The role of calcium in the development of diastolic force during hypoxia in rat myocardium
Leijendekker, W.J.; Gao, W.D.; ter Keurs, H.E.
Progress in Clinical and Biological Research 315: 604-605
1989
ISSN/ISBN: 0361-7742 PMID: 2798517 Document Number: 335147
Document emailed within 1 workday
Related Documents
Jarmakani, J.M.; Nakanishi, T.; Jarmakani, R.N. 1979: Effect of hypoxia on calcium exchange in neonatal mammalian myocardium American Journal of Physiology 237(5): H612-H619Haacke, H.; van Zwieten, P.A. 1970: Antagonistic effect of hexobarbital sodium and g-strophantin on the contractile force and on the calcium metabolism of the myocardium Der Anaesthesist 19(8): 301-302
Zharinov, O.I.; Oryshchyn, N.D. 1997: Diastolic dysfunction of the myocardium: the mechanisms of its development, its diagnosis and treatment characteristics Likars'ka Sprava 3: 20-25
Takeo, S.; Tanonaka, K.; Miyake, K.; Fukumoto, T. 1988: Role of ATP metabolites in induction of incomplete recovery of cardiac contractile force after hypoxia Canadian Journal of Cardiology 4(4): 193-200
Aly, A.; Peterson, K.; Lerman, A.; Lerman, L.; Rodriguez-Porcel, M. 2011: Role of oxidative stress in hypoxia preconditioning of cells transplanted to the myocardium: a molecular imaging study Journal of Cardiovascular Surgery 52(4): 579-585
Valencia, I.; Mishra, O.P.; Zubrow, A.; Fritz, K.; Katsetos, C.D.; Delivoria-Papadopoulos, M.; Legido, A. 2006: The role played by calcium in neuronal injury following neonatal hypoxia or convulsions Revista de Neurologia 42(Suppl 3): S11-S15
Hopkins, R.A.; Wolfe, W.G. 1978: Role of hypoxia in development of pulmonary hypertension Surgical Forum 29: 179-181
Morano, I.; Isac, M.; Bletz, C.; Wojciechowski, R.; Rüegg, J.C. 1989: Perhexiline increases calcium-activated force in skinned psoas fibres by raising calcium affinity of troponin-C Biomedica Biochimica Acta 48(5-6): S329-S334
Tritthart, H.; Volkmann, R.; Weiss, R.; Fleckenstein, A. 1975: Inhibition of calcium-dependent action potentials in mammalian myocardium by specific inhibitors of the transmembrane calcium conductivity (verapamil, D 600) Recent Advances in Studies on Cardiac Structure and Metabolism 5: 27-33
Nakahara, T.; Yamada, Y.; Sangawa, J.; Sakata, S.; Koyama, A.; Saito, T. 1988: Systolic and diastolic functions of the ischemic canine myocardium during halothane anesthesia Masui. Japanese Journal of Anesthesiology 37(5): 552-560
Chiddo, A.; Gaglione, A.; Locuratolo, N.; Zanna, D.; Bortone, A.; D'Ambrosio, G.; Caruso, G.; Rizzon, P. 1988: Diastolic function and anatomical lesion of the myocardium in primary dilated cardiomyopathy Cardiologia 33(7): 691-696
Le Pailleur, C.; Lafont, H.; Meilhac, B.; Fleury, G.; Di Mattéo, J. 1975: Principles and applications of cineangiographic study of contractibility and diastolic compliance of the myocardium Annales de Cardiologie et d'Angeiologie 24(5): 427-432
Sedov, V.M.; Nemkov, A.S.; Lebedev, D.S.; Kuznetsov, A.A.; Mar'eva, O.G. 2001: Effects of the dual chamber electrocardiostimulation on the systolic and diastolic function of the myocardium Vestnik Khirurgii Imeni I. I. Grekova 160(3): 16-19
Pasechnikov, V.D.; Ermolaeva, N.I.; Virganskiĭ, A.O. 1988: The role of local factors regulating vascular blood flow in the development of hypoxia of the gastric mucosa in peptic ulcer Terapevticheskii Arkhiv 60(12): 74-77
Burduli, N.M. 2001: Direct revascularization of the myocardium and left ventricular diastolic function in patients with ischemic heart diseases Klinicheskaia Meditsina 79(7): 35-39
Bing, O.H. 1982: Cardiac contraction. III. Effects of hypoxia on the myocardium Arquivos Brasileiros de Cardiologia 39(6): 409-416
Dukhova, Z.N.; Komissarova, I.A.; Moiseev, V.S. 1975: Activity of the dehydrogenases of the myocardium and lymphocytes in experimental hypoxia Kardiologiia 15(5): 129-132
Kaluz, S.; Kaluzová, M.; Chrastina, A.; Olive, P.L.; Pastoreková, S.; Pastorek, J.ír.; Lerman, M.I.; Stanbridge, E.J. 2002: Lowered oxygen tension induces expression of the hypoxia marker MN/carbonic anhydrase IX in the absence of hypoxia-inducible factor 1 alpha stabilization: a role for phosphatidylinositol 3'-kinase Cancer Research 62(15): 4469-4477
Kujaník, S.; Wilk, P.; Tomcová, D. 1984: Changes in the vulnerable period of the rat myocardium during hypoxia, hyperventilation and heart failure Physiologia Bohemoslovaca 33(5): 470-480
Brooks, W.W.; Ingwall, J.S.; Conrad, C.H.; Holubarsch, C.; Bing, O.H. 1987: Tolerance to hypoxia of myocardium from adult and aged spontaneously hypertensive rats American Journal of Physiology 252(6 Pt 2): H1096-H1104