Literature DB >> 33594139

Calculating the optimal hematocrit under the constraint of constant cardiac power.

Michal Sitina1, Heiko Stark2,3, Stefan Schuster2.   

Abstract

In humans and higher animals, a trade-off between sufficiently high erythrocyte concentrations to bind oxygen and sufficiently low blood viscosity to allow rapid blood flow has been achieved during evolution. Optimal hematocrit theory has been successful in predicting hematocrit (HCT) values of about 0.3-0.5, in very good agreement with the normal values observed for humans and many animal species. However, according to those calculations, the optimal value should be independent of the mechanical load of the body. This is in contradiction to the exertional increase in HCT observed in some animals called natural blood dopers and to the illegal practice of blood boosting in high-performance sports. Here, we present a novel calculation to predict the optimal HCT value under the constraint of constant cardiac power and compare it to the optimal value obtained for constant driving pressure. We show that the optimal HCT under constant power ranges from 0.5 to 0.7, in agreement with observed values in natural blood dopers at exertion. We use this result to explain the tendency to better exertional performance at an increased HCT.

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Year:  2021        PMID: 33594139      PMCID: PMC7887246          DOI: 10.1038/s41598-021-83427-2

Source DB:  PubMed          Journal:  Sci Rep        ISSN: 2045-2322            Impact factor:   4.379


  40 in total

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8.  The effect of polycythemia on blood flow in working and non-working skeletal muscle.

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Review 10.  'Blood doping' from Armstrong to prehabilitation: manipulation of blood to improve performance in athletes and physiological reserve in patients.

Authors:  James O M Plumb; James M Otto; Michael P W Grocott
Journal:  Extrem Physiol Med       Date:  2016-02-29
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  1 in total

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