Actual vs optimal fetal hematocrit measured with punctures of cord blood in utero: Relationship with umbilical artery resistance.

Clin Hemorheol Microcirc

Service de Gynécologie Obstétrique, Hópital Arnaud de Villeneuve, CHU Montpellier, France.

Published: February 2017

AI Article Synopsis

  • * Analysis of 28 intrauterine cord punctures and Doppler measurements showed a strong correlation (r = 0.857) between actual hemoglobin levels and the predicted 'ideal' hematocrit, although the actual levels were consistently lower.
  • * The results indicate that the difference between ideal and actual hematocrit may serve a purpose, as the body appears to adjust hematocrit levels to reduce vascular resistance, hinting at a regulatory mechanism in fetal blood flow.

Article Abstract

Physiological studies on fetal blood in narrow glass tubes have suggested that fetal optimal hematocrit (hct) might be as high as 60%. A theoretical 'ideal' hct can also be predicted with a theoretical curve of hematocrit/viscosity (h/η) ratio vs hct constructed with Quemada's model. We used the database of one of our previous papers on fetal hemorheology to reinterpret its results with this concept. A series of 28 intrauterine cord punctures (between 19 and 33 weeks gestation) with doppler measurements of resistance in umbilical arteries was studied. The theoretical 'optimal hematocrit' was well correlated to actual (r = 0.857, p < 0.01) but systematically lower (Bland-Altman plot +12.1[8.52-15.7]) than the actual one. Umbilical artery resistance index is correlated with actual hematocrit (r = 0.407, p < 0.05), the discrepancy between ideal and actual (r = - 0.542, p < 0.05) but not predicted ideal hematocrit, suggesting that the discrepancy between ideal and actual may reflect an adaptative decrease aiming at reducing vascular resistance. These findings indicate that prediction of ideal hematocrit with Quemada's equation makes sense in fetal blood, and suggest that a 'viscoregulatory mechanism' maintains hematocrit below this theoretical value in order to avoid excess vascular resistance.

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Source
http://dx.doi.org/10.3233/CH-168016DOI Listing

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