Coronary circulation, myocardial metabolism and hemodynamics of pacing-induced angina
Tamura, K.; Higuma, N.; Bannai, S.; Aoyagi, R.; Izumi, T.; Matsuoka, M.; Eguchi, S.
Recent Advances in Studies on Cardiac Structure and Metabolism 12: 265-270
1976
ISSN/ISBN: 0363-5872 PMID: 1031981 Document Number: 96233
The following changes were noted during pacing-induced angina: The coronary sinus blood flow was less than it was during the control period and less than that in the myocardial ischemic group without induced angina. While myocardial oxygen consumption did not increase, myocardial metabolism became anaerobic. The possibility of myocardial dysfunction also was noted.
Document emailed within 1 workday
Related Documents
Mikuniya, A.; Totsuka, H.; Fujino, Y.; Mikami, M.; Tamura, H.; Sasaki, N.; Higashiyama, A.; Hanada, H.; Onodera, K.; Oike, Y. 1991: Coronary collateral function evaluated by coronary hemodynamics and myocardial lactate metabolism during rapid atrial pacing Journal of Cardiology 21(4): 797-805Kimball, B.P.; Mildenberger, R.R.; Lefkowitz, C.A.; Ross, B.L.; Houle, S.; McLaughlin, P.R. 1990: Effect of intracoronary nifedipine on coronary bloodflow and myocardial metabolism during pacing-induced ischemia Canadian Journal of Cardiology 6(8): 333-339
Leisch, F.; Bergmann, H.; Schützenberger, W.; Herbinger, W. 1980: Effects of Imolamin on hemodynamics and pacing induced angina pectoris Wiener Medizinische Wochenschrift 130(18): 606-608
Cuggurullo, F.; Abate, G.; Monti, B.; Rimondi, S.; Tomassetti, V.; Mezzetti, A.; Lenzi, S. 1975: Changes in myocardial metabolism during atrial pacing and catecholamine stimulation in normal subjects and angina patients Bollettino Della Societa Italiana di Cardiologia 20(9): 949-956
Kugler, G. 1979: The effect of pindolol on myocardial release of inosine, hypoxanthine and lactate during pacing-induced angina Journal of Pharmacology and Experimental Therapeutics 209(2): 185-189
Saito, T.; Okazaki, K.; Ohta, N.; Sakata, S.; Tanaka, Y. 1976: Effects of halothane anesthesia on myocardial contractility, coronary as well as systemic hemodynamics, and myocardial metabolism in dogs Recent Advances in Studies on Cardiac Structure and Metabolism 11: 467-471
Yamada, T.; Kaneko, H.; Imaseki, T.; Matsunaga, H.; Sakamoto, T.; Asano, K. 1980: Effects of glucagon on hemodynamics and myocardial metabolism (II). Role of insulin in the improvement of myocardial metabolism and hemodynamics Nihon Kyobu Geka Gakkai 28(12): 1866-1873
Bourassa, M.G.; Arbogast, R.; Goulet, C.; Campeau, L.; David, P. 1973: Changes in myocardial metabolism in patients with angina and normal coronary arteries Annales de Cardiologie et d'Angeiologie 22(2): 85-94
Lardoux, H.; Ourbak, P.; Pornin, M.; Duong, T.C.; Chouty, F.; Maurice, P. 1983: Effect of intravenous labetalol on hemodynamics and myocardial metabolism in coronary insufficiency Therapie 38(2): 149-154
Ourbak, P.; Lardoux, H.; Pornin, M.; Bouziri, S.; Allal, J.; Duong, T.C.; Sellier, P.; Maurice, M. 1985: Intravenous labetalol in normotensive coronary patients. Effects on hemodynamics and myocardial metabolism Archives des Maladies du Coeur et des Vaisseaux 78(7): 1089-1096
Ishihara, T.; Seki, I.; Yamada, Y.; Tamoto, S.; Fukai, M.; Takada, K.; Fujiwara, M.; Ashida, H.; Shimada, T.; Ohsawa, N. 1990: Coronary circulation, myocardial metabolism and cardiac catecholamine flux in patients with syndrome X Journal of Cardiology 20(2): 267-274
Takenaka, T.; Tachikawa, S. 1970: Effect of lidoflazine on coronary circulation and myocardial metabolism in anesthetized and unanesthetized dogs Arzneimittel-Forschung 20(3): 351-354
Dubiel, J.S.; Dubiel, J.P.; Horzela, T. 1982: Clinical studies of the hemodynamics of coronary circulation using the methods of selective administration of xenon-133 into the coronary vessels Kardiologia Polska 25(3): 247-257
Hashimoto, S.; Kawashima, Y.; Fujita, T.; Mori, T.; Takano, H.; Ohnishi, K.; Matsuda, A.; Kito, Y.; Miyamoto, K.; Yokota, H.; Kakh, K.; Koh, Y.; Hamaji, M.; Murata, H.; Okuda, A.; Adachi, S.; Kim, S.; Manabe, H. 1978: A study on myocardial metabolism during normo- and hypothermic extracorporeal circulation and selective hypothermic coronary perfusion Kyobu Geka. Japanese Journal of Thoracic Surgery 31(3): 201-206
Tomassetti, V.; Cuccurullo, F.; Mezzetti, A.; Masi, M.; Rosini, R.; Begliomini, B.; Fontana, F.; Lenzi, S. 1977: Digitalis and angina induced by pacing: metabolic and hemodynamic aspects Bollettino Della Societa Italiana di Cardiologia 22(8): 1377-1384
Opherk, D.; Mäurer, W.; Mehmel, H.C.; Müller, J.H.; Zebe, H.; Kübler, W. 1976: Coronary circulation and myocardial O2 consumption in patients with coronary heart disease under isometric load and in maximal coronary dilatation Verhandlungen der Deutschen Gesellschaft für Innere Medizin 82 Pt 2: 1188-1190
Taniguchi, A.; Masuda, K.; Uranishi, A.; Asanuma, T.; Ishikura, F.; Beppu, S. 2007: Myocardial perfusion abnormality induced by right ventricular pacing: real-time myocardial contrast echocardiography study Journal of Cardiology 50(3): 183-191
Vakhliaev, V.D.; Syrkin, A.L.; Pomerantsev, E.V.; Alliluev, I.G.; Sulimov, V.A. 1981: Parameters of myocardial metabolism and central hemodynamics in acute myocardial infarct Kardiologiia 21(12): 33-38
Mizushima, M. 1990: Effects of dichloroacetate in the ischemic heart. Analysis of hemodynamics, myocardial energy metabolism and myocardial pH Hokkaido Journal of Medical Science 65(3): 298-310
Korolenko, A.B.; Siurin, A.A. 1971: Hemodynamics of the pulmonary circulation in acute myocardial infarct Terapevticheskii Arkhiv 43(5): 44-46