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2,748 result(s) for "Jung, Jae Seung"
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Neurological monitoring and management for adult extracorporeal membrane oxygenation patients: Extracorporeal Life Support Organization consensus guidelines
Background Critical care of patients on extracorporeal membrane oxygenation (ECMO) with acute brain injury (ABI) is notable for a lack of high-quality clinical evidence. Here, we offer guidelines for neurological care (neurological monitoring and management) of adults during and after ECMO support. Methods These guidelines are based on clinical practice consensus recommendations and scientific statements. We convened an international multidisciplinary consensus panel including 30 clinician-scientists with expertise in ECMO from all chapters of the Extracorporeal Life Support Organization (ELSO). We used a modified Delphi process with three rounds of voting and asked panelists to assess the recommendation levels. Results We identified five key clinical areas needing guidance: (1) neurological monitoring, (2) post-cannulation early physiological targets and ABI, (3) neurological therapy including medical and surgical intervention, (4) neurological prognostication, and (5) neurological follow-up and outcomes. The consensus produced 30 statements and recommendations regarding key clinical areas. We identified several knowledge gaps to shape future research efforts. Conclusions The impact of ABI on morbidity and mortality in ECMO patients is significant. Particularly, early detection and timely intervention are crucial for improving outcomes. These consensus recommendations and scientific statements serve to guide the neurological monitoring and prevention of ABI, and management strategy of ECMO-associated ABI.
Left ventricular unloading during extracorporeal cardiopulmonary resuscitation: a target trial emulation of the ELSO registry
Background Patients who undergo extracorporeal cardiopulmonary resuscitation (ECPR) are at risk of left ventricular distention and complications. There is emerging evidence that concurrent mechanical left ventricular (LV) unloading (e.g. an intra-aortic balloon pump, or microaxial left ventricular assist device) may improve survival. Despite this, there are no large, well-conducted studies investigating the impact of LV unloading on outcomes in ECPR. Methods We queried the Extracorporeal Life Support Organisation (ELSO) registry between 2020 and 2023, and used an emulated target trial framework to investigate the association between concurrent mechanical left ventricular unloading and outcomes in patients receiving ECPR. We imputed missing data using multiple imputation with chained equations, and identified potential confounders implicated in the causal pathway between ECPR and survival time up to 90 days (primary outcome). We used propensity score-matching to adjust for potential confounders, and analysed the primary outcome using a Cox proportional hazards model. We then emulated further target trials based on the inclusion criteria of prior ECPR RCTs to assess whether concurrent unloading was associated with better outcomes based on these criteria. Secondary outcomes included complications from ECPR as classified by ELSO, and survival with favourable functional outcome defined as a Cerebral Performance Category (CPC) 1–2. Results Of the 3,215 patients included in our analysis, we matched 621 pairs of patients who did and did not receive LV unloading. There were no significant differences in survival time between both groups (HR 0.92, 95%-CI 0.79–1.08), nor survival with favourable functional outcomes (OR 1.15, 95%-CI 0.67–1.99). This was concordant across several sensitivity analyses. Of note, LV unloading was associated with a higher rate of renal (OR 1.55, 95%-CI 1.16–2.07) and cardiovascular (OR 1.60, 95%-CI 1.14–2.26) complications. LV unloading was also associated with central nervous system bleeding (OR 1.75, 95%-CI 1.03–2.96), arrhythmias (OR 1.56, 95%-CI 1.04–2.36), and haemolysis (OR 1.85, 95%-CI 1.10–3.09). Conclusions Left ventricular unloading was not associated with improved survival in the context of ECPR and may increase complication rates. Randomised data are required to confirm these findings.
Effect of flow change on brain injury during an experimental model of differential hypoxaemia in cardiogenic shock supported by extracorporeal membrane oxygenation
Differential hypoxaemia (DH) is common in patients supported by femoral veno-arterial extracorporeal membrane oxygenation (V-A ECMO) and can cause cerebral hypoxaemia. To date, no models have studied the direct impact of flow on cerebral damage. We investigated the impact of V-A ECMO flow on brain injury in an ovine model of DH. After inducing severe cardiorespiratory failure and providing ECMO support, we randomised six sheep into two groups: low flow (LF) in which ECMO was set at 2.5 L min −1 ensuring that the brain was entirely perfused by the native heart and lungs, and high flow (HF) in which ECMO was set at 4.5 L min −1 ensuring that the brain was at least partially perfused by ECMO. We used invasive (oxygenation tension—PbTO 2 , and cerebral microdialysis) and non-invasive (near infrared spectroscopy—NIRS) neuromonitoring, and euthanised animals after five hours for histological analysis. Cerebral oxygenation was significantly improved in the HF group as shown by higher PbTO 2 levels (+ 215% vs − 58%, p  = 0.043) and NIRS (67 ± 5% vs 49 ± 4%, p  = 0.003). The HF group showed significantly less severe brain injury than the LF group in terms of neuronal shrinkage, congestion and perivascular oedema ( p  < 0.0001 ) . Cerebral microdialysis values in the LF group all reached the pathological thresholds, even though no statistical difference was found between the two groups. Differential hypoxaemia can lead to cerebral damage after only a few hours and mandates a thorough neuromonitoring of patients. An increase in ECMO flow was an effective strategy to reduce such damages.
Improvement in the survival rates of extracorporeal membrane oxygenation-supported respiratory failure patients: a multicenter retrospective study in Korean patients
Background Although the utilization of extracorporeal membrane oxygenation (ECMO) is increasing and its technology is evolving, only a few epidemiologic reports have described the uses and outcomes of ECMO. The aim of this study was to investigate the changes in utilization and survival rate in patients supported with ECMO for severe respiratory failure in Korea. Methods This was a multicenter study on consecutive patients who underwent ECMO across 16 hospitals in Korea. The records of all patients who required ECMO for acute respiratory failure between 2012 and 2015 were retrospectively reviewed, and the utilization of ECMO was analyzed over time. Results During the study period, 5552 patients received ECMO in Korea as a whole, and a total of 2472 patients received ECMO at the participating 16 hospitals. We analyzed 487 (19.7%) patients who received ECMO for respiratory failure. The number of ECMO procedures provided for respiratory failure increased from 104 to 153 during the study period. The in-hospital survival rate increased from 30.8% to 35.9%. The use of prone positioning increased from 6.8% to 49.0% ( p  < 0.001), and the use of neuromuscular blockers also increased from 28.2% to 58.2% ( p  < 0.001). Multiple regression analysis showed that old age (OR 1.038 (95% CI 1.022, 1.054)), use of corticosteroid (OR 2.251 (95% CI 1.153, 4.397)), continuous renal replacement therapy (OR 2.196 (95% CI 1.135, 4.247)), driving pressure (OR 1.072 (95% CI 1.031, 1.114)), and prolonged ECMO duration (OR 1.020 (95% CI 1.003, 1.038)) were associated with increased odds of mortality. Conclusions Utilization of ECMO and survival rates of patients who received ECMO for respiratory failure increased over time in Korea. The use of pre-ECMO prone positioning and neuromuscular blockers also increased during the same period.
An innovative ovine model of severe cardiopulmonary failure supported by veno-arterial extracorporeal membrane oxygenation
Refractory cardiogenic shock (CS) often requires veno-arterial extracorporeal membrane oxygenation (VA-ECMO) to sustain end-organ perfusion. Current animal models result in heterogenous cardiac injury and frequent episodes of refractory ventricular fibrillation. Thus, we aimed to develop an innovative, clinically relevant, and titratable model of severe cardiopulmonary failure. Six sheep (60 ± 6 kg) were anaesthetized and mechanically ventilated. VA-ECMO was commenced and CS was induced through intramyocardial injections of ethanol. Then, hypoxemic/hypercapnic pulmonary failure was achieved, through substantial decrease in ventilatory support. Echocardiography was used to compute left ventricular fractional area change (LVFAC) and cardiac Troponin I (cTnI) was quantified. After 5 h, the animals were euthanised and the heart was retrieved for histological evaluations. Ethanol (58 ± 23 mL) successfully induced CS in all animals. cTnI levels increased near 5000-fold. CS was confirmed by a drop in systolic blood pressure to 67 ± 14 mmHg, while lactate increased to 4.7 ± 0.9 mmol/L and LVFAC decreased to 16 ± 7%. Myocardial samples corroborated extensive cellular necrosis and inflammatory infiltrates. In conclusion, we present an innovative ovine model of severe cardiopulmonary failure in animals on VA-ECMO. This model could be essential to further characterize CS and develop future treatments.
Application of anti-inflammatory treatment in two different ovine Acute Respiratory Distress Syndrome injury models: a preclinical randomized intervention study
Whilst the presence of 2 subphenotypes among the heterogenous Acute Respiratory Distress Syndrome (ARDS) population is becoming clinically accepted, subphenotype-specific treatment efficacy has yet to be prospectively tested. We investigated anti-inflammatory treatment in different ARDS models in sheep, previously shown similarities to human ARDS subphenotypes, in a preclinical, randomized, blinded study. Thirty anesthetized sheep were studied up to 48 h and randomized into: (a) OA: oleic acid (n = 15) and (b) OA-LPS: oleic acid and subsequent lipopolysaccharide (n = 15) to achieve a PaO 2 /FiO 2 ratio of < 150 mmHg. Then, animals were randomly allocated to receive treatment with methylprednisolone or erythromycin or none. Assessed outcomes were oxygenation, pulmonary mechanics, hemodynamics and survival. All animals reached ARDS. Treatment with methylprednisolone, but not erythromycin, provided the highest therapeutic benefit in Ph2 animals, leading to a significant increase in PaO 2 /FiO 2 ratio by reducing pulmonary edema, dead space ventilation and shunt fraction. Animals treated with methylprednisolone displayed a higher survival up to 48 h than all others. In animals treated with erythromycin, there was no treatment benefit regarding assessed physiological parameters and survival in both phenotypes. Treatment with methylprednisolone improves oxygenation and survival, more so in ovine phenotype 2 which resembles the human hyperinflammatory subphenotype.
Impact of Improved End-Stage Renal Disease Patient Survival on Prosthetic Valve Selection in Aortic Valve Replacement: A Nationwide Cohort Analysis
Background: Earlier studies in patients with end-stage renal dysfunction (ESRD) reported no significant difference in long-term outcomes between mechanical and tissue valves after valve surgery, largely due to the limited life expectancy of this population. As survival in patients with ESRD has improved in recent years, this study evaluated whether increased life expectancy affects long-term outcomes according to valve type in patients with ESRD undergoing aortic valve replacement (AVR) using a nationwide cohort. Methods: We analyzed data from the Korean National Health Insurance Service database from January 2005 to December 2021. Among 474 patients with ESRD who underwent AVR, 279 received tissue valves and 195 received mechanical valves. Propensity score matching was performed to balance baseline characteristics, yielding 99 matched patient pairs. Results: In the matched cohort, early mortality (within 30 days) was significantly higher in the tissue valve group (16.2% vs. 4.0%; p = 0.008). However, long-term survival rates at 1, 5, and 10 years did not differ significantly between the groups (all p > 0.05). Stratification by operative era (2005–2013 vs. 2014–2021) similarly showed no significant impact of valve type on survival despite temporal advances in care. Conclusions: Long-term survival and complication rates after AVR in patients with ESRD were comparable between mechanical and tissue valves across operative eras. Valve selection should be guided by shared decision-making, incorporating individual life expectancy and comorbidity profiles rather than assuming mechanical valves as the default option.
Clinical outcomes of patients receiving prolonged extracorporeal membrane oxygenation for respiratory support
Background: There are limited data regarding prolonged extracorporeal membrane oxygenation (ECMO) support, despite increase in ECMO use and duration in patients with respiratory failure. The objective of this study was to investigate the outcomes of severe acute respiratory failure patients supported with prolonged ECMO for more than 28 days. Methods: Between January 2012 and December 2015, all consecutive adult patients with severe acute respiratory failure who underwent ECMO for respiratory support at 16 tertiary or university-affiliated hospitals in South Korea were enrolled retrospectively. The patients were divided into two groups: short-term group defined as ECMO for ⩽28 days and long-term group defined as ECMO for more than 28 days. In-hospital and 6-month mortalities were compared between the two groups. Results: A total of 487 patients received ECMO support for acute respiratory failure during the study period, and the median support duration was 8 days (4–20 days). Of these patients, 411 (84.4%) received ECMO support for ⩽28 days (short-term group), and 76 (15.6%) received support for more than 28 days (long-term group). The proportion of acute exacerbation of interstitial lung disease as a cause of respiratory failure was higher in the long-term group than in the short-term group (22.4% versus 7.5%, p < 0.001), and the duration of mechanical ventilation before ECMO was longer (4 days versus 1 day, p < 0.001). The hospital mortality rate (60.8% versus 69.7%, p = 0.141) and the 6-month mortality rate (66.2% versus 74.0%, p = 0.196) were not different between the two groups. ECMO support longer than 28 days was not associated with hospital mortality in univariable and multivariable analyses. Conclusions: Short- and long-term survival rates among patients receiving ECMO support for more than 28 days for severe acute respiratory failure were not worse than those among patients receiving ECMO for 28 days or less.
Association between Systolic Blood Pressure Variability and Incident Aortic Stenosis
Background: This study investigated the potential link between blood pressure variability (BPV) and the incidence of aortic stenosis (AS) using Korean National Health Insurance Service data from 2002 to 2019. Methods: We collected annual systolic blood pressure variability (SBPV) measurements consisting of three consecutive blood pressure readings each year over three years. The obtained SBPV data was divided into five quantiles, with the highest quintile representing a high fluctuation of blood pressure. Results: Analyzing 9,341,629 individuals with a mean age of 40.7 years, the study found 3981 new AS diagnoses during an average 8.66-year follow-up. Independent predictors for AS included higher blood pressure levels and elevated systolic blood pressure variability (SBPV). The hazard ratios (HR) for different SBPV quintiles compared to the reference (1st quintile) were as follows: 2nd quintile HR 1.09 (p = 0.18), 3rd quintile HR 1.13 (p = 0.04), 4th quintile HR 1.13 (p = 0.04), and 5th quintile HR 1.39 (p < 0.001). Conclusion: Our findings suggest that both hypertension and high fluctuations in SBP during consecutive visits are associated with an increased risk of incident AS. These results emphasize the importance of blood pressure management and stability in the prevention of AS.