Published 1997 | Version v1
Journal article

A unified system of radiation bio-effectiveness and its consequences in practical applications

Creators

  • 1. Saint Andrews Univ. (United Kingdom)

Description

A model has been formulated as a function of the quality parameter, 'mean free path for linear primary ionisation', denoted here by lambda, for prediction of the risk of inactivation of irradiated mammalian cells. The model is intended to be a unified one applicable to any radiation type. In effect, it determines the yield of double-strand breaks per charged particle fluence in the medium of interest. It includes provision for direct and indirect action with a repair capability that is dependent on the duration of the irradiation, rather than the dose rate, and the known variation in radiosensitivity during progress of the cell cycle. The general validity of the model, derived from probe experiments with heavy charged particles, is tested against the results of Hofer et al in their experiments on synchronised CHO cells, labelled with the Auger electron emitter 125I. Good agreement is obtained for an allocated mean repair time of 2.3 h. Analysis of the predictions of the model leads to new interpretations on the damaging role of heavy particles in therapy and protection. On the basis of this work there seem to be realistic prospects of defining a new unified fluence-based system of dosimetry which, with conceptually new instrumentation designed to have a radiation response simulating that of the nanometre sites, possibly a segment of the DNA, will be more rigorous and meaningful than the currently adopted system. Examples of application of the new quality concept leads to proposals for improved heavy particle therapy and of risk evaluation in radiation protection. (author)

Additional details

Publishing Information

Journal Title
Radiation Protection Dosimetry
Journal Volume
70
Journal Issue
1-4
Journal Page Range
p. 529-536.
ISSN
0144-8420
CODEN
RPDODE

Conference

Title
8. symposium on neutron dosimetry.
Dates
13-17 Nov 1995.
Place
Paris (France).

Optional Information

Secondary number(s)
CONF--951119.