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The Electrophysiology of Smooth Muscle Cells and Techniques for
Calcium Channels in Arterial Smooth Muscle Cells
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agonists amplitude arterial smooth muscle bath blocker bovine bradykinin Ca2+ Ca2+ channels Ca2+ entry Ca2+ influx Ca2+ release Ca2+-ATPase caffeine calcium channels cation channel activity channel currents channel opening cicletanine concentration contraction cromakalim cultured cytosolic decrease depolarization diltiazem EDNO EDRF effect EGTA endothelial cells endothelium endothelium-dependent extracellular Ca2+ Figure flow glibenclamide guinea-pig holding potential hyperpolarization hypoxia hypoxic pulmonary Ica(L iloprost increase induced inhibition inositol InsP3 intracellular ion channels isolated K+ channels K+ current levcromakalim lung mechanisms membrane potential modulate myocytes Na-Ca exchange open probability outward current oxygen patch clamp perfused permeability Pharmacol phosphorylation Physiol physiological pipette potassium channels prostacyclin protein kinase pulmonary arterial pressure pulmonary artery pulmonary circulation pulmonary hypertension pulmonary vascular pulmonary vasoconstriction receptor regulation relaxation response role sensitive single channel SM cells smooth muscle cells sodium Sperelakis stimulation synthesis tension transient vanadate vascular smooth muscle vascular tone vasodilation voltage voltage-dependent whole-cell