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Biological Trace Element Research|November 21, 2013
Role of nuclear analytical probe techniques in biological trace-element researchK W Jones, J G PoundsAmerican Journal of Physical Anthropology|April 5, 2008
Problems in determination of skeletal lead burden in archaeological samples: an example from the First African Baptist Church populationL E Wittmers, A C Aufderheide, J G Pounds, et al.Ultramicroscopy|January 1, 1988
X-ray fluorescence with synchrotron radiationK W Jones, B M Gordon, A L Hanson, et al.Basic Life Sciences|January 1, 1990
Trace elemental analysis in bone using x-ray microscopyR S Bockman, R P Warrell, B Levine, et al.Environmental Health Perspectives|March 1, 1990
The role of cell calcium in current approaches to toxicologyJ G PoundsNeurotoxicology|January 1, 1984
Effect of lead intoxication on calcium homeostasis and calcium-mediated cell function: a reviewJ G PoundsBiological Trace Element Research|July 1, 1990
An X-ray microprobe facility using synchrotron radiationB M Gordon, K W Jones, A L Hanson, et al.Proceedings of the National Academy of Sciences of the United States of America|June 1, 1990
Distribution of trace levels of therapeutic gallium in bone as mapped by synchrotron x-ray microscopyR S Bockman, M A Repo, R P Warrell, et al.Environmental Research|October 1, 1984
Subcellular distribution of lead in cultured rat hepatocytesR A Mittelstaedt, J G PoundsToxicology and Applied Pharmacology|July 1, 1988
Cellular Ca2+ homeostasis and Ca2+-mediated cell processes as critical targets for toxicant action: conceptual and methodological pitfallsJ G Pounds, J F RosenPageof 15