Scientific article
English

Benefits of intratracheal and extrathoracic high-frequency percussive ventilation in a model of capnoperitoneum

Published inJournal of applied physiology, vol. 136, no. 4, p. 928-937
Publication date2024-04-01
First online date2024-02-29
Abstract

Abdominal inflation with CO2 is used to facilitate laparoscopic surgeries, however, providing adequate mechanical ventilation in this scenario is of major importance during anesthesia management. We characterized high-frequency percussive ventilation (HFPV) in protecting from the gas exchange and respiratory mechanical impairments during capnoperitoneum. In addition, we aimed to assess the difference between conventional pressure-controlled mechanical ventilation (CMV) and HFPV modalities generating the high-frequency signal intratracheally (HFPVi) or extrathoracally (HFPVe). Anesthetized rabbits (n = 16) were mechanically ventilated by random sequences of CMV, HFPVi, and HFPVe. The ventilator superimposed the conventional waveform with two high-frequency signals (5 Hz and 10 Hz) during intratracheal HFPV (HFPVi) and HFPV with extrathoracic application of oscillatory signals through a sealed chest cuirass (HFPVe). Lung oxygenation index ([Formula: see text]/[Formula: see text]), arterial partial pressure of carbon dioxide ([Formula: see text]), intrapulmonary shunt (Qs/Qt), and respiratory mechanics were assessed before abdominal inflation, during capnoperitoneum, and after abdominal deflation. Compared with CMV, HFPVi with additional 5-Hz oscillations during capnoperitoneum resulted in higher [Formula: see text]/[Formula: see text], lower [Formula: see text], and decreased Qs/Qt. These improvements were smaller but remained significant during HFPVi with 10 Hz and HFPVe with either 5 or 10 Hz. The ventilation modes did not protect against capnoperitoneum-induced deteriorations in respiratory tissue mechanics. These findings suggest that high-frequency oscillations combined with conventional pressure-controlled ventilation improved lung oxygenation and CO2 removal in a model of capnoperitoneum. Compared with extrathoracic pressure oscillations, intratracheal generation of oscillatory pressure bursts appeared more effective. These findings may contribute to the optimization of mechanical ventilation during laparoscopic surgery.

NEW & NOTEWORTHY The present study examines an alternative and innovative mechanical ventilation modality in improving oxygen delivery, CO2 clearance, and respiratory mechanical abnormalities in a clinically relevant experimental model of capnoperitoneum. Our data reveal that high-frequency oscillations combined with conventional ventilation improve gas exchange, with intratracheal oscillations being more effective than extrathoracic oscillations in this clinically relevant translational model.

Keywords
  • Blood gas
  • Gas exchange
  • Lung function
  • Mechanical ventilation
  • Pneumoperitoneum
  • Animals
  • Rabbits
  • Carbon Dioxide
  • High-Frequency Ventilation / methods
  • Respiration, Artificial / methods
  • Lung
  • Respiratory Insufficiency
  • Cytomegalovirus Infections
Funding
  • Hungarian Science Foundation [OTKA-NKFIH K138032]
Citation (ISO format)
PETÁK, Ferenc et al. Benefits of intratracheal and extrathoracic high-frequency percussive ventilation in a model of capnoperitoneum. In: Journal of applied physiology, 2024, vol. 136, n° 4, p. 928–937. doi: 10.1152/japplphysiol.00881.2023
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Article (Published version)
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Appendix - Figure S1 and S2
Identifiers
Journal ISSN1522-1601
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Technical informations

Creation20/11/2024 14:04:21
First validation20/11/2024 14:39:17
Update20/11/2024 14:39:17
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