Zeitschrift für Medizinische Physik (Feb 2024)

Time-integrated radiation risk metrics and interpopulation variability of survival

  • Alexander Ulanowski,
  • Nobuhiko Ban,
  • Kotaro Ozasa,
  • Werner Rühm,
  • Edward Semones,
  • Mark Shavers,
  • Ludovic Vaillant

Journal volume & issue
Vol. 34, no. 1
pp. 64 – 82

Abstract

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Task Group 115 of the International Commission on Radiological Protection is focusing on mission-related exposures to space radiation and concomitant health risks for space crew members including, among others, risk of cancer development. Uncertainties in cumulative radiation risk estimates come from the stochastic nature of the considered health outcome (i.e., cancer), uncertainties of statistical inference and model parameters, unknown secular trends used for projections of population statistics and unknown variability of survival properties between individuals or population groups. The variability of survival is usually ignored when dealing with large groups, which can be assumed well represented by the statistical data for the contemporary general population, either in a specific country or world averaged. Space crew members differ in many aspects from individuals represented by the general population, including, for example, their lifestyle and health status, nutrition, medical care, training and education. The individuality of response to radiation and lifespan is explored in this modelling study. Task Group 115 is currently evaluating applicability and robustness of various risk metrics for quantification of radiation-attributed risks of cancer for space crew members. This paper demonstrates the impact of interpopulation variability of survival curves on values and uncertainty of the estimates of the time-integrated radiation risk of cancer.

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