Related Experiment Video
Updated: Jun 12, 2026

Monitoring Lung Function with Electrical Impedance Tomography in the Intensive Care Unit
Published on: September 6, 2024
Influence of ventilator settings on patient-ventilator synchrony during pressure support ventilation with different
R Costa1, P Navalesi, G Spinazzola
1Dipartimento di Anestesia e Rianimazione, Università Cattolica del Sacro Cuore, Rome, Italy. roberta.costa@rm.unicatt.it
Objective:
To evaluate patient-ventilator interaction during pressure support ventilation (PSV) delivered with three interfaces [endotracheal tube (ET), face mask (FM), and helmet (H)] at different pressurization times (Time(press)), cycling-off flow thresholds (Tr(exp)), and respiratory rates (RR) in a bench study, and with FM and H in a healthy volunteers study.
Design:
Bench study using a mannequin connected to an active lung simulator, and human study including eight healthy volunteers.
Measurements:
PSV was delivered through the three interfaces with three different RR in the bench study, and through FM and H at two different RR in the human study. The mechanical and the neural RR, Ti, Te, inspiratory trigger delay (Delay(trinsp)), pressurization time, and expiratory trigger delay were randomly evaluated at various ventilator settings (Time(press)/Tr(exp): 50%/25%, default setting; 20%/5%, slow setting; 80%/60%, fast setting).
Results:
Bench study: patient-ventilator synchrony was significantly better with ET, with lower Delay(trinsp) and higher time of assistance (P < 0.001); the combination Time(press)/Tr(exp) 20%/5% at RR 30 produced the worst interaction, with higher rate of wasted efforts (WE) compared with Time(press)/Tr(exp) 80%/60% (20%, 40%, and 50% of WE versus 0%, 16%, and 26% of all spontaneous breaths, with ET, FM, and H, respectively; P < 0.01). In both studies, compared with H, FM resulted in better synchrony.
Conclusion:
Patient-ventilator synchrony was significantly better with ET during the bench study; in the human study, FM outperformed H.
Related Concept Videos
Mechanical Ventilation I: Indication and Settings
Ventilatory Modes
There are three ventilatory modes: full support, partial support, and spontaneous. These are described below.
Full Support Modes
Full support modes include controlled mechanical ventilation, continuous mandatory...
Mechanical Ventilation II: Invasive Ventilation
Negative-Pressure Ventilators
Negative-pressure ventilators create a vacuum around the chest or body to draw air into the lungs, simulating breathing. This method does not require an...
Mechanical Ventilation III: Noninvasive Ventilation
Noninvasive Positive-Pressure Ventilation (NIPPV)
Factors Affecting Pulmonary Ventilation
Alveolar Surface Tension
The alveolar fluid lines the luminal surface of the alveoli and exerts a force called surface tension. This force is caused by the polar water molecules in the liquid being more strongly attracted to each...
Assessment of Ventilation I: Respiratory Rate
A Ventilation assessment is critical for monitoring a patient's health status. Respiration, one of the most accessible vital signs, provides insights into the function of numerous body systems and can indicate serious health issues, such as brainstem injuries from head trauma.
Critical Guidelines for Assessing Ventilation:
