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Combining dosimetry for targeted radionuclide and external beam therapies using the biologically effective dose.

机译:使用生物有效剂量,将剂量测定法用于靶向放射性核素和外照射疗法。

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摘要

It is not uncommon for a patient to receive both external beam and targeted radionuclide therapy during the course of a cancer treatment. The total dose received by the tumor and by normal tissues will therefore be subject to the contributions of both treatment modalities. However, the two treatments are generally applied independently of one another, with little attention paid to the combined effect. With the availability of patient-specific three-dimensional dosimetry for radionuclide therapies, it is pertinent now to consider the combined effect of the two treatments, and to investigate how dosimetry for this situation may be carried out. Methodology has been developed to allow a combination of dose information from the two types of therapy. The biologically effective dose (BED) has been employed to address the issue of inequivalence of biological effect of the two therapies. Dose distributions have been represented as distributions of BED, and the net effect resulting from the combination of these two therapies demonstrated through a combination of BED maps. Examples are presented of cases in which this analysis of a combined therapy provides a more favorable treatment than either therapy alone. For one patient the ratio of the mean spinal cord dose to the mean CTV dose was calculated for both an external beam therapy alone and for a combined therapy and was found to be 0.40 and 0.16, respectively.
机译:病人在癌症治疗过程中同时接受外照射和靶向放射性核素治疗并不少见。因此,肿瘤和正常组织所接受的总剂量将受两种治疗方式的影响。然而,两种治疗通常彼此独立地应用,而很少注意联合作用。随着针对放射性核素治疗的患者特定的三维剂量测定法的可用性,现在有必要考虑两种治疗方法的联合作用,并研究如何针对这种情况进行剂量测定法。已经开发出方法学以允许来自两种疗法的剂量信息的组合。生物学有效剂量(BED)已用于解决两种疗法的生物学效应不相等的问题。剂量分布已表示为BED的分布,而这两种疗法的组合所产生的净效果通过BED图的组合得到了证明。列举了一些案例,其中对联合疗法的这种分析比单独的任何一种疗法提供了更有利的治疗。对于一名患者,计算了单独的外部束治疗和联合治疗的平均脊髓剂量与CTV平均剂量之比,发现分别为0.40和0.16。

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