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Pulmonary Failure (pulmonary + failure)
Selected AbstractsEmergency Use of Extracorporeal Membrane Oxygenation in Cardiopulmonary FailureARTIFICIAL ORGANS, Issue 9 2009Matthias Arlt Abstract Severe pulmonary and cardiopulmonary failure resistant to critical care treatment leads to hypoxemia and hypoxia-dependent organ failure. New treatment options for cardiopulmonary failure are necessary even for patients in outlying medical facilities. If these patients are in need of specialized center treatment, additional emergency medical service has to be carried out quick and safely. We describe our experiences with a pumpless extracorporeal lung assist (PECLA/iLA) for out-of-center emergency treatment of hypercapnic respiratory failure and the use of a newly developed hand-held extracorporeal membrane oxygenation (ECMO) system in cardiac, pulmonary, and cardiopulmonary failure (EMERGENCY-LIFE Support System, ELS System, MAQUET Cardiopulmonary AG, Hechingen, Germany). Between March 2000 and April 2009, we used the PECLA System (n = 20) and the ELS System (n = 33) in adult patients. Cannulation was employed using percutaneous vessel access. The new hand-held ELS System consists of a centrifugal pump and a membrane oxygenator, both mounted on a special holder system for storing on a standard patient gurney for air or ground ambulance transfer. Bedside cannulation processes were uneventful. The PECLA System resulted in sufficient CO2 removal. In all ECMO patients, oxygen delivery and systemic blood flow could be restored and vasopressor support was markedly down. Hospital survival rate in the PECLA group was 50%, and 61% in the ECMO group. Out-of-center emergency treatment of hypercapnic pulmonary failure with pumpless extracorporeal gas exchange and treatment of cardiac, pulmonary, and cardiopulmonary failure with this new hand-held ECMO device is safe and highlyeffective. Patient outcome in cardiopulmonary organ failure could be improved. [source] Extracorporeal membrane oxygenation as a rescue therapy for leukaemic children with pulmonary failureBRITISH JOURNAL OF HAEMATOLOGY, Issue 1 2010Bernhard Meister Summary In patients with leukaemia, acute respiratory distress syndrome (ARDS) secondary to intensified chemotherapy-induced immunosuppression is a devastating disorder resulting in high morbidity and mortality. Compared to standard indications for extracorporeal membrane oxygenation (ECMO), cytopenia further increases the risks of infection and bleeding. We describe the use of ECMO in four children with ARDS and leukaemia. Two patients (50%) survived, pulmonary function recovered and they are in prolonged first remission. The two other patients died from ARDS and pulmonary leukaemic infiltration. Although ECMO support is a high-risk setup for nosocomial infection we observed no additional septic episodes. All patients had a highly increased demand for packed platelet and red blood cell transfusions. This increased demand and unmanageable chronic bleeding into both lungs in one patient were probably caused by a combination of coagulopathy from the primary illness, the use of anticoagulants, chemotherapy-induced cytopenia, and a reduced survival rate of platelets and red cells due to permanent contact to foreign surface. We concluded that ECMO is a supportive tool to reduce the incidence of early death, treatment-related mortality and, ultimately, to improve overall survival in childhood leukaemia. [source] Acute pulmonary failure during remission induction chemotherapy in adults with acute myeloid leukemia or high-risk myelodysplastic syndromeCANCER, Issue 1 2010Ali Al Ameri MD Abstract BACKGROUND: Acute pulmonary failure during remission induction therapy is a serious complication in patients with acute myeloid leukemia (AML). To the authors' knowledge, the course and prognosis of such patients is not well known. METHODS: A total of 1541 patients referred for remission induction chemotherapy of AML or high-risk myelodysplastic syndrome were retrospectively reviewed. RESULTS: A total of 120 (8%) patients developed acute pulmonary failure within 2 weeks of the initiation of chemotherapy; 87 of these patients (73%) died during remission induction, whereas 17 (14%) achieved a complete response. The median survival among the 120 patients with early acute pulmonary failure was 3 weeks. Predictive factors for the development of early acute pulmonary failure by multivariate analysis were: male sex (P = .00038), acute promyelocytic leukemia (P = .00003), poor performance status (P = .001), lung infiltrates at diagnosis (P = .000001), and increased creatinine (P = .000005). Patients who had 0 to 1, 2, 3, or 4 to 5 adverse factors were found to have estimated predictive incidences of acute pulmonary failure of 3%, 13%, 23%, and 34%, respectively. CONCLUSIONS: Preventive approaches at the start of induction therapy in patients at high risk of pulmonary failure may improve the outcome of these patients. Cancer 2010. © 2010 American Cancer Society. [source] |