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首页> 外文期刊>Physics in medicine and biology. >Calibration of the Al2O3:C optically stimulated luminescence (OSL) signal for linear energy transfer (LET) measurements in therapeutic proton beams
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Calibration of the Al2O3:C optically stimulated luminescence (OSL) signal for linear energy transfer (LET) measurements in therapeutic proton beams

机译:用于治疗质子束中的线性能量转移(LET)测量的Al2O3:C光激发发光(OSL)信号的校准

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摘要

Optically stimulated luminescence (OSL) detectors (OSLDs) have shown potential for measurements of linear energy transfer (LET) in proton therapy beams. However, the technique lacks the efficiency needed for clinical implementation, and a faster, simpler approach to LET measurements is desirable. The goal of this work was to demonstrate and evaluate the potential of calibrating Al2O3:C OSLDs for LET measurements using new methods. We exposed batches of OSLDs to unmodulated proton beams of varying LET and calibrated three parameters of the resulting OSL signals as functions of fluence-averaged LET (φ-LET) and dose-averaged LET (D-LET). These three parameters included the OSL curve shape evaluated under continuous wave stimulation (CW-OSL), the OSL curve shape evaluated under pulsed stimulation (P-OSL), and the intensity ratio of the two main emission bands in the Al2O3:C OSL emission spectrum (ultraviolet [UV]/blue ratio). To test the calibration, we then irradiated new batches of OSLDs in modulated proton beams of varying LET, and used the OSL signal parameters to calculate φ-LET and D-LET under these new test conditions. Using the P-OSL curve shape, D-LET was measured within 5.7% of the expected value. We conclude that from a single 10 s readout (following initial calibration), both the absorbed dose and LET in proton therapy beams can be measured using OSLDs. This has potential future applications in the quality assurance of proton therapy treatment plans, particularly for those that may account for LET or relative biological effectiveness in their optimization. The methods demonstrated in this work may also be applicable to other particle therapy beams, including carbon ion beams.
机译:光激发发光(OSL)检测器(OSLD)已显示出用于测量质子治疗束中线性能量转移(LET)的潜力。但是,该技术缺乏临床实施所需的效率,因此需要一种更快,更简单的LET测量方法。这项工作的目的是证明和评估使用新方法校准LET测量的Al2O3:C OSLD的潜力。我们将成批的OSLD暴露于变化的LET的未调制质子束中,并校准了作为通量平均LET(φ-LET)和剂量平均LET(D-LET)的函数的所得OSL信号的三个参数。这三个参数包括在连续波刺激下评估的OSL曲线形状(CW-OSL),在脉冲刺激下评估的OSL曲线形状(P-OSL)以及Al2O3:C OSL发射中两个主要发射带的强度比光谱(紫外线[UV] /蓝比)。为了测试校准,我们然后在变化的LET的调制质子束中辐照新一批OSLD,并使用OSL信号参数在这些新测试条件下计算φ-LET和D-LET。使用P-OSL曲线形状,测得的D-LET在预期值的5.7%以内。我们得出的结论是,从10秒的读数(遵循初始校准),可以使用OSLD测量质子治疗束中的吸收剂量和LET。这在质子治疗方案的质量保证中具有潜在的未来应用,特别是对于那些可能在优化中考虑LET或相对生物学有效性的方案。在这项工作中演示的方法也可能适用于其他粒子治疗束,包括碳离子束。

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