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Theoretical implications of incorporating relative biological effectiveness into radiobiological equivalence relationships

机译:将相对生物学有效性纳入放射生物学等效关系的理论含义

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Objective: Earlier radiobiological equivalence relationships as derived for low-linear energy transfer (LET) radiations are revisited in the light of newer radiobiological models that incorporate an allowance for relative biological effectiveness (RBE). Methods: Linear-quadratic (LQ) radiobiological equations for calculating biologically effective dose at both low- and high-LET radiations are used to derive new conditions of equivalence between a variety of radiation delivery techniques. The theoretical implications are discussed. Results: The original (pre-LQ) concept of equivalence between fractionated and continuous radiotherapy schedules, in which the same physical dose is delivered in each schedule, inherently assumed that low-LET radiation would be used in both schedules. LQ-based equivalence relationships that allow for RBE and are derived assuming equal total physical dose between schedules are shown to be valid only in limited circumstances. Removing the constraint of equality of total physical dose allows the identification of more general (and more practical) relationships. Conclusion: If the respective schedules under consideration for equivalence both involve radiations of identical LET, then the original equivalence relationships remain valid. However, if the compared schedules involve radiations of differing LET, then new (and more restrictive) equivalence relationships are found to apply.
机译:目的:根据更新的放射生物学模型(结合相对生物学有效性(RBE)),重新审视了针对低线性能量转移(LET)辐射得出的较早的放射生物学等效关系。方法:用于计算低LET和高LET辐射下的生物有效剂量的线性二次(LQ)放射生物学方程式,用于推导各种辐射传输技术之间等效的新条件。理论意义进行了讨论。结果:原始(LQ前)概念是指分次放疗和连续放疗时间表之间的等效性,其中在每个时间表中均提供相同的物理剂量,固有地假定在两个时间表中都将使用低LET辐射。基于LQ的等价关系允许RBE,并且假定时间表之间的总物理剂量相等,则得出的等价关系仅在有限的情况下才有效。消除总物理剂量相等的约束可以识别更一般(和更实际)的关系。结论:如果正在考虑等效性的各个时间表都涉及相同LET的辐射,则原始等效性关系仍然有效。但是,如果比较的时间表涉及不同LET的辐射,则发现适用新的(且更具限制性的)等价关系。

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