AltitudeOmics: Baroreflex Sensitivity During Acclimatization to 5,260 m.

Details

Ressource 1Download: fphys-09-00767.pdf (929.19 [Ko])
State: Public
Version: Final published version
Serval ID
serval:BIB_A4D5880CEB07
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
AltitudeOmics: Baroreflex Sensitivity During Acclimatization to 5,260 m.
Journal
Frontiers in physiology
Author(s)
Bourdillon N., Yazdani S., Subudhi A.W., Lovering A.T., Roach R.C., Vesin J.M., Kayser B.
ISSN
1664-042X (Print)
ISSN-L
1664-042X
Publication state
Published
Issued date
2018
Peer-reviewed
Oui
Volume
9
Pages
NA
Language
english
Notes
Article 767
Abstract
<b>Introduction:</b> Baroreflex sensitivity (BRS) is essential to ensure rapid adjustment to variations in blood pressure (BP). Little is known concerning the adaptive responses of BRS during acclimatization to high altitude at rest and during exercise. <b>Methods:</b> Twenty-one healthy sea-level residents were tested near sea level (SL, 130 m), the 1st (ALT1) and 16th day (ALT16) at 5,260 m using radial artery catheterization. BRS was calculated using the sequence method (direct interpretation of causal link between BP and heartrate). At rest, subjects breathed a hyperoxic mixture (250 mmHg O <sub>2</sub> , end tidal) to isolate the preponderance of CO <sub>2</sub> chemoreceptors. End-tidal CO <sub>2</sub> varied from 20 to 50 mmHg to assess peripheral chemoreflex. Rebreathing provoked incremental increase in CO <sub>2</sub> , increasing BP to assess baroreflex. During incremental cycling exercise to exhaustion, subjects breathed room air. <b>Results:</b> Resting BRS decreased in ALT1 which was exacerbated in ALT16. This decrease in ALT1 was reversible upon additional inspired CO <sub>2</sub> , but not in ALT16. BRS decrease during exercise was greater and occurred at lower workloads in ALT1 compared to SL. At ALT16, this decrease returned toward SL values. <b>Discussion/Conclusion:</b> This study is the first to report attenuated BRS in acute hypoxia, exacerbated in chronic hypoxia. In ALT1, hypocapnia triggered BRS reduction whilst in ALT16 resetting of chemoreceptor triggered BRS reduction. The exercise BRS resetting was impaired in ALT1 but normalized in ALT16. These BRS decreases indicate decreased control of BP and may explain deteriorations of cardiovascular status during exposure to high altitude.
Keywords
BRS, CO2, acclimatization, altitude, baroreflex, hypoxia
Pubmed
Web of science
Open Access
Yes
Create date
17/08/2018 20:22
Last modification date
20/08/2019 16:10
Usage data