Related Experiment Video
Updated: May 27, 2026

Point-of-Care Ultrasound for Peripheral Veno-Arterial Extracorporeal Membrane Oxygenation Without Left Ventricular Venting
Published on: January 17, 2025
Impact of cannula configuration on efficiency and mechanical ventilation intensity during venovenous ECMO
Benjamin Assouline1,2,3, Chloé Sieurin1, Carole Looyens1
1Intensive Care Division, Department of Acute Care Medicine, Geneva University Hospitals, Geneva, Switzerland.
Background:
The efficiency of venovenous extracorporeal membrane oxygenation (VV ECMO) may be influenced by cannula configuration, potentially affecting oxygenation and the ability to apply ultra-protective ventilation in severe ARDS.
Materials And Methods:
This retrospective single-center study included all adult patients with severe ARDS supported with femoro-jugular VV ECMO between January 2013 and December 2022. Patients were divided into two groups according to cannula configuration: cross configuration (CC) and non-cross configuration (NCC). Ventilatory parameters, mechanical power, blood gases, and ECMO settings were analyzed at 1, 4, 12, and 24 h after ECMO initiation. A longitudinal analysis using generalized estimating equations adjusted for APACHE II score, COVID-19 ARDS, and baseline mechanical power was performed.
Results:
Sixty-two patients were included (CC, n = 33; NCC, n = 29). Patients had a median age of 56 [50-63] years, 66% were male, and 58% had COVID-19 ARDS. Baseline respiratory parameters, ECMO settings, and cardiac output were comparable between groups. Compared with NCC, the CC group had significantly lower FiO₂ (21 [21-27] vs. 60 [40-100]%, p < 0.0001), and mechanical power (6.5 ± 2.4 vs. 12.3 ± 6.2 J/min, p < 0.0001) at 1 h, with sustained differences up to 24 h. In adjusted longitudinal analysis, the adjusted difference in mechanical power between CC and NCC was6.80 J/min (95% CI 3.82-9.78, p < 0.001) at 1 h and 6.69 J/min (95% CI 3.62-9.77, p < 0.001) at 24 h, with no significant interaction over time (p = 0.681). Sensitivity analyses including additional adjustment for prone positioning, baseline compliance, and time from intubation to ECMO initiation showed consistent results.
Conclusion:
Cross cannula configuration is associated with reduced mechanical ventilation intensity during VV ECMO, independent of disease severity and ARDS etiology. These findings suggest improved ECMO efficiency and support further evaluation in prospective studies.
Related Concept Videos
Mechanical Ventilation I: Indication and Settings
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...
Administering Oxygen by Nasal Cannula
Nasal Cannulas
A nasal cannula is a lightweight tube split into two prongs placed in the nostrils, connected...
Oxygen Delivering System II: Venturi Mask and Transtracheal Oxygen
Venturi Mask
The Venturi mask, named after the Venturi effect, is designed to deliver precise oxygen concentrations. It consists of a large tube with an oxygen inlet that narrows down, causing a pressure drop that pulls air in through adjustable side ports. The mask is a lightweight,...
Mechanical Ventilation III: Noninvasive Ventilation
Noninvasive Positive-Pressure Ventilation (NIPPV)
Oxygen Delivering System I: Nasal Cannula and Face Mask
Nasal Cannula
A nasal cannula is a lightweight tube split at one end into two prongs and placed in the nostrils. It is typically used to deliver low to medium levels of oxygen.
Suggested flow rate: The suggested flow rate for a nasal cannula typically ranges between 1 and 6 L/min.
Oxygen percentage setting:...
