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Experimental Physiology|March 1, 1997
Transcellular openings through frog microvascular endotheliumC R Neal, C C MichelThe Journal of Physiology|April 1, 1996
Openings in frog microvascular endothelium induced by high intravascular pressuresC R Neal, C C MichelExperimental Physiology|November 1, 1992
Transcellular openings through microvascular walls in acutely inflamed frog mesenteryC R Neal, C C MichelThe Journal of Physiology|August 2, 2000
Effects of temperature on the wall strength and compliance of frog mesenteric microvesselsC R Neal, C C MichelThe Journal of Comparative Neurology|October 15, 1989
Prodynorphin peptide distribution in the forebrain of the Syrian hamster and rat: a comparative study with antisera against dynorphin A, dynorphin B, and the C-terminus of the prodynorphin precursor moleculeC R Neal, S W NewmanThe Journal of Physiology|September 17, 2002
Measurement of hydraulic conductivity of single perfused Rana mesenteric microvessels between periods of controlled shear stressC R Neal, D O BatesMicrocirculation (New York, N.Y. : 1994)|April 1, 1999
Openings through endothelial cells associated with increased microvascular permeabilityC C Michel, C R NealThe Journal of Physiology|October 15, 1995
Transcellular gaps in microvascular walls of frog and rat when permeability is increased by perfusion with the ionophore A23187C R Neal, C C MichelBrain Research|April 22, 1991
Prodynorphin- and substance P-containing neurons project to the medial preoptic area in the male Syrian hamster brainC R Neal, S W NewmanThe Journal of Physiology|February 19, 2002
Openings in frog microvascular endothelium at different rates of increase in pressure and at different temperaturesU Savla, C R Neal, C MichelPageof 3