Literature DB >> 9650608

The effects of delta rays on the number of particle-track traversals per cell in laboratory and space exposures.

F A Cucinotta1, H Nikjoo, D T Goodhead.   

Abstract

It is a common practice to estimate the number of particle-track traversals per cell or cell nucleus as the product of the ion's linear energy transfer (LET) and cell area. This practice ignores the effects of track width due to the lateral extension of delta rays. We make estimates of the number of particle-track traversals per cell, which includes the effects of delta rays using radial cutoffs in the ionization density about an ion's track of 1 mGy and 1 cGy. Calculations for laboratory and space radiation exposures are discussed, and show that the LET approximation provides a large underestimate of the actual number of particle-track traversals per cell from high-charge and energy (HZE) ions. In light of the current interest in the mechanisms of radiation action, including signal transduction and cytoplasmic damage, these results should be of interest for radiobiology studies with HZE ions.

Entities:  

Keywords:  NASA Discipline Radiation Health

Mesh:

Substances:

Year:  1998        PMID: 9650608

Source DB:  PubMed          Journal:  Radiat Res        ISSN: 0033-7587            Impact factor:   2.841


  29 in total

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6.  DNA damage intensity in fibroblasts in a 3-dimensional collagen matrix correlates with the Bragg curve energy distribution of a high LET particle.

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10.  Two- and three-dimensional models for risk assessment of radiation-enhanced colorectal tumorigenesis.

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