Parasympathetic nervous system response to acidosis: Evaluation in an experimental fetal sheep model.


Journal

Acta obstetricia et gynecologica Scandinavica
ISSN: 1600-0412
Titre abrégé: Acta Obstet Gynecol Scand
Pays: United States
ID NLM: 0370343

Informations de publication

Date de publication:
04 2019
Historique:
received: 06 10 2018
accepted: 04 12 2018
pubmed: 20 12 2018
medline: 20 12 2019
entrez: 20 12 2018
Statut: ppublish

Résumé

Heart rate variability and fetal heart rate decelerations are impacted by parasympathetic function and reflect acid-base status. Our team developed a new heart rate variability index, the fetal stress index (FSI), which has lower interindividual variability and higher sensitivity for detecting fluctuations in parasympathetic nervous system activity. The aim of this study was to explore the ability of the FSI to predict fetal acidosis in a fetal sheep model. Repeated 1-minute total umbilical cord occlusions (UCOs) were performed every 2.5 minutes over 3 hours to generate fetal acidosis mimicking that which occurs during labor and contractions. Fetal hemodynamic parameters, blood gas, the FSI and the magnitude (from the beginning to the nadir) of the fetal heart rate deceleration were recorded at regular intervals. The data were analyzed over three time intervals because of variation in the duration of the experiments: period A (first 12 UCOs), period B (middle 12 UCOs) and period C (last 12 UCOs). Nine experiments were performed. Acidosis was progressive with a significant difference between the pH, lactate levels and base deficit values for the three periods of occlusion (P < 0.05). Both FSI and the magnitude of fetal heart rate decelerations gradually increased during the UCOs and both differed significantly between periods A and C (P = 0.0008 for FSI and P = 0.003 for deceleration). This experimental protocol allowed the development of progressive acidosis in a good model of the physiology of labor. Parasympathetic nervous system activity increased during acidosis and could be measured using our index, the FSI, and the magnitude of fetal heart rate decelerations.

Identifiants

pubmed: 30566227
doi: 10.1111/aogs.13515
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

433-439

Informations de copyright

© 2018 Nordic Federation of Societies of Obstetrics and Gynecology.

Auteurs

Louise Ghesquière (L)

EA 4489 - Perinatal Environment and Health, University of Lille, Lille, France.
Department of Obstetrics, University Hospital Center (CHU) Lille, Lille, France.

Julien De Jonckheere (J)

EA 4489 - Perinatal Environment and Health, University of Lille, Lille, France.
Clinical Investigation Center - Technological Innovation (CIC-IT) 1403, University Hospital Center (CHU) Lille, Lille, France.

Elodie Drumez (E)

EA 2694 - Public Health: Epidemiology and Quality of Care, Department of Biostatistics, University of Lille, University Hospital Center (CHU) Lille, Lille, France.

Dyuti Sharma (D)

EA 4489 - Perinatal Environment and Health, University of Lille, Lille, France.
Department of Pediatric Surgery, University Hospital Center (CHU) Lille, Lille, France.

Estelle Aubry (E)

EA 4489 - Perinatal Environment and Health, University of Lille, Lille, France.
Department of Pediatric Surgery, University Hospital Center (CHU) Lille, Lille, France.

Philippe Deruelle (P)

EA 4489 - Perinatal Environment and Health, University of Lille, Lille, France.
Department of Obstetrics, University Hospital Center (CHU) Lille, Lille, France.

Laurent Storme (L)

EA 4489 - Perinatal Environment and Health, University of Lille, Lille, France.
Department of Neonatology, University Hospital Center (CHU) Lille, Lille, France.

Véronique Houfflin-Debarge (V)

EA 4489 - Perinatal Environment and Health, University of Lille, Lille, France.
Department of Obstetrics, University Hospital Center (CHU) Lille, Lille, France.

Charles Garabedian (C)

EA 4489 - Perinatal Environment and Health, University of Lille, Lille, France.
Department of Obstetrics, University Hospital Center (CHU) Lille, Lille, France.

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Classifications MeSH