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Endotoxin Activity Assay for the Detection of Whole Blood Endotoxemia in Critically Ill Patients
Published on: June 24, 2019
Loading conditions rather than contractility primarily determine biventricular ejection fraction in endotoxic shock
Manuel Ignacio Monge García1, Brennan Schneider2, George Ma2
1Critical Care and Emergency Department, Hospital Universitario de Puerto Real, Puerto Real, Spain.
Abstract:
Ejection fraction (EF) is widely used to assess cardiac function in sepsis, yet it is inherently load-dependent and may not reflect intrinsic contractility. We quantified the relative contribution of hemodynamic determinants to left (LVEF) and right ventricular EF (RVEF) in a porcine model of endotoxic shock. Twelve female pigs were instrumented with biventricular conductance catheters and studied at four stages: baseline, endotoxic shock, fluid resuscitation, and norepinephrine infusion. Six candidate determinants [effective arterial elastance (Ea), end-systolic elastance (Ees), end-diastolic volume (EDV), heart rate (HR), the time constant of isovolumic relaxation (τ), and internal flow fraction (IFF)] were evaluated using centering within clusters linear mixed models (LV: 12 animals; RV: 9 animals). Ea, EDV, and Ees were the dominant determinants of LVEF, accounting for 31%, 27%, and 19% of explained variance (combined: 77%), whereas HR exerted a negative effect. For RVEF, predictor importance was more evenly distributed, with EDV and Ea as the leading contributors in dominance analysis; HR was positively associated with RVEF, opposite to its LV effect. This loading-dominant hierarchy persisted when Ees was replaced by alternative load-independent indices: preload-recruitable stroke work (PRSW) and Starling contractility index (SCI). Despite substantial stage-to-stage changes in preload, afterload, and contractility, EF varied within a narrow range (LVEF: 37%-45%; RVEF: 50%-60%), reflecting offsetting changes among determinants. Within this pressure-volume framework, loading conditions rather than contractility were the primary within-animal determinants of LVEF during endotoxic shock. The RV data were consistent with a similar hierarchy, although with differing determinant profiles and greater analytical uncertainty.NEW & NOTEWORTHY This study provides a simultaneous quantification of six hemodynamic determinants of both left and right ventricular ejection fraction during endotoxic shock and resuscitation using biventricular pressure-volume analysis. Loading conditions dominated over contractility, and the determinant hierarchy differed between ventricles.
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