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Deconvolution of detector size effect for output factor measurement for narrow Gamma Knife radiosurgery beams

机译:窄伽马刀放射梁输出因子测量输出系数探测器尺寸效应的折应

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The difficulties associated with the dosimetry of narrow radiosurgical beams are well recognized. Measurements are complicated by the loss of lateral electronic equilibrium, volume averaging artifacts due to the finite size of the detector and also by the detector response in narrow beams. An example is a recent controversy regarding the output factor for 4 mm collimator of the Gamma Knife (4 mm is the diameter of the geometrical projection of the collimator aperture at the focal spot). The accurate measurement of this output factor has practical consequences for treatment planning and also for the comparison of radiation dosages between Gamma Knife and linac radiosurgery. In this study, the output factor for the 4 mm collimator was determined using a miniature ion chamber. This chamber was still too large to measure the output factor for the 4 mm collimator accurately. We corrected the measured output factor using the deconvolution method to unfold the chamber response from the measured data. The dose profile along one of the principal axes of the 4 mm collimator was measured with this ion chamber and also with radiochromic films. The corrected output factor was obtained by deconvolving the chamber size effect from the measured profile data, based on the dose profile data obtained using radiochromic films.
机译:识别与窄放射束梁的剂量法相关的困难得到了很好的认可。由于横向电子平衡,体积平均伪像丢失,由于检测器的有限尺寸,并且还通过窄梁中的检测器响应,测量是复杂的。一个例子是关于伽马刀的4mm准直器的输出系数的最近争议(4mm是焦点的准直器孔的几何投影的直径)。这种输出因子的准确测量对于治疗计划具有实际后果,并且还具有伽马刀和线环辐射前辐射前辐射剂量的比较。在该研究中,使用微型离子室确定4mm准直器的输出系数。该腔室仍然太大,可以精确测量4毫米准直器的输出系数。我们使用Deconvolulation方法校正测量的输出系数来展开从测量数据的腔室响应。沿着4mm准直器的一个主轴的剂量曲线用该离子室和放射刻度膜测量。基于使用放射体膜获得的剂量曲线数据,通过将腔室尺寸的效果解构腔室尺寸效应来获得校正的输出因子。

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