z-logo
Premium
Exhaled Nitric Oxide Increases During High Frequency Oscillatory Ventilation in Rabbits
Author(s) -
Artlich Andreas,
Adding Christofer,
Agvald Per,
Persson Magnus G.,
Lönnqvist PerArne,
Gustafsson Lars E.
Publication year - 1999
Publication title -
experimental physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.925
H-Index - 101
eISSN - 1469-445X
pISSN - 0958-0670
DOI - 10.1111/j.1469-445x.1999.01891.x
Subject(s) - exhaled nitric oxide , nitric oxide , ventilation (architecture) , medicine , cardiology , chemistry , anesthesia , spirometry , physics , asthma , thermodynamics
SUMMARY This study compared the effects of high frequency oscillatory ventilation (HFOV) and intermittent mandatory ventilation (IMV) on the homeostasis of nitric oxide (NO) in the lower respiratory tract of healthy rabbits. The mechanisms underlying a putative stretch response of NO formation in the airways were further elucidated. Male New Zealand White rabbits were anaesthetized, tracheotomized and ventilated with IMV or HFOV in random order. Total NO excretion increased from 9·6 ± 0·8 nl min −1 (mean ± s.e.m. ) during IMV to 22·6 ± 2·7 nl min −1 during HFOV ( P < 0·001). This increase was not explained by changes of functional residual capacity (ΔFRC). A similar increase in NO excretion during HFOV was seen in isolated buffer‐perfused lungs under constant circulatory conditions ( P < 0·05, n = 4). Intratracheal mean CO 2 and NO concentrations, measured at 2·5, 5, 7·5 and 10 cm below tracheostomy, increased significantly with increasing distance into the lung during both IMV and HFOV ( P < 0·001 for each comparison). At every intratracheal location of the sampling catheter, particularly low in the airways, both CO 2 and NO concentrations were significantly higher during HFOV than during IMV ( P < 0·01 for each comparison). We conclude that HFOV increases pulmonary NO production in healthy rabbits. Increased stretch activation of the respiratory system during HFOV is suggested as a possible underlying mechanism. The increase in mean airway NO concentrations may have biological effects in the respiratory tract. Whether it can account for some of the benefits of HFOV treatment needs to be considered.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here