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体内发射体剂量学

Dosimetry of internal emitters.

作者信息

Sgouros George

机构信息

Department of Radiology, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

出版信息

J Nucl Med. 2005 Jan;46 Suppl 1:18S-27S.

Abstract

Response and toxicity prediction is essential to rational implementation of cancer therapy. The biologic effects of radionuclide therapy are mediated via a well-defined physical quantity, the absorbed dose, which is defined as the energy absorbed per unit mass of tissue. The concepts, basic definitions, and different approaches to the clinical implementation of absorbed dose estimation are reviewed in this article. Ongoing efforts to improve the accuracy of dosimetry calculations are discussed, as well as studies examining the relationship between absorbed dose and response. Particular attention is placed on the marrow and kidney as dose-limiting organs. Finally, the potential role of radiobiologic modeling in helping to account for differences in dose rate and spatial distribution are reviewed. A treatment planning approach to radionuclide therapy will eventually require incorporation of biologic and radiobiologic considerations. Until such methods are developed and validated, absorbed dose remains an important variable--but still one of several--likely to predict response in an individual patient.

摘要

反应和毒性预测对于合理实施癌症治疗至关重要。放射性核素治疗的生物学效应是通过一个明确的物理量——吸收剂量介导的,吸收剂量定义为单位质量组织吸收的能量。本文综述了吸收剂量估计的概念、基本定义以及临床应用的不同方法。讨论了为提高剂量学计算准确性而正在进行的努力,以及研究吸收剂量与反应之间关系的研究。特别关注骨髓和肾脏作为剂量限制器官。最后,综述了放射生物学建模在解释剂量率和空间分布差异方面的潜在作用。放射性核素治疗的治疗计划方法最终将需要纳入生物学和放射生物学考虑因素。在开发和验证此类方法之前,吸收剂量仍然是一个重要变量——但仍然只是可能预测个体患者反应的几个变量之一。

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