The protection of biota from ionising radiations needs reliable predictions of radionuclide dynamics in wild animals. Data specific for many wild animal – radionuclide combinations is lacking and a number of approaches including allometry have been proposed to address this. However, for 14C and 3H, which are integral components of animal tissues and their diets, a different approach is needed. Here we propose a metabolically based model which can be parameterised predominantly on the basis of published metabolic data. We begin with a metabolic definition of the 14C and OBT loss rate (assumed to be the same) from the whole body and specific organs. The mammalian body is conceptually partitioned into compartments (body water, viscera, adipos...
For the safe and clean future of nuclear energy robust models of environmental transfer of radionucl...
In the frame of current revision of human dosimetry of 14C and tritium , undertaken by the Internat...
Abstract The 15N/14N signature of animal proteins is now commonly used to understand their physiolog...
The protection of biota from ionising radiations needs reliable predictions of radionuclide dynamics...
Associated with the present debate regarding the potential revival of nuclear energy there is an inc...
Abstract The transfer through the environment of 3H and 14C must be modelled differently than that o...
Abstract Associated with the present debate regarding the potential revival of nuclear energy there ...
Associated with the present debate regarding the potential revival of nuclear energy there is an inc...
Tritium (3H) transfer into environment must be modelled differently than the transfer of other radio...
Available data have been analysed to test the hypothesis that both 3H and 14C transfer in mammals ca...
We have assessed the tritium and 14C concentrations in wild animals under conditions of continuous e...
The radionuclides 14C and 3H may both be released from nuclear facilities. These radionuclides are u...
The stable isotopes of carbon (13C /12C) and nitrogen (15N /14N) represent powerful tools in food-we...
International audienceThe 15N/14N signature of animal proteins is now commonly used to understand th...
In contrast to many radionuclides (which often have no biological function) 3H has a stable analogue...
For the safe and clean future of nuclear energy robust models of environmental transfer of radionucl...
In the frame of current revision of human dosimetry of 14C and tritium , undertaken by the Internat...
Abstract The 15N/14N signature of animal proteins is now commonly used to understand their physiolog...
The protection of biota from ionising radiations needs reliable predictions of radionuclide dynamics...
Associated with the present debate regarding the potential revival of nuclear energy there is an inc...
Abstract The transfer through the environment of 3H and 14C must be modelled differently than that o...
Abstract Associated with the present debate regarding the potential revival of nuclear energy there ...
Associated with the present debate regarding the potential revival of nuclear energy there is an inc...
Tritium (3H) transfer into environment must be modelled differently than the transfer of other radio...
Available data have been analysed to test the hypothesis that both 3H and 14C transfer in mammals ca...
We have assessed the tritium and 14C concentrations in wild animals under conditions of continuous e...
The radionuclides 14C and 3H may both be released from nuclear facilities. These radionuclides are u...
The stable isotopes of carbon (13C /12C) and nitrogen (15N /14N) represent powerful tools in food-we...
International audienceThe 15N/14N signature of animal proteins is now commonly used to understand th...
In contrast to many radionuclides (which often have no biological function) 3H has a stable analogue...
For the safe and clean future of nuclear energy robust models of environmental transfer of radionucl...
In the frame of current revision of human dosimetry of 14C and tritium , undertaken by the Internat...
Abstract The 15N/14N signature of animal proteins is now commonly used to understand their physiolog...