Abstract 4365395: Comparison of Echocardiographic Pulmonary Artery Pressures to Pulmonary Artery Catheter Pulmonary Pressures in Patients on Peripheral VA-ECMO in an Academic Tertiary Care Hospital

T Trevor Wyand (MedStar Georgetown, Washington, District of Columbia, United States) M Marc El Khoury (MedStar Washington Hospital Center, Washington, District of Columbia, United States) S Shriya Khurana (MedStar Washington Hospital Center, Washington, District of Columbia, United States) S Shuchi Abhishek (MedStar Washington Hospital Center, Washington, District of Columbia, United States) M Maxwell Hockstein (MedStar Washington Hospital Center, Washington, District of Columbia, United States)

Abstract

Introduction: In patients requiring extracorporeal membrane oxygenation (ECMO), monitoring pulmonary artery systolic pressure (PASP) and assessing right ventricular (RV) function is crucial for guiding management. While transthoracic echocardiography offers noninvasive estimation of PASP (ePASP), its accuracy is not validated in ECMO patients. Direct pressure transduction is the gold standard for measuring true PASP (tPASP); however, its use carries risks, including infection, thrombosis, and mechanical complications. Given the invasive nature of PAC placement, an accurate noninvasive alternative could significantly reduce patient morbidity. Methods: This is a retrospective observational study of patients who underwent peripheral VA-ECMO and received an echocardiogram, at MedStar Washington Hospital Center, between 1 January 2014 to 31 December 2024. Patients were included if they had an echocardiogram estimated PASP measurement within 1 hour of a directly transduced pressure measurement while on peripheral VA-ECMO. Exclusion criteria included patients on central VA-ECMO or VV-ECMO, insufficient TR jet to calculate PASP and patients with measurements more than 1 hour apart. Outcomes were modeled with R for statistical computing, using a spearman’s rank correlation, a mixed linear model. Results: 51 patients met study inclusion criteria. From the spearman’s rank correlation model, there was a strong positive correlation between ePASP and tPASP (ρ=0.73, p <0.001). In a linear mixed-effects model, ePASP was significantly associated with tPASP (β=0.81, 95% CI:0.64-0.98, p <0.001), with a marginal R 2 =0.647 and conditional R 2 =0.998. There was no correlation between the ECMO flow rate and ΔPASP, defined as ePASP - tPASP. Discussion: This retrospective observational study demonstrates a positive correlation between ePASP and tPASP in patients on VA-ECMO. The model demonstrated excellent fit, with R 2 values suggesting that both fixed and random effects accounted for nearly all observed variability. Our data suggest echocardiographic estimation of PASP remains accurate irrespective of ECMO flow rate. Future research is warranted to support broader adoption of echocardiography for hemodynamic assessment in VA-ECMO patients. Validating the reliability of echocardiographic estimates could support broader adoption of echocardiography for hemodynamic assessment in ECMO patients, minimizing the need for invasive monitoring and its associated risks.

Article Details

Journal Circulation
Volume / Issue Vol. 152, Issue Suppl_3
Published November 04, 2025
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (5)

T

Trevor Wyand

MedStar Georgetown, Washington, District of Columbia, United States

M

Marc El Khoury

MedStar Washington Hospital Center, Washington, District of Columbia, United States

S

Shriya Khurana

MedStar Washington Hospital Center, Washington, District of Columbia, United States

S

Shuchi Abhishek

MedStar Washington Hospital Center, Washington, District of Columbia, United States

M

Maxwell Hockstein

MedStar Washington Hospital Center, Washington, District of Columbia, United States