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微剂量学在放射生物学中的应用

On the application of microdosimetry to radiobiology.

作者信息

Zaider M, Rossi H H

机构信息

Radiological Research Laboratory, College of Physicians and Surgeons of Columbia University, New York, New York 10032.

出版信息

Radiat Res. 1988 Jan;113(1):15-24.

PMID:3340718
Abstract

The pertinence of proportional counter microdosimetry to radiobiology rests on the idea of the site model; in view of the current emphasis on formalisms based on the distance model, it would appear that the role of experimental microdosimetry as a predictive tool is compromised. In this paper we challenge this opinion. It is shown that, to the extent that the site model is not only limited to convex sites of simple geometry, (a) the site model and the distance model become only complementary aspects (i.e., two possible interpretations) of the same formalism, and current biophysical theory is not equipped to discriminate, based on experimental evidence, between the two; (b) proportional counter microdosimetry retains its validity; and (c) for any cellular system [characterized by a function gamma(chi)] the ratio alpha/beta between the linear and quadratic components of the dose-response function can be calculated as a weighted sum of dose-averaged specific energies measured in a series of spherical sites (of different dimensions). An algorithm is provided for calculating the weighting factors.

摘要

正比计数器微剂量学与放射生物学的相关性基于位点模型的概念;鉴于当前对基于距离模型的形式主义的重视,实验微剂量学作为一种预测工具的作用似乎受到了损害。在本文中,我们对这一观点提出质疑。结果表明,只要位点模型不仅限于简单几何形状的凸形位点,(a) 位点模型和距离模型就只是同一形式主义的互补方面(即两种可能的解释),而当前的生物物理理论无法根据实验证据区分两者;(b) 正比计数器微剂量学仍然有效;(c) 对于任何细胞系统 [由函数 gamma(χ) 表征],剂量响应函数的线性和二次成分之间的α/β比值可以计算为在一系列(不同尺寸)球形容器中测量的剂量平均比能的加权和。提供了一种计算加权因子的算法。

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