Diethylene Triamine Pentaacetic Acid (DTPA) is used for decorporation of plutonium because it is known to be able to enhance its urinary excretion for several days after treatment by forming stable Pu-DTPA complexes. The decorporation prevents accumulation in organs and results in a dosimetric benefit, which is difficult to quantify from bioassay data using existing models. The development of a biokinetic model describing the mechanisms of actinide decorporation by administration of DTPA was initiated as a task in the European COordinated Network on RAdiation Dosimetry (CONRAD). The systemic biokinetic model from Leggett et al. and the biokinetic model for DTPA compounds of International Commission on Radiological Protection Publication 53 ...
Administration of diethylene triamine pentaacetic acid (DTPA) can enhance the urinary excretion rate...
Abstract Purpose: To develop a physiologically based compartmental approach for modeling plutonium d...
International audienceA major challenge in modelling the decorporation of actinides (An), such as am...
cited By 12Diethylene Triamine Pentaacetic Acid (DTPA) is used for decorporation of plutonium becaus...
cited By 12Diethylene Triamine Pentaacetic Acid (DTPA) is used for decorporation of plutonium becaus...
cited By 12Diethylene Triamine Pentaacetic Acid (DTPA) is used for decorporation of plutonium becaus...
cited By 12Diethylene Triamine Pentaacetic Acid (DTPA) is used for decorporation of plutonium becaus...
cited By 12Diethylene Triamine Pentaacetic Acid (DTPA) is used for decorporation of plutonium becaus...
cited By 12Diethylene Triamine Pentaacetic Acid (DTPA) is used for decorporation of plutonium becaus...
cited By 12International audienceDiethylene Triamine Pentaacetic Acid (DTPA) is used for decorporati...
cited By 12International audienceDiethylene Triamine Pentaacetic Acid (DTPA) is used for decorporati...
Administration of diethylene triamine pentaacetic acid (DTPA) can enhance the urinary excretion rate...
Administration of diethylene triamine pentaacetic acid (DTPA) can enhance the urinary excretion rate...
Administration of diethylene triamine pentaacetic acid (DTPA) can enhance the urinary excretion rate...
Administration of diethylene triamine pentaacetic acid (DTPA) can enhance the urinary excretion rate...
Administration of diethylene triamine pentaacetic acid (DTPA) can enhance the urinary excretion rate...
Abstract Purpose: To develop a physiologically based compartmental approach for modeling plutonium d...
International audienceA major challenge in modelling the decorporation of actinides (An), such as am...
cited By 12Diethylene Triamine Pentaacetic Acid (DTPA) is used for decorporation of plutonium becaus...
cited By 12Diethylene Triamine Pentaacetic Acid (DTPA) is used for decorporation of plutonium becaus...
cited By 12Diethylene Triamine Pentaacetic Acid (DTPA) is used for decorporation of plutonium becaus...
cited By 12Diethylene Triamine Pentaacetic Acid (DTPA) is used for decorporation of plutonium becaus...
cited By 12Diethylene Triamine Pentaacetic Acid (DTPA) is used for decorporation of plutonium becaus...
cited By 12Diethylene Triamine Pentaacetic Acid (DTPA) is used for decorporation of plutonium becaus...
cited By 12International audienceDiethylene Triamine Pentaacetic Acid (DTPA) is used for decorporati...
cited By 12International audienceDiethylene Triamine Pentaacetic Acid (DTPA) is used for decorporati...
Administration of diethylene triamine pentaacetic acid (DTPA) can enhance the urinary excretion rate...
Administration of diethylene triamine pentaacetic acid (DTPA) can enhance the urinary excretion rate...
Administration of diethylene triamine pentaacetic acid (DTPA) can enhance the urinary excretion rate...
Administration of diethylene triamine pentaacetic acid (DTPA) can enhance the urinary excretion rate...
Administration of diethylene triamine pentaacetic acid (DTPA) can enhance the urinary excretion rate...
Abstract Purpose: To develop a physiologically based compartmental approach for modeling plutonium d...
International audienceA major challenge in modelling the decorporation of actinides (An), such as am...