首页> 外文期刊>Journal of Medical Physics/Association of Medical Physicists of India >Evaluation of NanoDot Optically Stimulated Luminescence Dosimeter for Cone-shaped Small-field Dosimetry of Cyberknife Stereotactic Radiosurgery Unit: A Monte Carlo Simulation and Dosimetric Verification Study
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Evaluation of NanoDot Optically Stimulated Luminescence Dosimeter for Cone-shaped Small-field Dosimetry of Cyberknife Stereotactic Radiosurgery Unit: A Monte Carlo Simulation and Dosimetric Verification Study

机译:射电刀立体定向放射外科手术单元锥形小视野剂量的纳米点光激发发光剂量计的评估:蒙特卡罗模拟和剂量学验证研究

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Aim: The aim of this study was to investigate the adequacy of nanoDot optically stimulated luminescence (OSL) dosimeter for small field dosimetry before its in vivo applications in CyberKnife SRS unit. Materials and Methods: A PTW 60018 SRS Diode, 60019 microDiamond, and Gafchromic EBT3 films were used along with a nanoDot carbon-doped aluminum oxide OSL dosimeter to collect and compare beam data. In addition, the EGSnrc/BEAMnrc code was employed to simulate 6-MV photon beams of CyberKnife SRS system. Results: All detectors showed good consistency with each other in output factor measurements for cone sizes of 15 mm or more. The differences were maintained within 3% for these cones. However, OSL output factors showed higher discrepancies compared to those of other detectors for smaller cones wherein the difference reached nearly 40% for cone size of 5 mm. Depending on the performance of OSL dosimeter in terms of output factors, percentage depth doses (PDDs) were only measured for cones equal to or larger than 15 mm. The differences in PDD measurements were within 5% for depths in the range of 5–200 mm. Conclusion: Its low reliable readings for cones smaller than 15 mm should be considered before its in vivo applications of Cyberknife system.
机译:目的:本研究的目的是在将其应用于计算机刀SRS装置之前,研究nanoDot光学激发发光(OSL)剂量计是否适合小剂量剂量测定。材料和方法:PTW 60018 SRS二极管,60019 microDiamond和Gafchromic EBT3膜与nanoDot碳掺杂氧化铝OSL剂量计一起使用,以收集和比较光束数据。此外,EGSnrc / BEAMnrc代码被用来模拟Cyber​​Knife SRS系统的6-MV光子束。结果:对于15 mm或更大的锥度,所有检测器在输出因子测量中均显示出良好的一致性。这些锥体的差异保持在3%以内。但是,与其他检测器相比,对于较小的圆锥体,OSL输出因子显示出更高的差异,其中对于5 mm的圆锥体,差异达到了近40%。根据OSL剂量计在输出因子方面的性能,仅对等于或大于15 mm的圆锥体测量深度百分比剂量(PDD)。对于5–200 mm的深度,PDD测量值的差异在5%之内。结论:在其体内应用射波刀系统之前,应考虑其对于小于15 mm的圆锥体的低可靠读数。

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