ObjectiveTo evaluate the correlation of activated partial thromboplastin time (aPTT), activated clotting time (ACT) and the activity of anti-factor Ⅹa activity with the concentration of unfractionated heparin (UFH) during extracorporeal membrane oxygenation (ECMO) in children after cardiac surgery.MethodsThe clinical data of children (aged 6 months to 6 years) who received ECMO support after cardiac surgery in Fuwai Hospital from January 2010 to October 2020 were retrospectively collected. And the aPTT value, ACT value, anti-Ⅹa activity and the corresponding UFH dose measured simultaneously during ECMO were recorded. According to the Extracorporeal Life Support Organization anticoagulation guideline, the bleeding events of children during ECMO support were defined, and the children were divided into a bleeding group and a non-bleeding group according to whether bleeding events occurred. Pearson correlation was used to evaluate the correlation between ACT, aPTT or anti-Ⅹa activity and UFH in the same patient.ResultsA total of 58 children, including 33 males and 25 females, aged 27.31±34.17 months, were enrolled and divided into the bleeding group (n=39) and the non-bleeding group (n=19). Univariate analysis showed that compared with children in the non-bleeding group, children in the bleeding group had lower red blood cell counts (P=0.049), hemoglobin concentration (P=0.010), and hematocrit (P=0.046) on the day of ECMO installation. In addition, the transfusion volume of fresh frozen plasma (P=0.034) and fibrinogen (P=0.033) in the bleeding group was relatively more, and the proportion of exploratory thoracotomy for hemostasis was high (P=0.000); there was a moderate degree of correlation between anti-Ⅹa and UFH (r=0.418, P=0.013) but there was no correlation between ACT or aPTT and UFH.ConclusionThe aPTT value and ACT value are poorly correlated with the concentration of UFH transfused during ECMO in children after cardiac surgery, while the anti-Ⅹa activity is moderately correlated with it.
Although the survival rate reported in each center is different, according to the present studies, compared to conventional cardiopulmonary resuscitation (CCPR), extracorporeal cardiopulmonary resuscitation (ECPR) can improve the survival rate of cardiac arrest patient, no matter out-of-hospital or in-hospital. The obvious advantage of ECPR is that it can reduce the nervous system complications in the cardiac arrest patients and improve survival rate to hospital discharge. However, ECPR is expensive and without the uniformed indications for implantation. The prognosis for patients with ECPR support is also variant due to the different etiology. If we want to achieve better result, the ECPR technology itself needs to be further improved.
Although extracorporeal membrane oxygenation (ECMO) has been in existence since the 1970s as a means of supporting respiratory or cardiac function, early application of this technology was plagued by high complication rates. Peripheral veno-arterial extracorporeal membrane oxygenation (V-A ECMO) causes higher left ventricular end-diastolic pressure, pulmonary edema, left ventricular distention, ventricular arrhythmia, low coronary perfusion, myocardial ischemia, substantial thrombus formation within left ventricule cavity and even multiple organ dysfunction. Mechanical left ventricular decompression is required to treat these related complications. In this article, we reviewed the problems associated with left ventricular decompression supported by peripheral V-A ECMO in patients with cardiogenic shock.
During the new coronavirus disease 2019 (COVID-19) pandemic, there has been controversy over whether emergency surgical management should be performed or not in the patients with COVID-19. Stanford type A aortic dissection is a very urgent life-threatening disease, and guidelines recommend surgical treatment for patients with type A aortic dissection in the first instance. However, intraoperative extracorporeal circulation can be fatal to patients recovering from COVID-19. During the pandemic, extracorporeal membrane oxygenation (ECMO) has played an important role in supporting COVID-19 patients with acute respiratory failure. This article reports a successful V-V ECMO treatment for a Stanford type A aortic dissection patient, who suffered respiratory failure caused by COVID-19 after emergency surgery.
As an extracorporeal life support technology, veno-venous extracorporeal membrane oxygenation (VV-ECMO) has been demonstrated its role in the treatment of patients with severe respiratory failure. Its main advantages include the ability to maintain adequate oxygenation and remove excess CO2, increase oxygen delivery, improve tissue perfusion and metabolism, and implement lung protection strategies. Clinicians should accurately assess and identify the patient's condition, timely and accurately carry out VV-ECMO operation and management. This article will review the patient selection, cannulation strategy, anticoagulation, clinical management and weaning involved in the application of VV-ECMO.
ObjectiveTo analyze the early outcomes of anomalous origin of the left coronary artery from the pulmonary artery (ALCAPA) patients with severe left ventricular dysfunction after surgical repair, and to explore the predictors for extracorporeal membrane oxygenation (ECMO) support for these patients.MethodsThe clinical data of ALCAPA patients with severe left ventricular dysfunction (left ventricular ejection fraction<40%) who underwent coronary artery reimplantation in the pediatric center of our hospital from 2013 to 2020 were retrospectively analyzed. The patients were divided into an ECMO group and a non-ECMO group. Clinical data of the two groups were compared and analyzed.ResultsA total of 64 ALCAPA patients were included. There were 7 patients in the ECMO group, including 4 males and 3 females aged 6.58±1.84 months. There were 57 pateints in the non-ECMO group, including 30 males and 27 females aged 4.34±2.56 months. The mortality of the patients was 6.25% (4/64), including 2 patients in the ECMO group, and 2 in the non-ECMO group. The postoperative complications rate was significantly higher in the ECMO group than that in the non-ECMO group (P=0.041). There were statistical differences in the cardiopulmonary bypass time [254 (153, 417) min vs. 106 (51, 192) min, P=0.013], aortic cross-clamping (ACC) time (89.57±13.66 min vs. 61.58±19.57 min, P=0.039), and preoperative left ventricular end-diastolic diameter/body surface area (132.32±14.71 mm/m2 vs. 108.00±29.64 mm/m2, P=0.040) between the two groups. Multivariate logistic regression analysis showed that ACC time was an independent risk factor for postoperative ECMO support (P=0.005). Receiver operating characteristic (ROC) curve analysis showed that the area under the ROC curve was 0.757, the sensitivity was 85.70%, specificity was 66.70%, with the cut-off value of 66 min.ConclusionACC time is an independent risk factor for postoperative ECMO support. Patients with an ACC time>66 min have a significantly higher risk for ECMO support after the surgery.
Objective To systematically evaluate the effect of the timing of left ventricular (LV) unloading on the outcomes of patients with cardiogenic shock (CS) receiving extracorporeal membrane oxygenation (ECMO). MethodsA systematic literature search was conducted in PubMed, EMbase, the Cochrane Library, China National Knowledge Infrastructure (CNKI), SinoMed, and the VIP databases from their inception to February 2025. Literature screening was conducted according to predefined inclusion and exclusion criteria. Two researchers independently assessed the study quality and extracted the data. Patients were divided into an early unloading group and a late unloading group based on the timing of LV unloading. RevMan 5.4 software was used to perform the heterogeneity test and meta-analysis. Results A total of 8 studies involving 2 117 patients were included (1 338 in the early unloading group and 779 in the late unloading group). The meta-analysis showed no statistically significant differences between the two groups in the rates of successful ECMO weaning, in-hospital mortality, or 30-day all-cause mortality (all P>0.05). Compared with the late unloading group, the early unloading group had a lower risk of sepsis [RR=0.79, 95% CI (0.64, 0.96), P=0.02] and abdominal complications [RR=0.67, 95% CI (0.46, 0.96), P=0.03]. ConclusionCompared with late LV unloading, early LV unloading does not significantly improve the successful ECMO weaning rate or early survival. However, early LV unloading is associated with a reduced risk of sepsis and abdominal complications.
Objective To explore the value of extracorporeal membrane oxygenation(ECMO) combined with hypothermia therapy for children patients with refractory cardiac arrest after congenital heart disease surgery. Methods From January 2013 to June 2016, we conducted a prospective study of 23 children (18 males, 5 females at age of 7±11 months) who underwent ECMO for refractory cardiac arrest after congenital heart disease surgery. All patients were randomly divided into two groups: a standard group (11 patients) and a hypothermia group (12 patients). The patients of the standard group received standard therapy (the core body temperature maintaining at 37.0℃) and the hypothermia group received hypothermia therapy (the core body temperature maintaining at 33.0℃). The hospital discharge rate, the rate of weaning from ECMO and the morbidity were compared between the two groups. Results Eleven of 23 patients (47.8%) were weaned from ECMO successfully and 7 of 23 patients (30.4%) discharged from hospital. The hospital discharge rate between the hypothermia group (n=6, 50.0%) and the standard group (n=1, 9.1%) had no statistical difference (χ2=4.537, P=0.069). The rate of weaning from ECMO of the hypothermia group (n=9, 75.0%) was higher than that of the standard group (n=2, 18.2%, χ2=7.425, P=0.006). The morbidity between the two groups had no statistical difference. Conclusion Extracorporeal cardiopulmonary resuscitation can improve the survival rate of the children who suffered from refractory cardiac arrest after congenital heart disease surgery. There is no evidence that ECMO combined with hyperthermia therapy is better than the only ECMO in improving the discharge rate. But ECMO combined with hypothermia therapy has higher rate of weaning from ECMO than that of the only ECMO.
Acute poisoning is characterized by a sudden and rapid onset, most poisons lack specific antidotes. Even with the full use of blood purification, mechanical ventilation, and various drugs, it is often difficult to change the fatal outcome of critically ill patients. In recent years, extracorporeal membrane oxygenation (ECMO) has gradually gained attention and exploratory application in the treatment of acute poisoning due to its significant cardiopulmonary function support, veno-venous ECMO is used for severe lung injury after poisoning, acute respiratory distress syndrome and respiratory failure due to ineffective mechanical ventilation, and it can also be used to assist the removal of residual poisons in the lungs. Veno-arterial ECMO is commonly employed in patients with circulatory failure following poisoning, fatal cardiac arrhythmias, and arrest of cardiac and respiratory. The application of veno-arterio-venous ECMO has also been reported. The mode of ECMO necessitates timely adjustments according to the evolving illness, while ongoing exploration of additional clinical indications is underway. This review analyzes and evaluates the application scope and effectiveness of ECMO in acute poisoning in recent years, with a view to better exploring and rationalizing the use of this technology.
ObjectiveTo explore the construction of heart preservation model of empty beating donor based on extracorporeal membrane oxygenation (ECMO). MethodsFrom January 2022 to August 2023, 20 Guangxi Bama miniature pigs weighing 25-30 kg were selected, half male and half female. Under general anesthesia and heparinization, a midline thoracotomy was performed. The pericardium was cut after freeing the anterior and posterior vena cavae, and a perfusion needle was inserted near the brachiocephalic artery in the ascending aorta, connected to a blood collection bag to collect 500-600 mL of blood. The anterior and posterior vena cavae were ligated, the aorta was blocked and perfused with HTK solution to stop the heart beating. The superior and inferior vena cavae were cut off, the right pulmonary vein was decompressed, the aorta and left and right pulmonary arteries and veins were cut off, and the whole heart was removed. An ECMO device was used to continuously perfuse a cardioprotective solution mainly composed of oxygenated warm blood, maintaining the isolated pig heart beating for 8 hours, monitoring (once/hour) ECMO perfusion parameters, blood gas indicators, perfusate electrolytes, detecting inflammatory factors, myocardial enzymes, myoglobin, and troponin levels. Myocardial tissue was taken for hematoxylin-eosin (HE) staining to observe myocardial cell damage and evaluate the quality of heart preservation. ResultsAmong the 20 isolated beating preservation pig hearts, 17 successfully resumed beating, 3 experienced ventricular fibrillation, resuscitated after intracardiac electrical defibrillation, and all 20 pig hearts successfully beat for 8 hours. There was no statistical difference in ECMO perfusion parameters, blood gas indicators, perfusate electrolytes, and inflammatory factors at each time point (P>0.05). There were statistical increases in myocardial enzymes, myoglobin, and troponin levels (P<0.05). HE staining results suggested that there was no severe myocardial damage. ConclusionECMO technology can be used for pig heart preservation with good results, and this study provides experimental evidence for improving heart preservation research in clinical heart transplantation.