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Dosimetric Comparison between Monaco TPS and EGSnrc Monte Carlo simulation on Titanium Rod in 12bit and 16bit Image Format

机译:摩纳哥TPS与EGSNRC Monte Carlo仿真在12位和16位图像格式中的钛棒与EGSNRC蒙特卡罗模拟的数据

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This study purpose is to investigate the effects of using different bit depth DICOM images for the 6 MV photon beam on a titanium rod. An EGSnrc Monte Carlo simulation on the Elekta Synergy LINAC executed as a dosimetry comparison tool for the TPS. CT scanners with 12-bit, 12-bit extended (Siemens Somatom Definition AS) and 16-bit depth (Toshiba Aquilion) parameters were applied to scan a wax phantom with a titanium rod. A direct beam (AP) with a field size of 10 x 10 cm2 was prescribed 200 cGy dose and was planned on the MONACO TPS. The TPS outcome was compared with the validated LINAC EGSnrc calculation. The downstream dose of the titanium rod was analyzed for each bit-depth parameters and the limitations of the existing TPS were examined. CT numbers of the titanium rod vary for each bit-depth parameter, where 3071 ± 0 HU, 8513 ± 31 HU, and 10006 ± 73 HU for 12-bit, 12-bit extended, and 16-bit images, respectively. The 16-bit depth scanner gives the most accurate CT number of the titanium rod with the correct dose calculation while, the Monaco TPS underestimates the real titanium rod dose compared to the EGSnrc calculations by 4.95%.
机译:该研究目的是研究使用不同位深度DICOM图像在钛棒上使用不同钻头深度DICOM图像的影响。 ELEKTA Synergy LINAC上的EGSNRC Monte Carlo仿真作为TPS的Dosimetry比较工具执行。 CT扫描仪具有12位,12位扩展(Siemens Somatom定义为)和16位深度(Toshiba Aquilion)参数,用钛棒扫描蜡模。现场尺寸为10×10cm 2的直射梁(AP)是预定200cGy剂量,并在摩纳哥TPS上进行计划。将TPS结果与验证的Linac EGSNRC计算进行了比较。针对每个钻头深度参数分析下游剂量的钛棒,并检查现有TP的局限性。钛棒的CT数因每个位深度参数而变化,其中3071±0 Hu,8513±31 Hu,以及12位,12位延伸和16位图像的10006±73UU。 16位深度扫描仪给出了正确的剂量计算的最精确的钛杆CT数,而摩纳哥TPS低估了与EGSNRC计算相比的真正的钛棒剂量为4.95%。

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