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Microcirculation (New York, N.Y. : 1994)|April 12, 2001
Simulating the spread of membrane potential changes in arteriolar networksG J Crane, M L Hines, T O NeildClinical and Experimental Pharmacology & Physiology|June 13, 2002
Cellular coupling and conducted vasomotor responsesT O Neild, G J CranePhysics in Medicine and Biology|October 26, 1999
An equation describing spread of membrane potential changes in a short segment of blood vesselG J Crane, T O NeildJournal of Vascular Research|January 9, 2001
Electrophysiological basis of arteriolar vasomotion in vivoI S Bartlett, G J Crane, T O Neild, et al.Brain Research|January 27, 1978
Slowly-developing depolarization of neurones in the guinea-pig inferior mesenteric ganglion following repetitive stimulation of the preganglionic nervesT O NeildThe Journal of Physiology|May 1, 1987
Actions of neuropeptide Y on innervated and denervated rat tail arteriesT O NeildProceedings of the Royal Society of London. Series B, Biological Sciences|December 22, 1983
The relation between the structure and innervation of small arteries and arterioles and the smooth muscle membrane potential changes expected at different levels of sympathetic nerve activityT O NeildMicrovascular Research|September 1, 1989
A study of the phasic response of arterioles of the guinea pig small intestine to prolonged exposure to norepinephrineT O Neild, N KotechaGeneral Pharmacology|January 1, 1986
Effects of alpha beta methylene ATP on membrane potential, neuromuscular transmission and smooth muscle contraction in the rat tail arteryT O Neild, N KotechaThe Journal of Physiology|February 1, 1995
Vasodilatation and smooth muscle membrane potential changes in arterioles from the guinea-pig small intestineN Kotecha, T O NeildPageof 7