Additive hemodynamic and electrophysiologic effects of repeated intracoronary contrast media injections in dogs with heart failure

Academic Radiology - Tập 2 - Trang 973-979 - 1995
Hans Kristian Pedersen1,2, Eva A. Jacobsen1,2, Elin Mortensen3, Helge Refsum3,4
1Department of Radiology, University of Troms, Troms, Norway
2Department of Radiology, National Hospital, University of Oslo, Oslo, Norway
3Department of Medical Physiology, University of Troms, Troms, Norway
4Nycomed Imaging, Oslo, Norway

Tài liệu tham khảo

Higgins, 1980, Direct myocardial effects of intracoronary administration of new contrast materials with low osmolality, Invest Radiol, 15, 39, 10.1097/00004424-198001000-00007 Piao, 1988, Contrast media-induced ventricular fibrillation: a comparison of Hypaque-76, Hexabrix, and Omnipaque, Invest Radiol, 23, 466, 10.1097/00004424-198806000-00010 Morris, 1988, Ventricular fibrillation during right coronary arteriography with ioxaglate, iohexol and iopamidol in dogs, Invest Radiol, 23, 205, 10.1097/00004424-198803000-00009 Hayakama, 1989, Low-osmolality contrast media-induced ventricular fibrillation, Invest Radiol, 2, 298, 10.1097/00004424-198904000-00008 Levorstad, 1989, Safety of the nonionic contrast medium Omnipaque in coronary angiography, Cardiovasc Intervent Radiol, 12, 98, 10.1007/BF02577398 Lozner, 1989, Coronary arteriography 1984–1987: a report of the Registry of the Society for Cardiac Angiography and Interventions, Catheter Cardiovasc Diagn, 17, 11, 10.1002/ccd.1810170104 Bth, 1989, Reduction of the risk of ventricular fibrillation in the isolated rabbit heart by small additions of electrolytes to non-ionic monomeric contrast media, Acta Radiol, 30, 327, 10.3109/02841858909174690 Jacobsen, 1995, Cardiac effects of adding electrolytes and oxygen to iohexol in a dog model of contrast media-induced ventricular fibrillation, Acta Radiol, 36, 47, 10.3109/02841859509173346 Besjakov, 1993, Reduced risk of ventricular fibrillation by balancing sodium, calcium, potassium and magnesium added to non-ionic contrast media, Acta Radiol, 34, 246, 10.3109/02841859309175362 Jacobsen, 1991, Sodium addition to nonionic contrast media, Invest Radiol, 26, 888, 10.1097/00004424-199110000-00010 Kozeny, 1985, In vivo effects of acute changes in osmolality and sodium concentration on myocardial contractility, Am Heart J, 109, 290, 10.1016/0002-8703(85)90596-4 Pedersen, 1994, Cardiac effects of coronary arteriography with electrolyte addition to iohexol, Acta Radiol, 35, 77, 10.1177/028418519403500116 Smiseth, 1982, A reproducible and stable model of acute ischaemic left ventricular failure in dogs, Clin Physiol, 2, 225, 10.1111/j.1475-097X.1982.tb00027.x Klw, 1991, Left ventricular systolic and diastolic function during coronary arteriography before and after acute left ventricular failure in dogs, Acta Radiol, 32, 124, 10.3109/02841859109177528 Hotvedt, 1982, Pentobarbital plasma concentrations and the cardiac electrophysiology during prolonged pentobarbital infusion anesthesia in dogs, Acta Anaestesiol Scand, 26, 638, 10.1111/j.1399-6576.1982.tb01831.x Snedecor, 1978, Statistical methods, 258 Jacobsen, 1993, Repeated intracoronary injections of contrast media, additive hemodynamic and electrophysiologic effects in a dog model, Invest Radiol, 28, 917, 10.1097/00004424-199310000-00012 Katzberg, 1988, Renal effects of contrast media, Invest Radiol, 23, S157, 10.1097/00004424-198809000-00027 Armstrong, 1989, Ventricular fibrillation in coronary angiography: what is the role of contrast medium?, Eur Heart J, 10, 892, 10.1093/oxfordjournals.eurheartj.a059398 Jacobsen, 1994, Role of sodium addition to nonionic contrast medium in preventing ventricular fibrillation during coronary arteriography in dogs, Acad Radiol, 1, 261, 10.1016/S1076-6332(05)80726-3 Horackova, 1979, Sodium-calcium exchange in regulation of cardiac contractility: evidence for an electrogenic, voltage-dependent mechanism, J Gen Physiol, 73, 403, 10.1085/jgp.73.4.403 Jynge P, Blankson H, Falck G, et al. Sodium-calcium relationship and cardiac function during coronary bolus perfusion: a physiological approach. Acta Radiol in press. Fleetwood, 1990, The effects of radiographic contrast media on myocardial contractility and coronary resistance: osmolality, ionic concentration and viscosity, Invest Radiol, 25, 254, 10.1097/00004424-199003000-00009 Wolpers, 1982, Einfluss von Rntgenkontrastmitteln auf das Membran-potential am schlagenden Herzen, Z Kardiol, 71, 82 Klw, 1990, Mechanism of ECG changes and arrhythmogenic properties of low osmolality contrast media during coronary arteriography in dog, Cardiovasc Res, 24, 303, 10.1093/cvr/24.4.303 Shabetai, 1968, Monophasic action potentials in man, Circulation, 38, 341, 10.1161/01.CIR.38.2.341 Bettmann, 1984, Contrast agents for cardiac angiography: effects of a nonionic agent vs. a standard ionic agent, Radiology, 153, 583, 10.1148/radiology.153.3.6387783 Singh, 1985, Control of cardiac arrhythmias by selective lengthening of repolarization: theoretic consideration and clinical observations, Am Heart J, 109, 421, 10.1016/0002-8703(85)90629-5 Vaughan Williams, 1984, A classification of antiarrhythmic actions reassessed after a decade of new drugs, J Clin Pharmacol, 24, 129, 10.1002/j.1552-4604.1984.tb01822.x Pedersen, 1994, Contrast media-induced ventricular fibrillation: an experimental study of the effects of dimeric contrast media during wedged catheter injections in dogs, Acad Radiol, 1, 136, 10.1016/S1076-6332(05)80832-3 Kuo, 1983, Characteristics and possible mechanism of ventricular arrhythmia dependent on the dispersion of action potential durations, Circulation, 67, 1356, 10.1161/01.CIR.67.6.1356 Braunwald, 1992, Heart disease: a textbook of cardiovascular medicine, 150 Sutton, 1990, Monophasic action potential recording in response to rapid transient elevation of extracellular potassium and their modification by β-adrenoreceptor blockade in the anesthetized dog, Clin Science, 78, 17, 10.1042/cs0780017