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Physics in Medicine and Biology|April 4, 2007
In vivo study of an x-ray fluorescence system to detect bone strontium non-invasivelyM Zamburlini, A Pejović-Milić, D R Chettle, et al.Environmental Research|December 1, 1992
In vivo X-ray fluorescence of lead in boneA C Todd, F E McNeill, B A FowlerScandinavian Journal of Work, Environment & Health|April 30, 1998
Lead concentrations in tibial and calcaneal bone in relation to the history of occupational lead exposureI A Bergdahl, U Strömberg, L Gerhardsson, et al.Journal of Trace Elements in Medicine and Biology : Organ of the Society for Minerals and Trace Elements (GMS)|August 30, 2014
A neutron activation technique for manganese measurements in humansC Bhatia, S H Byun, D R Chettle, et al.Talanta|October 31, 2008
Lead post-mortem intake in human bones of ancient populations by (109)Cd-based X-ray fluorescence and EDXRFJ Rebôcho, M L Carvalho, A F Marques, et al.Medical Physics|April 9, 2004
Quantification of bone strontium levels in humans by in vivo x-ray fluorescenceA Pejović-Milić, I M Stronach, J Gyorffy, et al.Applied Radiation and Isotopes : Including Data, Instrumentation and Methods for Use in Agriculture, Industry and Medicine|October 1, 1994
In vivo measurements of bone lead content in residents of southern OntarioC Gamblin, C L Gordon, D C Muir, et al.Human & Experimental Toxicology|January 1, 1990
Effect of occupational lead exposure on serum 1,25-dihydroxyvitamin D levelsH J Mason, L J Somervaille, A L Wright, et al.Applied Radiation and Isotopes : Including Data, Instrumentation and Methods for Use in Agriculture, Industry and Medicine|March 1, 1997
Further experience with bone lead content measurements in residents of southern OntarioM M Roy, C L Gordon, L F Beaumont, et al.Radiation Protection Dosimetry|June 12, 2003
Investigating the TEPC radiation quality factor response for low energy accelerator based clinical applicationsAslam, W V Prestwich, F E McNeill, et al.Pageof 70