首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >A generalized calibration procedure for in vivo transit dosimetry using siemens electronic portal imaging devices.
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A generalized calibration procedure for in vivo transit dosimetry using siemens electronic portal imaging devices.

机译:使用西门子电子门禁成像设备进行体内剂量计量的通用校准程序。

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摘要

A practical and accurate generalized in vivo dosimetry procedure has been implemented for Siemens linacs supplying 6, 10, and 15 MV photon beams, equipped with aSi electronic portal imaging devices (EPIDs). The in vivo dosimetry method makes use of correlation ratios between EPID transit signal, s (t) (0) (TPR,w,L), and phantom mid-plane dose, D (0)(TPR,w,L), as functions of phantom thickness, w, square field dimensions, L, and tissue-phantom ratio TPR(20,10). The s (t) (0) (TPR,w,L) and D (0)(TPR,w,L) values were defined to be independent of the EPID sensitivity and monitor unit calibration, while their dependence on TPR(20,10) was investigated to determine a set of generalized correlation ratios to be used for beams with TPR(20,10) falling in the examined range. This way, other radiotherapy centers can use the method with no need to locally perform the whole set of measurements in solid water phantoms, required to implement it. Tolerance levels for 3D conformal treatments, ranging between +/-5 and +/-6% according to tumor type and location, were estimated for comparison purposes between reconstructed isocenter dose, D (iso), and treatment planning system (TPS) computed dose D (iso,TPS). Finally a dedicated software, interfaceable with record and verify (R&V) systems used in the centers, was developed to obtain in vivo dosimetry results in less than 2 min after beam delivery.
机译:实用且准确的广义体内剂量测定程序已针对配备6个,10个和15个MV光子束的配备了aSi电子门禁成像设备(EPID)的西门子直线加速器实现。体内剂量测定法利用EPID传递信号s(t)(0)(TPR,w,L)和幻影中平面剂量D(0)(TPR,w,L)之间的相关比作为幻像厚度,w,平方视野尺寸,L和组织幻像比率TPR(20,10)的函数。定义s(t)(0)(TPR,w,L)和D(0)(TPR,w,L)值独立于EPID灵敏度和监测仪校准,而它们对TPR(20, 10)被研究以确定一组通用相关比,用于TPR(20,10)落在检查范围内的光束。这样,其他放疗中心就可以使用该方法,而无需在实现该方法的固体水体模中本地执行整套测量。根据重建的等中心剂量D(iso)和治疗计划系统(TPS)计算的剂量进行比较,估计3D保形治疗的耐受水平(根据肿瘤类型和位置,介于+/- 5和+/- 6%之间) D(iso,TPS)。最后,开发了专用软件,该软件可与中心使用的记录和验证(R&V)系统连接,以在光束传输后不到2分钟的时间内获得体内剂量测定结果。

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