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Evolutionary Genetics of Hypoxia Tolerance in Cetaceans during DivingHematocrit dispersion in asymmetrically bifurcating vascular networks.Neonatal body condition, immune responsiveness, and hematocrit predict longevity in a wild bird population.Hemoglobin solutions and tissue oxygenation.Autoregulation and mechanotransduction control the arteriolar response to small changes in hematocrit.Developments in the therapeutic use of erythropoiesis stimulating agents.Metabolism at the Max: How Vertebrate Organisms Respond to Physical Activity.Vertebrate blood cell volume increases with temperature: implications for aerobic activityOptimal concentrations in transport systems.Elevated haematocrit - when too much of a good thing wreaks havoc on the endothelial surface layer.Optimizing Transfusion Ratios in Massive Transfusion Protocols: An Argument Against the 1:1:1 Dogma and Approach to Trauma Resuscitation.Coupled turbidity and spectroscopy problems: a simple algorithm for the volumetric analysis of optically thin or dilute two-phase systems.Life-history characteristics influence physiological strategies to cope with hypoxia in Himalayan birds.Cardiovascular and hemorheological effects of three modified human hemoglobin solutions in hemodiluted rabbits.Sap flow and sugar transport in plants
P2860
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P2860
description
wetenschappelijk artikel
@nl
наукова стаття, опублікована в лютому 1997
@uk
name
Optimal Hematocrit: Theory, Regulation and Implications
@en
Optimal Hematocrit: Theory, Regulation and Implications
@nl
type
label
Optimal Hematocrit: Theory, Regulation and Implications
@en
Optimal Hematocrit: Theory, Regulation and Implications
@nl
prefLabel
Optimal Hematocrit: Theory, Regulation and Implications
@en
Optimal Hematocrit: Theory, Regulation and Implications
@nl
P356
P1433
P1476
Optimal Hematocrit: Theory, Regulation and Implications
@en
P2093
GEOFFREY F. BIRCHARD
P356
10.1093/ICB/37.1.65
P577
1997-02-01T00:00:00Z