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Investigation into the use of a MOSFET dosimeter as an implantable fiducial marker

机译:使用MOSFET剂量计作为可植入基准标记的研究

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摘要

It may be possible to use a single device to measure the in vivo dose delivered during radiotherapy, as well as to localize the target volume. This potential, as well as the detectors' ability to relate dosimetry and localization, were evaluated using two implantable MOSFET dosimeters placed inside an acrylic pelvic phantom. A wedged‐field photon plan and an eight‐field prostate treatment plan were developed. For each plan, conditions were simulated so that detectors were in their correct positions or slightly displaced to represent patient setup error and/or organ motion. Doses measured by the two detectors after irradiation were compared to those calculated by the treatment planning software. Additionally, using localization software and kilovoltage images of each setup, the displacement of the detectors from their correct locations was calculated and compared to the induced physical displacement. For all alignments and detector positions, measured and calculated doses showed an average disagreement of 2.7%. The detectors were easily visualized radiographically and the induced detector displacements were typically recognized by the localization software to within 0.1 cm. The implantable detector functioned well as both an internal dosimeter and as an internal fiducial marker, and thus may be useful as a clinical tool to localize the target volume and verify dose delivery in vivo.PACS numbers: 87.53.‐j 87.55.‐x
机译:可能有可能使用单个设备来测量放射治疗期间递送的体内剂量,以及确定目标体积。使用放置在丙烯酸树脂盆腔体模内的两个可植入MOSFET剂量计,评估了这种潜力以及检测器与剂量学和定位相关的能力。制定了楔场光子计划和八场前列腺治疗计划。对于每个计划,都要模拟条件,以使检测器处于其正确位置或略微移位以代表患者设置错误和/或器官运动。将两个探测器在辐照后测量的剂量与治疗计划软件计算的剂量进行比较。此外,使用定位软件和每个设置的千伏图像,可以计算出探测器从其正确位置开始的位移,并将其与感应的物理位移进行比较。对于所有比对和检测器位置,测量和计算的剂量显示平均差异为2.7%。可以轻松地通过射线照相对检测器进行可视化,并且通常由定位软件将感应到的检测器位移识别到0.1厘米以内。植入式检测器既可以用作内部剂量计,也可以用作内部基准标记,因此可以用作定位目标体积并验证体内剂量输送的临床工具.PACS编号:87.53.-j 87.55.-x

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