Ischemic Areas in Hypertrophic Langendorff Rat Hearts Visualized by NADH Videofluorimetry

Author:

Ashruf J. F.,Ince C.,Bruining H. A.,Hulsmann W. C.

Publisher

Springer US

Reference6 articles.

1. Anversa, P., Olivetti, G., Melissari, M. and V. Loud, A., 1980, Stereological measurement of cellular and subcellular hypertrophy and hyperplasia in the papillary muscle of adult rat, J. Mol. Cel. Card., 12: 781–795.

2. Chance, B., 1976, Pyridine nucleotide as an indicator of the oxygen requirements for energy-linked functions of mitochondria, Circ. Res., 38 (suppl I): 31–38.

3. Chance, B., Barlow, C., Nakase, Y., Takeda, H., Mayevsky, A., Fischetti, R., Graham, N. and Sorge, J., 1978, Heterogeneity of oxygen delivery in normoxic and anoxic states: a fluorimeter study, Am. J. Physiol., 235 (6): H809 - H820.

4. Ince, C., Coremans, J.M.C.C. and Bruining, H.A., 1992, In vivo NADH fluorescence, In: Advances in Experimental Medicine and Biology: Oxygen Transport to Tissue XIV: 267–275, Editors: W. Erdmann and D.F. Bruley, Publishers: Plenum Press.

5. Ince, C., Ashruf, J.F., Avontuur, J.A.M., Wieringa, P.A., Spaan, J.A.E. and Bruining, H.A., 1992, Heterogeneity of the hypoxic state in the rat heart is determined at capillary level, Am. J. Physiol., (in press).

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1. Myocardial Microcirculation and Mitochondrial Energetics in the Isolated Rat Heart;Advances in Experimental Medicine and Biology;2016

2. Monitoring of Various Organs in Different Animal Models;Mitochondrial Function In Vivo Evaluated by NADH Fluorescence;2015

3. Responses of NADH to Physiological and Pathophysiological Conditions;Mitochondrial Function In Vivo Evaluated by NADH Fluorescence;2015

4. Mapping of capillary flow, cellular redox state, and resting membrane potential in hypoperfused rat myocardium;American Journal of Physiology-Heart and Circulatory Physiology;1999-11-01

5. Regional ischemia in hypertrophic Langendorff-perfused rat hearts;American Journal of Physiology-Heart and Circulatory Physiology;1999-10-01

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