0000000000388577

AUTHOR

Stephanie Dinkelmann

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A model of stepwise isovolaemic blood exchange in anaesthetised, spontaneously breathing rats to evaluate the oxygen transport efficiency of artifici…

2000

Our research pursues the production of hypo-oncotic artificial oxygen carriers, based on artificial covalently cross-linked hyperpolymeric mammalian haemoglobins. To evaluate their in vivo efficiency in oxygen delivery to the tissue we developed a small animal model of stepwise isovolaemic blood exchange in anaesthetised, spontaneously breathing rats. With the aid of a two-way respiratory micro valve for small animals the overall oxygen uptake by the tissue of the animal can be determined. Measurements of oxygen contents in arterial and mixed venous blood and of some further blood parameters together with known oxygen-binding characteristics of artificial and native oxygen carriers, permits…

MaleMicro valveBiomedical Engineeringchemistry.chemical_elementOxygenRats Sprague-DawleyHemoglobinsOxygen ConsumptionIn vivoBlood SubstitutesAnimalsAnesthesiaRespiratory systemCardiac OutputHemodilutionBlood VolumeChemistryPulmonary Gas ExchangeRespirationOxygen transportBiological TransportOxygen uptakeRatsOxygenBiochemistryHematocritEvaluation Studies as TopicPyridoxal PhosphateBlood CirculationBiophysicsBreathingVascular ResistanceHemoglobinPulmonary VentilationBiotechnologyArtificial cells, blood substitutes, and immobilization biotechnology
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