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OXYGEN AFFINITY OF DUCK BLOOD DETERMINED BY IN VIVO AND IN VITRO TECHNIQUE.HOLLE JP; MEYER M; SCHEID P et al.1977; RESP. PHYSIOL.; NETHERL.; DA. 1977; VOL. 29; NO 3; PP. 355-361; BIBL. 1 P.Article

REDOX BOHR-EFFECTS IN ISOLATED CYTOCHROME BC1 COMPLEX AND CYTOCHROME C OXIDASE FROM BEEF-HEART MITOCHONDRIAGUERRIERI F; IZZO G; MAIDA I et al.1981; FEBS LETT.; ISSN 0014-5793; NLD; DA. 1981; VOL. 125; NO 2; PP. 261-265; BIBL. 34 REF.Article

REDOX BOHR-EFFECTS IN THE CYTOCHROME SYSTEM OF MITOCHONDRIAPAPA S; GUERRIERI F; IZZO G et al.1979; F.E.B.S. LETTERS; NLD; DA. 1979; VOL. 105; NO 2; PP. 213-216; BIBL. 26 REF.Article

THE BOHR EFFECT OF THE HEMOCYANIN-CONTAINING BLOOD FROM THE TERRESTRIAL SLUG ARION ATERWELLS RMG; WEBER RE.1982; MOL. PHYSIOL.; ISSN 0166-3178; NLD; DA. 1982; VOL. 2; NO 3; PP. 149-159; BIBL. 2 P.Article

THE MEASUREMENT OF THE INTRINSIC ALKALINE BOHR EFFECT OF VARIOUS HUMAN HAEMOGLOBINS BY ISOELECTRIC FOCUSINGPOYART CF; GUESNON P; BOHN BM et al.1981; BIOCHEM. J. (LOND.); ISSN 0006-2936; GBR; DA. 1981; VOL. 195; NO 2; PP. 493-501; BIBL. 37 REF.Article

TETRAMER-DIMER DISSOCIATION IN HEMOGLOBIN AND THE BOHR EFFECT.ATHA DH; RIGGS A.1976; J. BIOL. CHEM.; U.S.A.; DA. 1976; VOL. 251; NO 18; PP. 5537-5543; BIBL. 36 REF.Article

DETERMINATION OF THE P02 TEMPERATURE BLOOD FACTOR FROM OXYGEN DISSOCIATION CURVESHERIGAULT RA; SOULARD CD; TEISSEIRE BP et al.1983; CLINICAL RESPIRATORY PHYSIOLOGY; ISSN 0272-7587; GBR; DA. 1983; VOL. 19; NO 3; PP. 285-292; ABS. FRE; BIBL. 25 REF.Article

AN INCREASED BOHR EFFECT IN SICKLE CELL ANEMIAUEDA Y; NAGEL RL; BOOKCHIN RM et al.1979; BLOOD; USA; DA. 1979; VOL. 53; NO 3; PP. 472-480; BIBL. 29 REF.Article

OXYGEN AFFINITY AND BOHR COEFFICIENTS OF DOG BLOODREEVES RB; PARK JS; LAPENNAS GN et al.1982; J. APPL. PHYSIOL.: RESPIR. ENVIRON. EXERC. PHYSIOL.; ISSN 0161-7567; USA; DA. 1982; VOL. 53; NO 1; PP. 87-95; BIBL. 32 REF.Article

THE ISOLATION AND CHARACTERIZATION OF THE HEMOGLOBIN OF BRACHYPLATYSTOMA SP.: A TROPICAL CATFISHMARTIN JP; BRUNORI M; GARLICK RL et al.1979; COMP. BIOCHEM. PHYSIOL., A; GBR; DA. 1979; VOL. 62; NO 1; PP. 213-217; BIBL. 31 REF.Article

IDENTIFICATION OF HISTIDINE-122ALPHA IN HUMAN HAEMOGLOBIN AS ONE OF THE UNKNOWN ALKALINE BOHR GROUPS BY HYDROGEN-TRITIUM EXCHANGE.NISHIKURA K.1978; BIOCHEM. J.; GBR; DA. 1978; VOL. 173; NO 2; PP. 651-657; BIBL. 29 REF.Article

COMPARATIVE STUDIES OF THE RESPIRATORY FUNCTIONS OF MAMMALIAN BLOOD, XII: BLACK GALAGO (GALAGO CRASSICAUDATUS ARGENTATUS) AND BROWN GALAGO (GALAGO CRASSICAUDATUS CRASSICAUDATUS)DHINDSA DS; HOVERSLAND AS; METCALFE J et al.1982; RESPIR. PHYSIOL.; ISSN 0034-5687; NLD; DA. 1982; VOL. 47; NO 3; PP. 313-323; BIBL. 23 REF.Article

EFFECTS OF CHRONIC CHANGES IN HEMOGLOBIN-O2 AFFINITY IN RATSTEISSEIRE BP; SOULARD CD; HERIGAULT RA et al.1979; J. APPL. PHYSIOL., RESP. ENVIRONMENT. EXERC. PHYSIOL.; USA; DA. 1979; VOL. 46; NO 4; PP. 816-822; BIBL. 28 REF.Article

PROPERTIES OF HEMOGLOBIN G. FERRARA (BETA 57(E1)ASN->LYS).GIARDINA B; BRUNORI M; ANTIONINI E et al.1978; BIOCHIM. BIOPHYS. ACTA; PAYS-BAS; DA. 1978; VOL. 534; NO 1; PP. 1-6; BIBL. 10 REF.Article

INCREASED OXYGEN AFFINITY FOR HEMOGLOBIN SAWARA: ALPHA A4 (6) ASPARTIC ACID->ALANINE.SASAKI J; IMAMURA T; SUMIDA I et al.1977; BIOCHIM. BIOPHYS. ACTA; PAYS-BAS; DA. 1977; VOL. 495; NO 1; PP. 183-186; BIBL. 13 REF.Article

The Bohr effect and the Haldane effect in human hemoglobinTYUMA, I.Japanese journal of physiology. 1984, Vol 34, Num 2, pp 205-216, issn 0021-521XArticle

STRUCTURAL AND FUNCTIONAL STUDIES OF HEMOGLOBIN BARCELONA (ALPHA 2BETA 2 94 ASP (FG1)->HIS). CONSEQUENCES OF ALTERING AN IMPORTANT INTRACHAIN SALT BRIDGE INVOLVED IN THE ALKALINE BOHR EFFECTWAJCMAN H; AGUILAR JL; LABIE BD et al.1982; J. MOL. BIOL.; ISSN 0022-2836; GBR; DA. 1982; VOL. 156; NO 1; PP. 185-202; BIBL. 2 P.Article

THE BINDING OF CHLORIDE IONS TO LIGATED AND UNLIGATED HUMAN HEMOGLOBIN AND ITS INFLUENCE ON THE BOHR EFFECTVAN BEEK GGM; ZUIDERWEG ERP; DE BRUIN SM et al.1979; EUROP. J. BIOCHEM.; DEU; DA. 1979; VOL. 99; NO 2; PP. 379-383; BIBL. 20 REF.Article

LIGAND-DEPENDENT BOHR EFFECT OF CHIRONOMUS HEMOGLOBINS.STEFFENS G; BUSE G; WOLLMER A et al.1976; EUROP. J. BIOCHEM.; GERM.; DA. 1976; VOL. 72; PP. 201-206; BIBL. 30 REF.Article

FUNCTIONAL PROPERTIES OF EMBRYONIC CHICKEN HEMOGLOBINSBAUMANN R; PADEKEN S; HALLER EA et al.1982; JOURNAL OF APPLIED PHYSIOLOGY: RESPIRATORY, ENVIRONMENTAL AND EXERCISE PHYSIOLOGY; ISSN 0161-7567; USA; DA. 1982; VOL. 53; NO 6; PP. 1439-1448; BIBL. 35 REF.Conference Paper

BOHR EFFECT AND SLOPE OF THE OXYGEN DISSOCIATION CURVE AFTER PHYSICAL TRAININGBRAUMANN KM; BOENING D; TROST F et al.1982; J. APPL. PHYSIOL.: RESPIR. ENVIRON. EXERC. PHYSIOL.; ISSN 0161-7567; USA; DA. 1982; VOL. 52; NO 6; PP. 1524-1529; BIBL. 30 REF.Article

FUNCTIONAL PROPERTIES OF HEMOGLOBINS FROM TRITURUS CRISTATUSCONDO SG; GIARDINA B; LUNADEI M et al.1981; EUR. J. BIOCHEM.; ISSN 0014-2956; DEU; DA. 1981; VOL. 120; NO 2; PP. 323-327; BIBL. 23 REF.Article

COMPARATIVE RESPIRATORY FUNCTIONS OF BLOOD IN SOME PASSERIFORM BIRDSPALOMEQUE J; PALACIOS L; PLANAS J et al.1980; COMP. BIOCHEM. PHYSIOL., A; GBR; DA. 1980; VOL. 66; NO 4; PP. 619-624; BIBL. 42 REF.Article

INTERRELATION BETWEEN BOHR AND TEMPERATURE EFFECTS ON THE OXYGEN DISSOCIATION CURVE IN MEN AND WOMENBONING D; DRAUDE W; TROST F et al.1978; RESP. PHYSIOL.; NLD; DA. 1978; VOL. 34; NO 2; PP. 195-207; BIBL. 2 P.Article

THE EFFECT OF TEMPERATURE ON THE OXYGEN DISSOCIATION CURVES OF WHOLE BLOOD OF LARVAL AND ADULT LAMPREYS (GEOTRIA AUSTRALIS)MACEY DJ; POTTER IC.1982; J. EXP. BIOL.; ISSN 0022-0949; GBR; DA. 1982; VOL. 97; PP. 253-261; BIBL. 31 REF.Article

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