K+ is an endothelium-derived hyperpolarizing factor in rat arteries G Edwards, KA Dora, MJ Gardener, CJ Garland, AH Weston Nature 396 (6708), 269-272, 1998 | 1298 | 1998 |
Endothelium-dependent hyperpolarization: a role in the control of vascular tone CJ Garland, F Plane, BK Kemp, TM Cocks Trends in pharmacological sciences 16 (1), 23-30, 1995 | 571 | 1995 |
Evidence that nitric oxide does not mediate the hyperpolarization and relaxation to acetylcholine in the rat small mesenteric artery CJ Garland, GA McPherson British journal of pharmacology 105 (2), 429-435, 2012 | 426 | 2012 |
How can we improve our understanding of cardiovascular safety liabilities to develop safer medicines? HG Laverty, C Benson, EJ Cartwright, MJ Cross, C Garland, T Hammond, ... British journal of pharmacology 163 (4), 675-693, 2011 | 404 | 2011 |
The changing natural history of spinal muscular atrophy type 1 M Oskoui, G Levy, CJ Garland, JM Gray, J O’hagen, DC De Vivo, ... Neurology 69 (20), 1931-1936, 2007 | 362 | 2007 |
Recent developments in vascular endothelial cell transient receptor potential channels X Yao, CJ Garland Circulation research 97 (9), 853-863, 2005 | 328 | 2005 |
Nitric oxide (NO)‐induced activation of large conductance Ca2+‐dependent K+ channels (BKCa) in smooth muscle cells isolated from the rat mesenteric artery DK Mistry, CJ Garland British journal of pharmacology 124 (6), 1131-1140, 2009 | 264 | 2009 |
Nitric oxide is the mediator of both endothelium-dependent relaxation and hyperpolarization of the rabbit carotid artery RA Cohen, F Plane, S Najibi, I Huk, T Malinski, CJ Garland Proceedings of the National Academy of Sciences 94 (8), 4193-4198, 1997 | 254 | 1997 |
Spatial separation of endothelial small‐and intermediate‐conductance calcium‐activated potassium channels (KCa) and connexins: possible relationship to vasodilator function? SL Sandow, CB Neylon, MX Chen, CJ Garland Journal of anatomy 209 (5), 689-698, 2006 | 253 | 2006 |
EDHF: spreading the influence of the endothelium CJ Garland, CR Hiley, KA Dora British journal of pharmacology 164 (3), 839-852, 2011 | 247 | 2011 |
Modulation of Endothelial Cell KCa3.1 Channels During Endothelium-Derived Hyperpolarizing Factor Signaling in Mesenteric Resistance Arteries KA Dora, NT Gallagher, A McNeish, CJ Garland Circulation research 102 (10), 1247-1255, 2008 | 242 | 2008 |
EDH: endothelium‐dependent hyperpolarization and microvascular signalling CJ Garland, KA Dora Acta Physiologica 219 (1), 152-161, 2017 | 231 | 2017 |
Low intravascular pressure activates endothelial cell TRPV4 channels, local Ca2+ events, and IKCa channels, reducing arteriolar tone P Bagher, T Beleznai, Y Kansui, R Mitchell, CJ Garland, KA Dora Proceedings of the National Academy of Sciences 109 (44), 18174-18179, 2012 | 226 | 2012 |
Small‐and Intermediate‐Conductance Calcium‐Activated K+ Channels Provide Different Facets of Endothelium‐Dependent Hyperpolarization in Rat Mesenteric Artery GJ Crane, N Gallagher, KA Dora, CJ Garland The Journal of physiology 553 (1), 183-189, 2004 | 199 | 2004 |
Rapid endothelial cell–selective loading of connexin 40 antibody blocks endothelium-derived hyperpolarizing factor dilation in rat small mesenteric arteries S Mather, KA Dora, SL Sandow, P Winter, CJ Garland Circulation research 97 (4), 399-407, 2005 | 186 | 2005 |
An indirect influence of phenylephrine on the release of endothelium‐derived vasodilators in rat small mesenteric artery KA Dora, JM Hinton, SD Walker, CJ Garland British journal of pharmacology 129 (2), 381-387, 2009 | 165 | 2009 |
Role of heterocellular Gap junctional communication in endothelium-dependent smooth muscle hyperpolarization: inhibition by a connexin-mimetic peptide KA Dora, PEM Martin, AT Chaytor, WH Evans, CJ Garland, TM Griffith Biochemical and biophysical research communications 254 (1), 27-31, 1999 | 148 | 1999 |
Evidence that anandamide and EDHF act via different mechanisms in rat isolated mesenteric arteries F Plane, M Holland, GJ Waldron, CJ Garland, JP Boyle British journal of pharmacology 121 (8), 1509-1511, 2009 | 146 | 2009 |
Myoendothelial gap junctions may provide the pathway for EDHF in mouse mesenteric artery KA Dora, SL Sandow, NT Gallagher, H Takano, NM Rummery, CE Hill, ... Journal of vascular research 40 (5), 480-490, 2003 | 140 | 2003 |
Enhanced spontaneous Ca2+ events in endothelial cells reflect signalling through myoendothelial gap junctions in pressurized mesenteric arteries Y Kansui, CJ Garland, KA Dora Cell calcium 44 (2), 135-146, 2008 | 124 | 2008 |