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Applied Radiation and Isotopes : Including Data, Instrumentation and Methods for Use in Agriculture, Industry and Medicine|December 18, 2016
Confirming improved detection of gadolinium in bone using in vivo XRFM L Lord, F E McNeill, J L Gräfe, et al.Physiological Measurement|January 26, 2012
The feasibility of in vivo quantification of bone-fluorine in humans by delayed neutron activation analysis: a pilot studyM Chamberlain, J L Gräfe, S H Byun, et al.Physics in Medicine and Biology|December 1, 1992
A feasibility study of the in vivo measurement of aluminium in peripheral boneS Green, D R ChettleEnvironmental Research|April 1, 1992
In vivo X-ray fluorescence of lead in bone using K X-ray excitation with 109Cd sources: radiation dosimetry studiesA C Todd, F E McNeill, J E Palethorpe, et al.Physiological Measurement|October 3, 2017
The decrease in population bone lead levels in Canada between 1993 and 2010 as assessed by in vivo XRFF E McNeill, M Fisher, D R Chettle, et al.Physics in Medicine and Biology|April 26, 2007
Dosimetric characterization of the irradiation cavity for accelerator-based in vivo neutron activation analysisS H Byun, A Pejović-Milić, S McMaster, et al.Scandinavian Journal of Work, Environment & Health|April 1, 1986
In vivo elemental analysis in occupational medicineM C Scott, D R ChettleAmerican Journal of Industrial Medicine|January 1, 1992
Further scientific issues in determining an occupational standard for cadmiumD R Chettle, K J EllisEnvironmental Health Perspectives|February 1, 1994
In vivo X-ray fluorescence of lead in bone: review and current issuesA C Todd, D R ChettlePhysiological Measurement|January 10, 2017
Age and sex influence on bone and blood lead concentrations in a cohort of the general population living in TorontoS Behinaein, D R Chettle, M Fisher, et al.Pageof 70