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首页> 外文期刊>Medical Physics >Direct dose to water dosimetry for pretreatment IMRT verification using a modified EPID.
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Direct dose to water dosimetry for pretreatment IMRT verification using a modified EPID.

机译:使用修改后的EPID对治疗IMRT进行直接剂量对水剂量测定。

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PURPOSE: Electronic portal imaging devices (EPIDs) are high resolution systems that produce electronic dose maps with minimal time required for equipment setup, and therefore potentially present a time-saving alternative for intensity modulated radiation therapy (IMRT) pretreatment verification. A modified commercial EPID was investigated operated with an opaque sheet blocking the optical signal produced in the phosphor layer as a precursor to a switched mode dual dosimetry-imaging EPID system. The purpose of this study was to investigate the feasibility of using this system for direct dose to water dosimetry for pretreatment IMRT verification. METHODS: A Varian amorphous silicon EPID was modified by placing an opaque sheet between the Gd(2)S(2)O:Tb phosphor layer and the photodiode array to block the optical photons. The EPID was thus converted to a direct-detecting system (dEPID), in which the high energy radiation deposits energy directly in the photodiode array. The copper build-up was replaced with d(max) solid water. Sixty-one IMRT beams of varying complexity were delivered to the EPID, to EDR2 dosimetric film and to a 2D ion chamber array (MapCheck). EPID data was compared to film and MapCheck data using gamma analysis with 3%, 3mm pass criteria. RESULTS: The fraction of points that passed the gamma test was on average 98.1% and 98.6%, for the EPID versus film and EPID versus MapCheck comparisons, respectively. In the case of comparison with film, the majority of observed discrepancies were associated with problems related to film sensitivity or processing. CONCLUSIONS: The very close agreement between EPID and both film and MapCheck data demonstrates that the modified EPID is suitable for direct dose to water measurement for pretreatment IMRT verification. These results suggest a reconfigured EPID could be an efficient and accurate dosimeter. Alternatively, optical switching methods could be developed to produce a dual-mode EPID with both dosimetry and imaging capabilities.
机译:用途:电子门禁成像设备(EPID)是高分辨率系统,可在最少的设备安装时间下生成电子剂量图,因此有可能为节省强度的放射治疗(IMRT)预处理验证提供一种省时的选择。研究了一种改良的商用EPID,它是用不透明的薄片遮挡住了在磷光体层中产生的光信号,作为切换模式双剂量成像EPID系统的前身。这项研究的目的是调查使用该系统直接剂量水剂量测定法进行IMRT预处理验证的可行性。方法:通过在Gd(2)S(2)O:Tb荧光粉层和光电二极管阵列之间放置一个不透明的薄片来阻隔光学光子,从而对Varian非晶硅EPID进行了修改。因此,EPID被转换为直接检测系统(dEPID),其中高能辐射直接在光电二极管阵列中沉积能量。铜堆积物用d(max)固体水代替。复杂程度不同的61个IMRT光束被传送到EPID,EDR2剂量膜和2D离子室阵列(MapCheck)。使用3%,3mm通过标准的伽马分析将EPID数据与胶片和MapCheck数据进行比较。结果:EPID与胶片的比较和EPID与MapCheck的比较,通过伽玛测试的分数平均分别为98.1%和98.6%。在与胶卷进行比较的情况下,观察到的大多数差异与胶卷感光度或冲洗工艺有关。结论:EPID与胶片和MapCheck数据之间的非常紧密的一致性表明,改性的EPID适合直接剂量水测量以进行预处理IMRT验证。这些结果表明,重新配置的EPID可能是有效且准确的剂量计。或者,可以开发光开关方法以产生具有剂量测定和成像功能的双模EPID。

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