Related Experiment Video
Updated: Jul 1, 2025

Employing the Forced Oscillation Technique for the Assessment of Respiratory Mechanics in Adults
Published on: February 9, 2022
Re-Evaluating Cross-Contamination: Additional Trials on Co-Ventilation
Jonathan W McMahon1, Donald J Doukas1, Christopher Hanuscin2
1Department of Emergency Medicine, SUNY Downstate Health Sciences University and Kings County Hospital Center, Brooklyn, New York; Department of Internal Medicine, SUNY Downstate Health Sciences University and Kings County Hospital Center, Brooklyn, New York.
Background:
Medical equipment can become scarce in disaster scenarios. Prior work has reported that four sheep could be ventilated together on a single ventilator. Others found that this maneuver is possible when needed, but no one has yet investigated whether cross-contamination occurs in co-ventilated individuals.
Objective:
Our goal was to investigate whether an infection could spread between co-ventilated individuals.
Methods:
Four 2-L anesthesia bags were connected to a sterilized ventilator circuit that used heat and moisture exchange filters and bacterial and viral filters, as would be expected in this dire scenario. Serratia marcescens was inoculated into "lung" no. 1. After running for 24 h, each lung and three additional points in the circuit were cultured to see whether S. marcescens had spread. These cultures were examined at 24 and 48 h to assess for cross-contamination. This entire procedure was performed three times.
Results:
S. marcescens was not found in lung no. 2, 3, or 4 or the three additional sites on the expiratory limb at 24 and 48 h in all three trials.
Conclusions:
Cross-contamination does not occur within 24 h using the described ventilator circuit configuration.
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