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Journal of Applied Physiology (Bethesda, Md. : 1985)
|
January 6, 2007
Vasopressin-induced vasoconstriction: two concentration-dependent signaling pathways
Kyle K Henderson, Kenneth L Byron
Molecular Pharmacology
|
August 8, 2008
Cardiovascular KCNQ (Kv7) potassium channels: physiological regulators and new targets for therapeutic intervention
Alexander R Mackie, Kenneth L Byron
Pharmacology & Therapeutics
|
May 16, 2016
Novel treatment strategies for smooth muscle disorders: Targeting Kv7 potassium channels
Jennifer M Haick, Kenneth L Byron
The Journal of Biological Chemistry
|
December 12, 2001
Signal transduction of physiological concentrations of vasopressin in A7r5 vascular smooth muscle cells. A role for PYK2 and tyrosine phosphorylation of K+ channels in the stimulation of Ca2+ spiking
Kenneth L Byron, Pamela A Lucchesi
Microcirculation (New York, N.Y. : 1994)
|
October 5, 2017
Kv7 potassium channels as signal transduction intermediates in the control of microvascular tone
Kenneth L Byron, Lyubov I Brueggemann
British Journal of Pharmacology
|
December 29, 2010
Vascular KCNQ channels in humans: the sub-threshold brake that regulates vascular tone?
Bharath K Mani, Kenneth L Byron
Progress in Molecular Biology and Translational Science
|
May 14, 2013
Social networking among voltage-activated potassium channels
Lioubov I Brueggemann, Saverio Gentile, Kenneth L Byron
Journal of Biomedical Science
|
January 19, 2017
Kv7 voltage-activated potassium channel inhibitors reduce fluid resuscitation requirements after hemorrhagic shock in rats
Sean P Nassoiy, Kenneth L Byron, Matthias Majetschak
Molecular Pharmacology
|
December 25, 2019
Structural Determinants of Kv7.5 Potassium Channels That Confer Changes in Phosphatidylinositol 4,5-Bisphosphate (PIP<sub>2</sub>) Affinity and Signaling Sensitivities in Smooth Muscle Cells
Lyubov I Brueggemann, Leanne L Cribbs, Kenneth L Byron
Frontiers in Physiology
|
September 9, 2020
Heteromeric Channels Formed From Alternating Kv7.4 and Kv7.5 α-Subunits Display Biophysical, Regulatory, and Pharmacological Characteristics of Smooth Muscle M-Currents
Lyubov I Brueggemann, Leanne L Cribbs, Kenneth L Byron
Page
of 4
Search research articles
Search
Showing results (1-10 of 36) with videos related to
Sort By:
Page
of 4
Journal of Applied Physiology (Bethesda, Md. : 1985)
|
January 6, 2007
Vasopressin-induced vasoconstriction: two concentration-dependent signaling pathways
Kyle K Henderson, Kenneth L Byron
Molecular Pharmacology
|
August 8, 2008
Cardiovascular KCNQ (Kv7) potassium channels: physiological regulators and new targets for therapeutic intervention
Alexander R Mackie, Kenneth L Byron
Pharmacology & Therapeutics
|
May 16, 2016
Novel treatment strategies for smooth muscle disorders: Targeting Kv7 potassium channels
Jennifer M Haick, Kenneth L Byron
The Journal of Biological Chemistry
|
December 12, 2001
Signal transduction of physiological concentrations of vasopressin in A7r5 vascular smooth muscle cells. A role for PYK2 and tyrosine phosphorylation of K+ channels in the stimulation of Ca2+ spiking
Kenneth L Byron, Pamela A Lucchesi
Microcirculation (New York, N.Y. : 1994)
|
October 5, 2017
Kv7 potassium channels as signal transduction intermediates in the control of microvascular tone
Kenneth L Byron, Lyubov I Brueggemann
British Journal of Pharmacology
|
December 29, 2010
Vascular KCNQ channels in humans: the sub-threshold brake that regulates vascular tone?
Bharath K Mani, Kenneth L Byron
Progress in Molecular Biology and Translational Science
|
May 14, 2013
Social networking among voltage-activated potassium channels
Lioubov I Brueggemann, Saverio Gentile, Kenneth L Byron
Journal of Biomedical Science
|
January 19, 2017
Kv7 voltage-activated potassium channel inhibitors reduce fluid resuscitation requirements after hemorrhagic shock in rats
Sean P Nassoiy, Kenneth L Byron, Matthias Majetschak
Molecular Pharmacology
|
December 25, 2019
Structural Determinants of Kv7.5 Potassium Channels That Confer Changes in Phosphatidylinositol 4,5-Bisphosphate (PIP<sub>2</sub>) Affinity and Signaling Sensitivities in Smooth Muscle Cells
Lyubov I Brueggemann, Leanne L Cribbs, Kenneth L Byron
Frontiers in Physiology
|
September 9, 2020
Heteromeric Channels Formed From Alternating Kv7.4 and Kv7.5 α-Subunits Display Biophysical, Regulatory, and Pharmacological Characteristics of Smooth Muscle M-Currents
Lyubov I Brueggemann, Leanne L Cribbs, Kenneth L Byron
Page
of 4