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au.\*:("KOOTSEY JM")

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THE STEADY-STATE FINITE CABLE: NUMERICAL METHOD FOR NON-LINEAR MEMBRANE.KOOTSEY JM.1977; J. THEOR. BIOL.; U.S.A.; DA. 1977; VOL. 64; NO 3; PP. 413-420; BIBL. 20 REF.Article

THE ORIGIN OF THE T-WAVEKOOTSEY JM; JOHNSON EA.1980; CRC, CRIT. REV. BIOENG.; ISSN 0045-642X; USA; DA. 1980; VOL. 4; NO 3; PP. 233-270; BIBL. 126 REF.Article

THE NATURE OF ELECTRICAL PROPAGATION IN CARDIAC MUSCLESPACH MS; KOOTSEY JM.1983; AMERICAN JOURNAL OF PHYSIOLOGY. HEART AND CIRCULATORY PHYSIOLOGY; ISSN 0363-6135; USA; DA. 1983; VOL. 13; NO 1; PP. 3-12; BIBL. 137 REF.Article

THE CYLINDRICAL CELL WITH A TIME-VARIANT MEMBRANE RESISTANCE. MEASURING PASSIVE PARAMETERS.KOOTSEY JM; JOHNSON EA.1977; BIOPHYS. J.; U.S.A.; DA. 1977; VOL. 17; NO 2; PP. 145-154; BIBL. 18 REF.Article

VOLTAGE CLAMP OF CARDIAC MUSCLE: A THEORETICAL ANALYSIS OF EARLY CURRENTS IN THE SINGLE SUCROSE GAP = VOLTAGE CLAMP DU MYOCARDE: ANALYSE THEORIQUE DES COURANTS IMMEDIATS DANS LE SUCROSE GAP SIMPLEKOOTSEY JM; JOHNSON EA.1972; BIOPHYS. J.; U.S.A.; DA. 1972; VOL. 12; NO 11; PP. 1496-1508; BIBL. 17REF.Serial Issue

ACTIVE MODULATION OF ELECTRICAL COUPLING BETWEEN CARDIAC CELLS OF THE DOG. A MECHANISM FOR TRANSIENT AND STEADY STATE VARIATIONS IN CONDUCTION VELOCITYSPACH MS; KOOTSEY JM; SLOAN JD et al.1982; CIRC. RES.; ISSN 0009-7330; USA; DA. 1982; VOL. 51; NO 3; PP. 357-362; BIBL. 3 P.Article

SOME ELECTROPHYSIOLOGICAL CONSEQUENCES OF ELECTROGENIC SODIUM AND POTASSIUM TRANSPORT IN CARDIAC MUSCLE: A THEORICAL STUDYJOHNSON EA; CHAPMAN JB; KOOTSEY JM et al.1980; J. THEOR. BIOL.; ISSN 0022-5193; GBR; DA. 1980; VOL. 87; NO 4; PP. 737-756; BIBL. 23 REF.Article

A KINETIC MODEL FOR DETERMINING THE CONSEQUENCES OF ELECTROGENIC ACTIVE TRANSPORT IN CARDIAC MUSCLECHAPMAN JB; KOOTSEY JM; JOHNSON EA et al.1979; J. THEOR. BIOL.; USA; DA. 1979; VOL. 80; NO 3; PP. 405-424; BIBL. 40 REF.Article

ELECTRICAL AND BIOCHEMICAL PROPERTIES OF AN ENZYME MODEL OF THE SODIUM PUMPCHAPMAN JB; JOHNSON EA; KOOTSEY JM et al.1983; JOURNAL OF MEMBRANE BIOLOGY; ISSN 0022-2631; USA; DA. 1983; VOL. 74; NO 2; PP. 139-153; BIBL. 2 P.Article

SLOW CONDUCTION IN CARDIAC MUSCLE. A BIOPHYSICAL MODEL = CONDUCTION LENTE DANS LE MYOCARDE. MODELE BIOPHYSIQUELIEBERMAN M; KOOTSEY JM; JOHNSON EA et al.1973; BIOPHYS. J.; U.S.A.; DA. 1973; VOL. 13; NO 1; PP. 37-55; BIBL. 1 P.Serial Issue

A SYNTHETIC STRAND OF CARDIAC MUSCLE. ITS PASSIVE ELECTRICAL PROPERTIES = FIBRE SYNTHETIQUE DE MUSCLE CARDIAQUE. SES PROPRIETES ELECTRIQUES PASSIVESLIEBERMAN M; SAWANOBORI T; KOOTSEY JM et al.1975; J. GEN. PHYSIOL.; U.S.A.; DA. 1975; VOL. 65; NO 4; PP. 527-550; BIBL. 3PArticle

THE DISCONTINUOUS NATURE OF PROPAGATION IN NORMAL CANINE CARDIAC MUSCLE: EVIDENCE FOR RECURRENT DISCONTINUITIES OF INTRACELLULAR RESISTANCE THAT AFFECT THE MEMBRANE CURRENTSSPACH MS; MILLER WT III; GESELOWITZ DB et al.1981; CIRC. RES.; ISSN 0009-7330; USA; DA. 1981 PUBL. 1980; VOL. 48; NO 1; PP. 39-54; BIBL. 39 REF.Article

THE FUNCTIONAL ROLE OF STRUCTURAL COMPLEXITIES IN THE PROPAGATION OF DEPOLARIZATION IN THE ATRIUM OF THE DOG. CARDIAC CONDUCTION DISTURBANCES DUE TO DISCONTINUITIES OF EFFECTIVE AXIAL RESISTIVITYSPACH MS; MILLER WT III; DOLBER PC et al.1982; CIRC. RES.; ISSN 0009-7330; USA; DA. 1982; VOL. 50; NO 2; PP. 175-191; BIBL. 2 P.Article

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