ObjectiveTo explore the diagnosis and treatment of severe adenovirus pneumonia patients with severe acute respiratory distress syndrome (ARDS) in a short time and reduce the complications after rehabilitation. MethodsThe clinical data, laboratory results, treatment process and imaging outcomes of three severe community-acquired adenovirus pneumonia patients with normal immune function were analyzed. ResultsAll the three patients developed ARDS in a very short time. In the early stage, alveolar lavage fluid obtained by fiberoptic bronchoscopy was taken for macrogenomic second-generation sequencing (mNGS), adenovirus was detected and antiviral drugs were immediately used. The first two patients received cidofovir antiviral therapy and the third patient received ribavirin antiviral therapy. All three patients received very high respiratory support, of which the first two received extracorporeal membrane oxygenation treatment. The lungs of all three patients recovered well after treatment. ConclusionsThe diagnosis and treatment of severe adenovirus pneumonia is still based on individualized symptomatic support, immune regulation and treatment of complications. mNGS can help diagnose and direct treatment of adenovirus pneumonia as early as possible, which is beneficial to reduce complications and improve survival rate.
ObjectiveTo analyze the risk factors for pediatric heart transplantation at a single center and its impact on short-term prognosis, providing experience and reference for pediatric heart transplantation. MethodsThe children who underwent heart transplantation from May 2022 to May 2024 at the Seventh Medical Center of Chinese PLA General Hospital were included in this study. We conducted a retrospective analysis of the clinical data of donors and recipients, perioperative conditions, and postoperative complications. The double-lumen venoplasty technique was used for all surgeries. Basiliximab was applied for immune induction during and after the operation (on the 4th day). Tacrolimus+mycophenolate mofetil+prednisolone acetate was used for postoperative immunosuppressive maintenance treatment. According to whether patients had a history of extracorporeal membrane oxygenation (ECMO) installation before surgery, they were divided into an ECMO group and a non-ECMO group. The postoperative ICU stay time, postoperative ventilator assistance time, aortic clamping time, cardiopulmonary bypass time, recipient body surface area, left ventricular ejection fraction, X-ray cardiothoracic ratio, donor heart cold ischemia time, and the weight ratio between donor and recipient were compared between the two groups, and correlation analysis was performed. ResultsA total of 17 children were included, with 10 (58.8%) males and 7 (41.2%) females. Their ages ranged from 7 months to 16 years, with a median age of 11.0 (10.0, 13.0) years. Their weights ranged from 7.0 to 67.5 kg, with an average weight of (41.6±16.7) kg. Of the 17 children, 16 survived post-operation, and 1 died 5 days after the operation. Five patients were ABO incompatible heart transplantations, and 11 patients had a history of ECMO installation before surgery. The left ventricular ejection fraction of the non-ECMO group was higher than that of the ECMO group (t=2.188, P=0.045). The postoperative ICU stay time and postoperative ventilator assistance time (r=0.599, P=0.011), and cardiopulmonary bypass time (r=0.667, P=0.003) were positively correlated. The cardiothoracic ratio was negatively correlated with the postoperative ventilator assistance time (r=−0.527, P=0.030). ConclusionPediatric heart transplantation is an effective treatment method for children with end-stage heart failure. The left ventricular ejection fraction of the recipient may be a predictive factor indicating that the child needs ECMO assistance. Longer extracorporeal circulation time and larger recipient body surface area may affect the surgical process and perioperative prognosis.
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.
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.
[Abstract]Acute cardiac tamponade after thoracoscopic lobectomy is extremely rare and highly lethal once it occurs. This paper reports a case of a 64-year-old male with preoperative hypertension and coronary heart disease who underwent video-assisted thoracoscopic right upper lung wedge resection for early-stage lung adenocarcinoma. Three hours postoperatively, he suddenly developed hypotension and loss of consciousness. Ultrasound indicated a large amount of pericardial effusion, suggesting cardiac tamponade. Despite emergency pericardiocentesis, his hemodynamics did not improve, and the patient went into cardiac arrest. Subsequent veno-arterial extracorporeal membrane oxygenation was performed to support systemic circulation, and emergency thoracotomy was carried out. During the surgery, a needle-like tear in the anterior wall of the ascending aorta was found, corresponding exactly to a prominent staple at the lung resection margin, suggesting a stapler malfunction. After vascular repair, the patient recovered smoothly and was discharged. This case suggests that during lung resection, great attention should be paid to the integrity of staples and anatomical variations of large vessels, and vigilance is needed for rare but potentially fatal stapler-related complications.
[Abstract]The number of lung transplantation is gradually increasing worldwide, which brings new challenges to the multi-disciplinary team of lung transplantation. The prognosis of lung transplant recipients is seriously affected by the pathophysiological state of specific lung diseases and perioperative risk factors. It is of great significance for these patients to optimize perioperative management according to these factors. Recently, several expert consensus have been published regarding anesthesia management of lung transplantation. Based on the current evidence and clinical practice of West China Hospital, this review summarizes the key points of anesthesia management for lung transplant recipients to guide anesthesiologists' clinical practice.
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.
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.
Extracorporeal cardiopulmonary resuscitation (ECPR) is a salvage therapy for patients suffering cardiac arrest refractory to conventional resuscitation, and provides circulatory support in patients who fail to achieve a sustained return of spontaneous circulation. ECPR serves as a bridge therapy that maintains organ perfusion whilst the underlying etiology of the cardiac arrest is determined and treated. Increasing recognition of the survival benefit associated with ECPR has led to increased use of ECPR during the past decade. Commonly used indications for ECPR are: age<70 years, initial rhythm of ventricular fibrillation or ventricular tachycardia, witnessed arrest, bystander cardiopulmonary resuscitation within 5 min, failure to achieve sustained return of spontaneous circulation within 15 min of beginning cardiopulmonary resuscitation. This review provides an overview of ECPR utilization, recent outcomes, risk factors, and complications of ECPR. Identifying ECPR indications, rapid deployment of extracorporeal life support equipment, and high-quality ECPR management strategies are of paramount importance to improve survival.
ObjectiveTo describe the outcomes of extracorporeal membrane oxygenation (ECMO) for patients after aortic surgery and to summarize the experience. Methods The clinical data of patients who received ECMO support after aortic surgery in Fuwai Hospital from 2009 to 2020 were retrospectively analyzed. The patients who received an aortic dissection surgery were allocated into a dissection group, and the other patients were allocated into a non-dissection group. The in-hospital and follow-up survival rates were compared between the two groups, and the causes of death were analyzed. ResultsA total of 22 patients were enrolled, including 17 patients in the dissection group [13 males and 4 females, with a median age of 54 (46, 61) years] and 5 patients in the non-dissection group [3 males and 2 females, with a median age of 51 (41, 65) years]. There was no statistical difference in the age and gender between the two groups (P>0.05). The in-hospital survival rate (11.8% vs. 100.0%, P=0.001) and follow-up survival rate (11.8% vs. 80.0%, P=0.009) of the patients in the dissection group were significantly lower than those in the non-dissection group. The causes of death in the dissection group included massive bleeding and disseminated intravascular coagulation (3 patients), ventricular thrombosis (1 patient), irreversible brain injury (2 patients), visceral malperfusion syndrome (4 patients) and irreversible heart failure (5 patients). ConclusionECMO after aortic dissection surgery is associated with high mortality, which is related to the pathological features of aortic dissection and severely disrupted coagulation system after the surgery. For these patients, strict indication selection and optimal management strategy are important.