极管的校正值为 5%-6%),在小野尺寸下,用于确定输出因子的校正因子更接近 1。由于这些差异,我们建议对于使用该新探测器的小野输出因子测量,应使用专门针对 microSilicon 探测器生成的校正值,而不是从其他二极管类型获取的通用数据。对于深度剂量测量,microSilicon 与 microDiamond 探测器一致,差异小于 1%(全局),但在深度小于 10mm 处,二极管给出的测量值明显较低,在表面处低 6%-8%。对于轮廓测量,microSilicon 除了在光束外的低剂量区域外,不需要进行修正,在该区域,它低估了小野的离轴比(OAR),而对大野则高估了。在最大野尺寸和最大深度(115mm × 100mm 和 300mm 深度)处,这种影响最为明显,microSilicon 在轮廓尾部高估了 OAR 2.3%(全局)。这与其他非屏蔽二极管一致。