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Artificial Cells, Blood Substitutes, and Immobilization Biotechnology|March 1, 1996
Recent developments in pharmacokinetic modeling of perfluorocarbon emulsionsY Ni, D H Klein, D Song
Journal of Health Politics, Policy and Law|January 1, 1986
Medicaid myths: trends in Medicaid expenditures and the prospects for reformS M Davidson, J Cromwell, R Schurman
Artificial Cells, Blood Substitutes, and Immobilization Biotechnology|January 1, 1994
Analysis of Ostwald ripening in fluorocarbon emulsions by sedimentation field-flow fractionationR A Arlauskas, D H Klein, J G Weers
Health Care Financing Review|January 5, 1985
The Medical Care Advisory Committee for state Medicaid programs: current status and trendsS M Davidson, T E Herold, M B Simon
Basic Research in Cardiology|October 15, 2020
Targeting myocardial ischaemic injury in the absence of reperfusionM V Basalay, D M Yellon, S M Davidson
Paediatrician|January 1, 1982
Nonphysician health care providers in pediatricsJ Wallen, S M Davidson, D Epstein, et al.
British Journal of Pharmacology|April 2, 2014
Mitochondrial pharmacology: energy, injury and beyondS M Davidson, G D Lopaschuk, M Spedding, et al.
FEMS Yeast Research|January 15, 2010
The Saccharomyces SUN gene, UTH1, is involved in cell wall biogenesisJ J Ritch, S M Davidson, J J Sheehan, et al.
Biomaterials, Artificial Cells, and Immobilization Biotechnology : Official Journal of the International Society for Artificial Cells and Immobilization Biotechnology|January 1, 1992
Particle size distribution of concentrated perfluorocarbon emulsions by sedimentation field flow fractionationD H Klein, D B Burtner, L A Trevino, et al.
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