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首页> 外文期刊>Journal of applied clinical medical physics / >Method for verifying the air kerma strength of I‐125 plaques for the treatment of ocular melanoma
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Method for verifying the air kerma strength of I‐125 plaques for the treatment of ocular melanoma

机译:验证I-125斑块的空气比释动能强度用于眼部黑色素瘤治疗的方法

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The purpose of this work was to develop a method for easily verifying that the activity or air kerma strength of pre-assembled eye plaques, used in the treatment of ocular melanomas, agrees with the activity or air kerma strength called for in the treatment plan. A Capintec CRC-7 Dose Calibrator with its standard vial/syringe sample holder was used to measure the activity of pre-assembled COMS and Eye Physics EP917 eye plaques using IsoAid Advantage I-125 seeds. Plaque activity measurements were made by placing the plaque face up in the center of a 5 cm tall Styrofoam insert in the source holder. Activity measurements were made with the source holder rotated to four angles (0°, 90°, 180°, and 270°). The average of these four values was converted to air kerma strength and divided by the assay air kerma strength, from the NIST traceable source calibration, and decayed to the plaque measurement date, to determine a plaque calibration factor. The average of the calibration factors for each plaque type was used to establish a calibration factor for each plaque type. Several partially loaded plaque configurations were included in this study and different methods were used to determine the effects of partial loading. This verification method is easy to implement with commonly available equipment and is effective in identifying possible errors. During this two-year study, the air kerma strength of 115 eye plaques was checked and 11 possible errors were identified.PACS number: 87.55.Qr
机译:这项工作的目的是开发一种方法,以轻松验证用于治疗眼部黑色素瘤的预组装眼斑的活性或空气比释动能强度是否与治疗计划中要求的活性或空气比释动能强度一致。使用带有标准小瓶/注射器样品架的Capintec CRC-7剂量校准器,使用IsoAid Advantage I-125种子测量预组装的COMS和Eye Physics EP917眼斑的活性。通过将噬菌斑面朝上放置在源支架中5厘米高的聚苯乙烯泡沫塑料插入物的中心进行噬菌斑活性测量。在将放射源支架旋转到四个角度(0°,90°,180°和270°)的情况下进行活性测量。将这四个值的平均值转换为空气比释动能强度,然后将其除以NIST可溯源校准得到的空气比释动能强度,然后衰减至菌斑测量日期,以确定菌斑校准因子。使用每种斑块类型的校准因子的平均值来建立每种斑块类型的校准因子。这项研究包括几种部分加载的牙菌斑配置,并使用不同的方法来确定部分加载的影响。这种验证方法很容易用通用设备实现,并且在识别可能的错误时很有效。在这项为期两年的研究中,检查了115眼斑的空气比释动能强度,发现了11种可能的错误.PACS编号:87.55.Qr

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