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Biorheology|January 1, 1989
Perihemorheology: the bridge between the vessel-blood organ and the organs it penetratesA L CopleyThrombosis Research. Supplement|January 1, 1983
The physiological significance of the endoendothelial fibrin lining (EEFL) as the critical interface in the 'vessel-blood organ' and the importance of in vivo 'fibrinogenin formation' in health and diseaseA L CopleyBiorheology|January 1, 1984
The endoendothelial fibrin lining as the crucial barrier and the role of fibrin(ogenin) gels in controlling transcapillary transportA L CopleyAcupuncture & Electro-Therapeutics Research|January 1, 1985
Biorheology, Western medicine and acupunctureA L CopleyThrombosis Research|August 1, 1984
A survey of surface hemorheological experiments on the inhibition of fibrinogenin formation employing surface layers of fibrinogen systems with heparins and other substances. A contribution on antithrombogenic actionA L Copley, R G KingBiorheology|January 1, 1983
On the antithrombogenic action of low molecular weight heparins and of chondroitins A, B and CA L Copley, R G King, S ChienCancer Research|January 1, 1984
Quinone-induced DNA damage and its relationship to antitumor activity in L5178Y lymphoblastsA Begleiter, G W BlairJournal of Neurology, Neurosurgery, and Psychiatry|October 1, 1972
Blood viscosity in multiple sclerosisG W Blair, R H MatchettThe Journal of General Physiology|October 30, 2009
HUMORAL RHEOLOGY : I. VISCOSITY STUDIES AND ANOMALOUS FLOW PROPERTIES OF HUMAN BLOOD SYSTEMS WITH HEPARIN AND OTHER ANTICOAGULANTSA L Copley, L C Krchma, M E WhitneyBiorheology. Supplement : the Official Journal of the International Society of Biorheology|January 1, 1984
Biorheological methods employing the Weissenberg rheogoniometerR G King, S Chien, S Usami, et al.Pageof 2