TY - GEN
T1 - Can Side Holes in Returning Cannula Improve VV-ECMO Effectiveness?
AU - Ondrusova, Beata
AU - Petras, Argyrios
AU - Szasz, Johannes
AU - Meier, Jens
AU - Gerardo-Giorda, Luca
PY - 2025
Y1 - 2025
N2 - Veno-venous extracorporeal membrane oxygenation (VV-ECMO) is a life-saving therapy used for patients with respiratory failure; however, its effectiveness may be compromised by high recirculation rates. Recirculation occurs when oxygenated blood from the returning cannula is drawn back into the ECMO circuit by the drainage cannula. In this study, we compared the recirculation rates between a returning cannula with 2 and 12 side holes for ECMO flow of 4 L/min using computational modeling of blood flow and oxygen diffusion. Simulations were computed using a patient-specific model of the right atrium, superior and inferior vena cava derived from the CT scan. For both cannulas, the recirculation rate was 12% and oxygen saturation was 86%, suggesting negligible influence of side holes on VV-ECMO efficacy. Further studies are needed to assess whether different designs could improve VV-ECMO performance. The pipeline used here can be used to evaluate and optimize such designs.
AB - Veno-venous extracorporeal membrane oxygenation (VV-ECMO) is a life-saving therapy used for patients with respiratory failure; however, its effectiveness may be compromised by high recirculation rates. Recirculation occurs when oxygenated blood from the returning cannula is drawn back into the ECMO circuit by the drainage cannula. In this study, we compared the recirculation rates between a returning cannula with 2 and 12 side holes for ECMO flow of 4 L/min using computational modeling of blood flow and oxygen diffusion. Simulations were computed using a patient-specific model of the right atrium, superior and inferior vena cava derived from the CT scan. For both cannulas, the recirculation rate was 12% and oxygen saturation was 86%, suggesting negligible influence of side holes on VV-ECMO efficacy. Further studies are needed to assess whether different designs could improve VV-ECMO performance. The pipeline used here can be used to evaluate and optimize such designs.
UR - https://ieeexplore.ieee.org/document/11078673
UR - https://www.scopus.com/pages/publications/105012574417
U2 - 10.23919/MEASUREMENT66999.2025.11078673
DO - 10.23919/MEASUREMENT66999.2025.11078673
M3 - Conference proceedings
T3 - 2025 Proceedings of the 15th International Conference on Measurement, MEASUREMENT 2025
SP - 287
EP - 290
BT - 2025 15th International Conference on Measurement
A2 - Dvurecenskij, Andrej
A2 - Manka, Jan
A2 - Svehlikova, Jana
A2 - Witkovsky, Viktor
PB - IEEE
ER -