Akino Yuichi, Okamura Keita, Das Indra J, Isohashi Fumiaki, Seo Yuji, Tamari Keisuke, Hirata Takero, Hayashi Kazuhiko, Inoue Shinichi, Ogawa Kazuhiko
Oncology Center, Osaka University Hospital, 2-2 (D10), Yamadaoka, Suita, Osaka, 565-0871, Japan.
Department of Medical Technology, Osaka University Hospital, 2-15, Yamadaoka, Suita, Osaka, 565-0871, Japan.
Med Phys. 2021 Apr;48(4):2004-2009. doi: 10.1002/mp.14639. Epub 2021 Mar 6.
This study investigated the characteristics of a new shielded diode detector, microSilicon X (model 60022: MSX), for small-field and large-field dosimetry.
The percent depth dose (PDD), beam profiles, detector output factor (OF ), temperature dependence, dose rate dependence, dose-per-pulse (DPP) dependence, and dose-response linearity of MSX were evaluated in Cyberknife and TrueBeam photon beams and compared with various detectors including microDiamond (PTW model 60019: MD), Sun Nuclear EDGE detector, Photon diode (PTW model 60016: PD), and semiflex ionization chamber (PTW model 31010: IC).
For field sizes ranging from 50 × 50 mm to 400 × 400 mm , MSX-measured OF values were within 1% of the IC-measured values. For the CyberKnife small fields, the maximum difference between the MSX-measured OF and the MD-measured field output factor (Ω) was 4.0%, while the maximum differences were 8.8% and 10.9% for PD and EDGE, respectively. MSX showed a stable response within 0.7% for water temperatures of 5°C to 34°C, while PD and EDGE showed a linear correlation between the water temperature and the response. MSX showed small variations within 0.2% for the dose rate, and PD and EDGE showed logarithmic increases in the response with the dose rate. MSX and MD had smaller DPP dependences than PD and EDGE.
The characteristics of MSX for measurements of small- and large-field photon beams are favorable. Compared to PD, MSX exhibited significant improvement in the over-response for small fields. The OF values measured by MSX were approximately in-between those measured by MD and PD. MSX showed stable responses against water temperature, dose rate, and DPP variations and provided suitable data for a wide range of field sizes. However, careful attention is required for measurements of OF for field sizes of <10 × 10 mm and PDD for field sizes of ≥200 × 200 mm .
本研究调查了一种新型屏蔽二极管探测器——微硅X(型号60022:MSX)用于小射野和大射野剂量测定的特性。
在射波刀和真体束光子射束中评估了MSX的百分深度剂量(PDD)、射野轮廓、探测器输出因子(OF)、温度依赖性、剂量率依赖性、每脉冲剂量(DPP)依赖性以及剂量响应线性,并与包括微钻石探测器(PTW型号60019:MD)、太阳核EDGE探测器、光子二极管(PTW型号60016:PD)和半柔性电离室(PTW型号31010:IC)在内的各种探测器进行了比较。
对于50×50mm至400×400mm的射野尺寸,MSX测量的OF值在IC测量值的1%以内。对于射波刀小射野,MSX测量的OF与MD测量的射野输出因子(Ω)之间的最大差值为4.0%,而PD和EDGE的最大差值分别为8.8%和10.9%。对于5°C至34°C的水温,MSX的响应在0.7%以内保持稳定,而PD和EDGE的响应与水温呈线性相关。对于剂量率,MSX的变化在0.2%以内,而PD和EDGE的响应随剂量率呈对数增加。MSX和MD的DPP依赖性比PD和EDGE小。
MSX用于测量小射野和大射野光子射束的特性良好。与PD相比,MSX在小射野的过响应方面有显著改善。MSX测量的OF值大致介于MD和PD测量的值之间。MSX对水温、剂量率和DPP变化表现出稳定的响应,并为广泛的射野尺寸提供了合适的数据。然而,对于<10×10mm射野尺寸的OF测量和≥200×200mm射野尺寸的PDD测量,需要格外小心。