Biokinetic models describing the uptake, distribution and excretion of trace elements are an essential tool in nutrition, toxicology, or internal dosimetry of radionuclides. Zirconium, especially its radioisotope (95)Zr, is relevant to radiation protection due to its production in uranium fission and neutron activation of nuclear fuel cladding material. We present a comprehensive set of human data from a tracer study with stable isotopes of zirconium. The data are used to refine a biokinetic model of zirconium. Six female and seven male healthy adult volunteers participated in the study. It includes 16 complete double tracer investigations with oral ingestion and intravenous injection, and seven supplemental investigations. Tracer concentra...
The reliability of biokinetic models is essential in internal dose assessments and radiation risk an...
Zinc kinetics were studied and compared after oral simultaneous administration of two tracers, radio...
Isotope dilution in thermal ionization mass spectrometry (ID-TIMS) is a precise method for quantific...
There is much interest in understanding the biokinetics of zirconium in humans due to the potential ...
There is much interest in understanding the biokinetics of zirconium in humans due to the potential ...
Enriched stable isotopes of zirconium were applied as tracers in a volunteer study on the biokinetic...
Exposure to the radioactive isotope 95Zr, as in nuclear accidents, and to stable zirconium, due to i...
Exposure to the radioactive isotope 95Zr, as in nuclear accidents, and to stable zirconium, due to i...
The interest in the biokinetics of ruthenium and zirconium in humans is justified by the potential r...
The interest in the biokinetics of ruthenium and zirconium in humans is justified by the potential r...
In order to estimate gut absorption by determining tracer concentration in plasma, a technique baled...
Biokinetic models are used in radiation protection to assess internal radiation doses. Experiments w...
Biokinetic models are used in radiation protection to assess internal radiation doses. Experiments w...
Biokinetic models are used in radiation protection to assess internal radiation. Experiments with st...
The release of natural and artificial radionuclides into the environment is increasing the need of b...
The reliability of biokinetic models is essential in internal dose assessments and radiation risk an...
Zinc kinetics were studied and compared after oral simultaneous administration of two tracers, radio...
Isotope dilution in thermal ionization mass spectrometry (ID-TIMS) is a precise method for quantific...
There is much interest in understanding the biokinetics of zirconium in humans due to the potential ...
There is much interest in understanding the biokinetics of zirconium in humans due to the potential ...
Enriched stable isotopes of zirconium were applied as tracers in a volunteer study on the biokinetic...
Exposure to the radioactive isotope 95Zr, as in nuclear accidents, and to stable zirconium, due to i...
Exposure to the radioactive isotope 95Zr, as in nuclear accidents, and to stable zirconium, due to i...
The interest in the biokinetics of ruthenium and zirconium in humans is justified by the potential r...
The interest in the biokinetics of ruthenium and zirconium in humans is justified by the potential r...
In order to estimate gut absorption by determining tracer concentration in plasma, a technique baled...
Biokinetic models are used in radiation protection to assess internal radiation doses. Experiments w...
Biokinetic models are used in radiation protection to assess internal radiation doses. Experiments w...
Biokinetic models are used in radiation protection to assess internal radiation. Experiments with st...
The release of natural and artificial radionuclides into the environment is increasing the need of b...
The reliability of biokinetic models is essential in internal dose assessments and radiation risk an...
Zinc kinetics were studied and compared after oral simultaneous administration of two tracers, radio...
Isotope dilution in thermal ionization mass spectrometry (ID-TIMS) is a precise method for quantific...