Related Experiment Video
Updated: Jun 17, 2025

Point-of-Care Ultrasound for Peripheral Veno-Arterial Extracorporeal Membrane Oxygenation Without Left Ventricular Venting
Published on: January 17, 2025
Defining the Cross-Volume Effect of Extracorporeal Life Support on Outcomes of Cardiogenic Shock
Amulya Vadlakonda1, Joanna Curry1, Ryan J Vela2
1Cardiovascular Outcomes Research Laboratories (CORELAB), David Geffen School of Medicine at UCLA, Los Angeles, California.
Background:
Cardiogenic shock (CS) remains a leading cause of mortality despite advancements in mechanical circulatory support and other management strategies. In particular, venoarterial extracorporeal membrane oxygenation (ECMO) requires expertise in cardiac surgery, cardiology, and critical care. The benefits of such expertise may extend beyond patients undergoing ECMO.
Methods:
Hospitalizations in adults (aged ≥18 years) with a primary diagnosis of CS who were not undergoing ECMO, cardiac operations, durable left ventricular assist device therapy, or heart transplantation were abstracted from the 2016-2020 Nationwide Readmissions Database. Multivariable regression models were developed to assess the association of cardiac surgical and ECMO institutional caseload with clinical and financial outcomes.
Results:
Of an estimated 70,339 patients with CS identified for study, 33,643 (47.8%) were treated at a high-volume hospital for ECMO (HVH-ECMO). HVH-ECMO was associated with decreased odds of in-hospital mortality (adjusted odds ratio [aOR], 0.85; 95% CI, 0.75-0.95), respiratory complications (aOR, 0.86; 95% CI, 0.79-0.94), and nonhome discharge (aOR, 0.86; 95% CI, 0.79-0.94). However, HVH-ECMO was associated with a longer length of stay by 1.7 days (95% CI, 1.3-2.1) and higher inpatient costs by $9170 (95% CI, $6,490-$12,060). Although ECMO volume was inversely associated with the predicted risk of in-hospital mortality, institutional volume of cardiac operations was not significantly associated with mortality.
Conclusions:
Our findings suggest improved outcomes for patients with CS who were treated at an HVH-ECMO. Multidisciplinary care pathways, including those among surgery, cardiology, and critical care, may influence CS management. Further studies are needed to characterize long-term outcomes of regionalization and ensure equitable access for all populations.
Related Concept Videos
Cardiac Output II: Effect of Stroke Volume on Cardiac Output
Preload
Preload refers to the initial elongation of the cardiac myocytes before contraction and is related to the volume of blood filling the heart at the end of diastole, or end-diastolic volume. The...
Cardiac Output I:Effect of Heart Rate on Cardiac Output
Cardiac output (CO) refers to the total amount of blood ejected by one of the ventricles in liters per minute (L/min). In a resting adult, CO ranges from 5 to 6 L/min, adjusting according to the body's metabolic requirements.
Effect of Heart Rate on Cardiac Output
Cardiac output adapts to metabolic demands during stress, physical activity, or illness. The autonomic nervous system regulates heart rate via the sinoatrial node. The parasympathetic nervous system decreases heart...
Cardiac Output and Stroke Volume
In an average resting adult male, the typical cardiac...
Imbalances in Cardiac Output
CHF can occur due to the failure of either side of the heart. Left-side failure leads to pulmonary congestion—the right side continues to send...
Exercise and Cardiac Output
Sustained exercise increases the muscles' oxygen demand, which can be...
Regulation of Stroke Volume
Preload refers to the degree of stretch on the heart before it contracts. It's analogous to the stretching of a rubber band; the more it's stretched, the more forcefully it snaps back. This concept is encapsulated in the Frank-Starling law of the...

