Modalities of Left Ventricle Decompression during VA-ECMO Therapy
Abstract
:1. Introduction
2. Mechanisms of LV Distention
3. Monitoring and How to Recognize LV Distention and Pulmonary Congestion in Patients with VA-ECMO
4. Therapeutic Strategies for LV Distention
4.1. Inotropic Support and Volemic Status Optimization
4.2. Intra-Aortic Balloon Pump
4.3. Balloon Atrial Septostomy
4.4. Impella
4.5. Surgical Decompression Cannula
4.6. Percutaneous Decompression Cannula
5. Discussion
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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Parameters | Consequences |
---|---|
LV Preload | ↓ |
LV Afterload | ↑ |
LV End-Diastolic Volume and Pressure | ↑ |
Myocardial Oxygen Consumption | ↑ |
LV Stroke Volume | ↓ |
Modality | Advantages | Disadvantages | |
---|---|---|---|
Passive LV Unloading | Inotropes | Simple, cheap, first gesture, no “instrumentation” | ↑ Myocardial O2 consumption, ↑ risk or arrhythmias, discrete effect on venting |
IABP | Familiarity and simplicity of its use, ease and bedside insertion, low complication rate, enhances coronary circulation | Partial unload, limb ischemia, requires regular rhythm, contraindicated in aortic regurgitation and aneurysm | |
Atrial Septostomy | Aspiration of blood through the RA-LA, if severe mitral regurgitation direct unloading of the LV | Risk of perforation/damage of neighbouring structures, stenting malposition, nephrotoxic contrast use, requires “resolution” after patient improvement | |
Active LV Unloading | Impella | Direct unload, trigger not required, further enhances systemic blood flow | ↑ Risk of hemolysis, bleeding, and thrombosis, limb ischemia, contraindicated in aortic regurgitation and aneurysm, Impella 5.0 requires surgical insertion, |
Surgical decompression cannula | Direct unload | Insertion technique complications, if catheter placed in pulmonary artery lung ischemia may occur. Surgical approach requires sternotomy or mini-thoracotomy | |
Percutaneous decompression cannula | Direct unload | Insertion technique complications |
Study | Year | Indications | No. Patients ECMO | No. Patients ECMO + Unload | Weaning ECMO (%) | Weaning ECMO + Unload (%) | Mortality ECMO (%) | Mortality ECMO + Unload (%) | Reference |
---|---|---|---|---|---|---|---|---|---|
IABP | |||||||||
Aso et al. | 2016 | Any CS | 1046 | 604 | 685 (65.5) | 505 (83.6) | 650 (62.1) | 287 (47.5) | doi:10.1097/ccm.0000000000001828 |
Lin et al. | 2016 | Any CS | 227 | 302 | NR | NR | 110 (48.5) | 144 (47.7) | doi:10.1038/srep23838 |
Bréchot et al. | 2018 | Any CS | 155 | 104 | NR | NR | 92 (59.4) | 45 (43.3) | doi:10.1177/2048872617711169 |
Tepper et al. | 2018 | Any CS | 30 | 30 | 16 (53) | 20 (64) | 22 (73) | 15 (50) | doi:10.1097/MAT.0000000000000788 |
Doll et al. | 2004 | Post-cardiotomy shock | 75 | 144 | 32 (42.6) | 101 (70) | 62 (82.6) | 105 (72.9) | doi:10.1016/s0003-4975(03)01329-8 |
Wang et al. | 2013 | Post-cardiotomy shock | 46 | 41 | NR | NR | 31 (67.4) | 13 (31.7) | doi:10.1371/journal.pone.0063924 |
Impella | |||||||||
Pappalardo et al. | 2017 | Any CS | 42 | 21 | 16 (28) | 10 (48) | 21 (74) | 10 (48) | doi:10.1002/ejhf.668 |
Patel et al. | 2018 | Any CS | 36 | 30 | 16 (44) | 21 (70) | 28 (78) | 17 (57) | doi:10.1097/mat.0000000000000767 |
Fiedler et al. | 2018 | Any CS | 47 | 12 | NR | NR | 25 (53.2) | 5 (41.6) | doi:10.1053/j.jvca.2018.05.019 |
LV Cannula | |||||||||
Schmack et al. | 2017 | Any CS | 28 | 20 | NR | NR | 21 (75) | 9 (45) | doi:10.7717/peerj.3813 |
Comparison between Methods | |||||||||
Study | Year | Indications | Weaning Success ECMO + IABP (%) | Weaning Success ECMO + Septostomy (%) | Weaning Success ECMO + LV Cannula (%) | Mortality ECMO + IABP (%) | Mortality ECMO + Septostomy (%) | Mortality ECMO + LV Cannula (%) | Reference |
Hasde et al. | 2020 | Any CS | 11 (55) | 9 (52.9) | 7 (43.7) | 11 (55) | 8 (47.1) | 9 (56.3) | doi:10.1093/icvts/ivaa284 |
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Ricarte Bratti, J.P.; Cavayas, Y.A.; Noly, P.E.; Serri, K.; Lamarche, Y. Modalities of Left Ventricle Decompression during VA-ECMO Therapy. Membranes 2021, 11, 209. https://doi.org/10.3390/membranes11030209
Ricarte Bratti JP, Cavayas YA, Noly PE, Serri K, Lamarche Y. Modalities of Left Ventricle Decompression during VA-ECMO Therapy. Membranes. 2021; 11(3):209. https://doi.org/10.3390/membranes11030209
Chicago/Turabian StyleRicarte Bratti, Juan Pablo, Yiorgos Alexandros Cavayas, Pierre Emmanuel Noly, Karim Serri, and Yoan Lamarche. 2021. "Modalities of Left Ventricle Decompression during VA-ECMO Therapy" Membranes 11, no. 3: 209. https://doi.org/10.3390/membranes11030209
APA StyleRicarte Bratti, J. P., Cavayas, Y. A., Noly, P. E., Serri, K., & Lamarche, Y. (2021). Modalities of Left Ventricle Decompression during VA-ECMO Therapy. Membranes, 11(3), 209. https://doi.org/10.3390/membranes11030209