Mechanisms of postischemic contractile dysfunction.
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[1] C. Valdivia,et al. Ryanodine receptor dysfunction in porcine stunned myocardium. , 1997, The American journal of physiology.
[2] D. Atar,et al. Role of troponin I proteolysis in the pathogenesis of stunned myocardium. , 1997, Circulation research.
[3] E. Marbán,et al. Selective effects of oxygen free radicals on excitation-contraction coupling in ventricular muscle. Implications for the mechanism of stunned myocardium. , 1996, Circulation.
[4] P. Pagel,et al. Mechanism of Myocardial Protection by Isoflurane: Role of Adenosine Triphosphate‐regulated Potassium (K sub ATP) Channels , 1996, Anesthesiology.
[5] K. McDonald,et al. Onset of reduced Ca2+ sensitivity of tension during stunning in porcine myocardium. , 1996, Journal of molecular and cellular cardiology.
[6] Yongge Liu,et al. Intrinsic myofilament alterations underlying the decreased contractility of stunned myocardium. A consequence of Ca2+-dependent proteolysis? , 1996, Circulation research.
[7] G. Gross,et al. Monophosphoryl lipid A preserves myocardial contractile function following multiple, brief periods of coronary occlusion in dogs. , 1995, Pharmacology.
[8] R. Bolli,et al. Late preconditioning against myocardial stunning. An endogenous protective mechanism that confers resistance to postischemic dysfunction 24 h after brief ischemia in conscious pigs. , 1995, The Journal of clinical investigation.
[9] J. Thornby,et al. Direct evidence that the hydroxyl radical plays a pathogenetic role in myocardial "stunning" in the conscious dog and demonstration that stunning can be markedly attenuated without subsequent adverse effects. , 1993, Circulation research.
[10] R. Bolli,et al. Demonstration of free radical generation in the "stunned" myocardium in the conscious dog and identification of major differences between conscious and open-chest dogs. , 1993, The Journal of clinical investigation.
[11] G. Gross,et al. Glibenclamide Antagonizes Adenosine A, Receptor‐Mediated Cardioprotection in Stunned Canine Myocardium , 1993, Circulation.
[12] M. Karmazyn,et al. Role of Na+/H+ exchange in cardiac physiology and pathophysiology: mediation of myocardial reperfusion injury by the pH paradox. , 1993, Cardiovascular research.
[13] R. Moss,et al. Altered calcium sensitivity of isometric tension in myocyte-sized preparations of porcine postischemic stunned myocardium. , 1993, Circulation research.
[14] W. Grossman,et al. Decreased myofilament responsiveness in myocardial stunning follows transient calcium overload during ischemia and reperfusion. , 1992, Circulation research.
[15] R. Mentzer,et al. Adenosine improves recovery of postischemic myocardial function via an adenosine A1 receptor mechanism. , 1992, The American journal of physiology.
[16] G. Gross,et al. Role of ATP dependent potassium channels in myocardial ischaemia. , 1992, Cardiovascular research.
[17] J. Downey,et al. Ischemic preconditioning Nature's own cardioprotective intervention. , 1992, Trends in cardiovascular medicine.
[18] G. Gross,et al. Pharmacological Evidence for a Role of ATP‐Dependent Potassium Channels in Myocardial Stunning , 1992, Circulation.
[19] R. Kloner,et al. Preconditioning Does Not Attenuate Myocardial Stunning , 1992, Circulation.
[20] D. Miller,et al. Depression of peak force without altering calcium sensitivity by the superoxide anion in chemically skinned cardiac muscle of rat. , 1992, Circulation research.
[21] R. Bolli. Mechanism of Myocardial “Stunning” , 1990, Circulation.
[22] V. P. Chacko,et al. Calcium and Its Role in Myocardial Cell Injury During Ischemia and Reperfusion , 1989, Circulation.
[23] R. Kloner,et al. Is "stunned myocardium" a protective mechanism? Effect of acute recruitment and acute beta-blockade on recovery of contractile function and high-energy phosphate stores at 1 day post-reperfusion. , 1989, American heart journal.
[24] R. Bolli,et al. Marked Reduction of Free Radical Generation and Contractile Dysfunction by Antioxidant Therapy Begun at the Time of Reperfusion Evidence That Myocardial "Stunning" Is a Manifestation of Reperfusion Injury , 1989, Circulation research.
[25] L. Becker,et al. Alterations in cardiac sarcoplasmic reticulum calcium transport in the postischemic "stunned" myocardium. , 1989, Circulation research.
[26] R. Kloner,et al. Nifedipine administered after reperfusion ablates systolic contractile dysfunction of postischemic "stunned" myocardium. , 1989, Journal of the American College of Cardiology.
[27] R. Bolli,et al. Demonstration of free radical generation in "stunned" myocardium of intact dogs with the use of the spin trap alpha-phenyl N-tert-butyl nitrone. , 1988, The Journal of clinical investigation.
[28] G. Gross,et al. Evidence For a Role of Iron‐Catalyzed Oxidants in Functional and Metabolic Stunning in the Canine Heart , 1988, Circulation research.
[29] R. Kloner,et al. Effect of verapamil on postischemic "stunned" myocardium: importance of the timing of treatment. , 1988, Journal of the American College of Cardiology.
[30] C. Hartley,et al. Attenuation of dysfunction in the postischemic 'stunned' myocardium by dimethylthiourea. , 1987, Circulation.
[31] M. Weisfeldt,et al. Pathophysiology and pathogenesis of stunned myocardium. Depressed Ca2+ activation of contraction as a consequence of reperfusion-induced cellular calcium overload in ferret hearts. , 1987, The Journal of clinical investigation.
[32] D. Warltier,et al. Beneficial actions of superoxide dismutase and catalase in stunned myocardium of dogs. , 1986, The American journal of physiology.
[33] R. Kloner,et al. Superoxide Dismutase Plus Catalase Improve Contractile Function in the Canine Model of the “Stunned Myocardium” , 1986, Circulation research.
[34] C. Hartley,et al. Enhancement of recovery of myocardial function by oxygen free-radical scavengers after reversible regional ischemia. , 1985, Circulation.
[35] G. Gross,et al. Improved Recovery of Myocardial Segment Function Following a Short Coronary Occlusion in Dogs by Nicorandil, a Potential New Antianginal Agent, and Nifedipine , 1985, Journal of cardiovascular pharmacology.
[36] E. Braunwald,et al. Studies of experimental coronary artery reperfusion. Effects on infarct size, myocardial function, biochemistry, ultrastructure and microvascular damage. , 1983, Circulation.
[37] E. Braunwald,et al. The Stunned Myocardium: Prolonged, Postischemic Ventricular Dysfunction , 1982, Circulation.
[38] S. Vatner,et al. Regional myocardial functional and electrophysiological alterations after brief coronary artery occlusion in conscious dogs. , 1975, The Journal of clinical investigation.