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Medical Physics|February 11, 2012
Ex vivo evaluation of a coherent normalization procedure to quantify in vivo finger strontium XRS measurementsC M Heirwegh, D R Chettle, A Pejovicc-MiliccEnvironmental Health Perspectives|August 1, 1994
The reproducibility of 109Cd-based X-ray fluorescence measurements of bone leadC L Gordon, C E Webber, D R ChettlePhysics in Medicine and Biology|September 1, 1985
In vivo measurement of lead in bone using x-ray fluorescenceL J Somervaille, D R Chettle, M C ScottRadiation Protection Dosimetry|July 27, 2007
Monte Carlo simulation of trabecular bone remodelling and absorbed dose coefficients for tritium and 14CR B Richardson, H L Nie, D R ChettleJournal of Inorganic Biochemistry|September 11, 2009
Noninvasive measurement of aluminium in human bone: preliminary human study and improved system performanceAslam, K Davis, A Pejović-Milić, et al.Postgraduate Medical Journal|July 1, 1979
Birmingham Medical Research Expeditionary Society 1977 Expedition: effect of a Himalayan trek on whole body composition, nitrogen and potassiumT C Harvey, H M James, D R ChettleApplied Radiation and Isotopes : Including Data, Instrumentation and Methods for Use in Agriculture, Industry and Medicine|February 24, 2001
Normalisation with coherent scatter signal: improvements in the calibration procedure of the 57Co-based in vivo XRF bone-Pb measurementJ M O'Meara, J Börjesson, D R Chettle, et al.Physics in Medicine and Biology|December 9, 2008
Opportunities to improve the in vivo measurement of manganese in human handsAslam, D R Chettle, A Pejović-Milić, et al.Radiation Research|July 1, 1991
Neutron and cobalt-60 gamma irradiation produce similar changes in DNA supercoilingA T Vaughan, D J Gordon, D R Chettle, et al.Physics in Medicine and Biology|August 1, 1992
Design studies related to an in vivo neutron activation analysis facility for measuring total body nitrogenI E Stamatelatos, D R Chettle, S Green, et al.Pageof 70