Late Somatic Effects in Female RF/Un Mice Irradiated with Single Doses of 14-MeV Fast Neutrons

E. B. Darden, G. E. Cosgrove, A. C. Upton, K. W. Christenberry, J. W. Conklin, Mansel. Davies, D.G. Gosslee, Marvin A. Kastenbaum

International Journal of Radiation Biology and Related Studies in Physics Chemistry and Medicine · 1967 · 21 citations · 25 references

Concepts

Abstract

SummaryRF/Un female mice (∼ 1700 animals), 10–11 weeks old, were given a single whole-body irradiation with 14 meV neutrons (either 0, 50, 100, 200 or 400 rads) at a dose-rate of 1–2 rads/min. The mean age at death for 30-day survivors decreased with increasing dose. The incidence of thymic lymphoma and of myeloid leukaemia increased with dose. The incidence of ovarian tumours increased with dose to a maximum at 100 rads. Radiation enhanced the decline in haematocrit with age. Lens opacities developed in all irradiated groups by 3 months after exposure, progressed at a dose-dependent rate, and ultimately attained a level of severity which greatly exceeded any senile changes in the controls. Other common non-neoplastic diseases were not increased in incidence by irradiation, but all occurred earlier in irradiated animals. The results suggest that 14 meV neutrons are more effective than gamma-rays for shortening life and for producing lens opacities but not necessarily for inducing neoplasms, depending on the neoplasm in question.

References

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