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Microcirculation (New York, N.Y. : 1994)|July 11, 2012
Erythrocyte-derived ATP and perfusion distribution: role of intracellular and intercellular communicationRandy S Sprague, Mary L EllsworthMicrocirculation (New York, N.Y. : 1994)|June 28, 2012
Microvascular repair: post-angiogenesis vascular dynamicsAmanda J LeBlanc, Laxminarayanan Krishnan, Christopher J Sullivan, et al.Microcirculation (New York, N.Y. : 1994)|February 10, 2015
Angiotensin and neurovascular coupling: beyond hypertensionSherri Bloch, Dima Obari, Hélène GirouardMicrocirculation (New York, N.Y. : 1994)|February 3, 2015
Vascular inward rectifier K+ channels as external K+ sensors in the control of cerebral blood flowThomas A Longden, Mark T NelsonMicrocirculation (New York, N.Y. : 1994)|October 3, 2018
Microvascular circulatory dysregulation driven in part by cystathionine gamma-lyase: A new paradigm for cardiovascular compromise in the preterm newbornRebecca M Dyson, Hannah K Palliser, Nicole Wilding, et al.Microcirculation (New York, N.Y. : 1994)|October 4, 2018
Sphingosine-1-phosphate protects against brain microvascular endothelial junctional protein disorganization and barrier dysfunction caused by alcoholNatascha G Alves, Sarah Y Yuan, Jerome W BreslinMicrocirculation (New York, N.Y. : 1994)|May 14, 2018
Impact of mean arterial pressure on sublingual microcirculation during cardiopulmonary bypass-Secondary outcome from a randomized clinical trialFrederik Holmgaard, Anne G Vedel, Hanne Berg Ravn, et al.Microcirculation (New York, N.Y. : 1994)|April 12, 2019
Enhanced notch signaling modulates unproductive revascularization in response to nitric oxide-angiopoietin signaling in a mouse model of peripheral ischemiaMaria J C Machado, Rachel Boardman, Federica Riu, et al.Microcirculation (New York, N.Y. : 1994)|August 19, 2018
Skeletal muscle interstitial O2 pressures: bridging the gap between the capillary and myocyteDaniel M Hirai, Trenton D Colburn, Jesse C Craig, et al.Microcirculation (New York, N.Y. : 1994)|March 27, 2015
Diphenyl phosphine oxide-1-sensitive K(+) channels contribute to the vascular tone and reactivity of resistance arteries from brain and skeletal muscleIbra S Fancher, Joshua T Butcher, Steven D Brooks, et al.Pageof 161