Performance of helmet CPAP using different configurations: Turbine-driven ventilators vs Venturi devices

Pulmonology. 2025 Dec 31;31(1):2416789. doi: 10.1016/j.pulmoe.2023.04.009. Epub 2024 Oct 24.

Abstract

Background: Traditionally, Venturi-based flow generators have been preferred over mechanical ventilators to provide continuous positive airway pressure (CPAP) through the helmet (h-CPAP). Recently, modern turbine-driven ventilators (TDVs) showed to be safe and effective in delivering h-CPAP. We aimed to compare the pressure stability during h-CPAP delivered by Venturi devices and TDVs and assess the impact of High Efficiency Particulate Air (HEPA) filters on their performance.

Methods: We performed a bench study using an artificial lung simulator set in a restrictive respiratory condition, simulating two different levels of patient effort (high and low) with and without the interposition of the HEPA filter. We calculated the average of minimal (Pmin), maximal (Pmax) and mean (Pmean) airway pressure and the time product measured on the airway pressure curve (PTPinsp). We defined the pressure swing (Pswing) as Pmax - Pmin and pressure drop (Pdrop) as End Expiratory Pressure - Pmin.

Results: Pswing across CPAP levels varied widely among all the tested devices. During "low effort", no difference in Pswing and Pdrop was found between Venturi devices and TDVs; during high effort, Pswing (p<0.001) and Pdrop (p<0.001) were significantly higher in TDVs compared to Venturi devices, but the PTPinsp was lower (1.50 SD 0.54 vs 1.67 SD 0.55, p<0.001). HEPA filter addition almost doubled Pswing and PTPinsp (p<0.001) but left unaltered the differences among Venturi and TDVs systems in favor of the latter (p<0.001).

Conclusions: TDVs performed better than Venturi systems in delivering a stable positive pressure level during h-CPAP in a bench setting.

Keywords: Airway pressure; COVID-19; CPAP; HEPA filter; Helmet; NIV; PEEP; Turbine-driven ventilator; Venturi system device.

Publication types

  • Comparative Study

MeSH terms

  • Continuous Positive Airway Pressure* / instrumentation
  • Continuous Positive Airway Pressure* / methods
  • Equipment Design*
  • Humans
  • Ventilators, Mechanical*