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European Journal of Applied Physiology and Occupational Physiology|January 1, 1995
Changes in the electromyographic spectrum power distribution caused by a progressive increase in the force levelM Bilodeau, M Cincera, S Gervais, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 1, 1990
Acquisition of protease resistance by prion proteins in scrapie-infected cells does not require asparagine-linked glycosylationA Taraboulos, M Rogers, D R Borchelt, et al.
Cell|November 20, 1987
Distinct prion proteins in short and long scrapie incubation period miceD Westaway, P A Goodman, C A Mirenda, et al.
Proceedings of the National Academy of Sciences of the United States of America|May 1, 1980
Electrophoretic properties of the scrapie agent in agarose gelsS B Prusiner, D F Groth, C Bildstein, et al.
Journal of Virology|March 1, 1991
Scrapie prion rod formation in vitro requires both detergent extraction and limited proteolysisM P McKinley, R K Meyer, L Kenaga, et al.
Molecular and Cellular Biology|March 1, 1990
Three hamster species with different scrapie incubation times and neuropathological features encode distinct prion proteinsD H Lowenstein, D A Butler, D Westaway, et al.
Environmental Science & Technology|March 5, 2004
Microscale distribution of cesium sorbed to biotite and muscoviteJames P McKinley, John M Zachara, Steven M Heald, et al.
Virology|September 1, 1987
Purified scrapie prions resist inactivation by procedures that hydrolyze, modify, or shear nucleic acidsC Bellinger-Kawahara, T O Diener, M P McKinley, et al.
Proceedings of the National Academy of Sciences of the United States of America|July 1, 1981
Thiocyanate and hydroxyl ions inactivate the scrapie agentS B Prusiner, D F Groth, M P McKinley, et al.
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