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首页> 外文期刊>Medical Physics >Method of identifying dynamic multileaf collimator irradiation that is highly sensitive to a systematic MLC calibration error.
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Method of identifying dynamic multileaf collimator irradiation that is highly sensitive to a systematic MLC calibration error.

机译:识别对系统MLC校准误差高度敏感的动态多叶准直仪辐射的方法。

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In intensity modulated radiotherapy (IMRT), radiation is delivered in a multiple of multileaf collimator (MLC) subfields. A subfield with a small leaf-to-leaf opening is highly sensitive to a leaf-positional error. We introduce a method of identifying and rejecting IMRT plans that are highly sensitive to a systematic MLC gap error (sensitivity to possible random leaf-positional errors is not addressed here). There are two sources of a systematic MLC gap error: centerline mechanical offset (CMO) and, in the case of a rounded end MLC, radiation field offset (RFO). In IMRT planning system, using an incorrect value of RFO introduces a systematic error ARFO that results in all leaf-to-leaf gaps that are either too large or too small by (2*DeltaRFO), whereas assuming that CMO is zero introduces systematic error DeltaCMO that results in all gaps that are too large by DeltaCMO=CMO. We introduce a concept of the average leaf pair Opening (ALPO) that can be calculated from a dynamic MLC delivery file. We derive an analytic formula for a fractional average fluence error resulting from a systematic gap error of Deltax and show that it is inversely proportional to ALPO; explicitly it is equal to Deltax/(ALPO+ 2 * RFO+ epsilon), in which epsilon is generally of the order of 1 mm and Deltax =2 * Delta RFO + CMO. This analytic relationship is verified with independent numerical calculations.
机译:在调强放射治疗(IMRT)中,辐射在多个多叶准直仪(MLC)子场中传递。叶对叶开口小的子域对叶位置误差高度敏感。我们介绍了一种识别和拒绝对系统性MLC间隙误差高度敏感的IMRT计划的方法(此处未解决对可能的随机叶片位置误差的敏感性)。系统性MLC间隙误差的来源有两个:中心线机械偏移(CMO);对于圆端MLC,则是辐射场偏移(RFO)。在IMRT计划系统中,使用不正确的RFO值会引入系统误差ARFO,这会导致所有叶子间的间隙过大或过小(2 * DeltaRFO),而假定CMO为零会导致系统误差DeltaCMO会导致所有差距,因为DeltaCMO = CMO太大了。我们介绍了可以从动态MLC传递文件计算出的平均叶片对开口(ALPO)的概念。我们得出了由Deltax的系统间隙误差引起的分数平均通量误差的解析公式,并表明它与ALPO成反比。明确地,它等于Deltax /(ALPO + 2 * RFO + epsilon),其中epsilon通常约为1 mm,Deltax = 2 * Delta RFO + CMO。通过独立的数值计算验证了这种解析关系。

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