Heart in Distress: How Different Shock States Converge on Cardiac Dysfunction

Shock is traditionally classified according to its primary etiology—septic, hypovolemic, obstructive, or cardiogenic—yet these syndromes frequently converge on a common feature: disturbances of cardiac performance, ventricular loading, and tissue perfusion. Despite distinct initiating mechanisms, altered preload and afterload, ventricular interdependence, vascular dysfunction, maladaptive neurohormonal responses, and, in selected states, impaired myocardial contractility may ultimately reduce effective forward flow and tissue perfusion. Echocardiography provides a rapid, noninvasive bedside tool for characterizing these evolving cardiovascular effects. It enables assessment of left and right ventricular function, cardiac filling, preload responsiveness, pulmonary and systemic venous congestion, fluid tolerance, and broader hemodynamic profiles while facilitating recognition of reversible causes such as cardiac tamponade, acute pulmonary embolism, or severe hypovolemia. This allows clinicians to move beyond static etiologic classifications toward a physiology-based assessment of shock. Beyond diagnosis, echocardiography can inform fluid resuscitation and vasoactive or inotropic therapy. Serial assessment also permits evaluation of therapeutic response and evolving hemodynamic phenotypes. This review synthesizes the mechanisms of cardiac involvement across shock syndromes and highlights echocardiography as a unifying tool for their evaluation and management. By integrating pathophysiology, bedside imaging, and hemodynamic treatment, we propose a physiology-based framework that complements traditional shock classification and may improve diagnostic precision and individualized management in critically ill patients.

Authors

Institutions

Publication Details

Journal
Biomedicines
Published
2026-09-24
DOI
https://doi.org/10.3390/biomedicines14102157
Primary Topic
Hemodynamic Monitoring and Therapy
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Heart in Distress: How Different Shock States Converge on Cardiac Dysfunction

George Ε. Zakynthinos, Savvas Sarantos, Dionysios Tsoukalas, Antonios Lysandrou et al.
Biomedicines
Hemodynamic Monitoring and Therapy
article

Heart in Distress: How Different Shock States Converge on Cardiac Dysfunction

George Ε. Zakynthinos, Savvas Sarantos, Dionysios Tsoukalas, Antonios Lysandrou, Ioannis Gialamas, Evangelos K. Oikonomou, Niki Tripyla, Nikolaos K. Kokkinos, Ourania Katsarou, Gerasimos Siasos
article en

Abstract

Shock is traditionally classified according to its primary etiology—septic, hypovolemic, obstructive, or cardiogenic—yet these syndromes frequently converge on a common feature: disturbances of cardiac performance, ventricular loading, and tissue perfusion. Despite distinct initiating mechanisms, altered preload and afterload, ventricular interdependence, vascular dysfunction, maladaptive neurohormonal responses, and, in selected states, impaired myocardial contractility may ultimately reduce effective forward flow and tissue perfusion. Echocardiography provides a rapid, noninvasive bedside tool for characterizing these evolving cardiovascular effects. It enables assessment of left and right ventricular function, cardiac filling, preload responsiveness, pulmonary and systemic venous congestion, fluid tolerance, and broader hemodynamic profiles while facilitating recognition of reversible causes such as cardiac tamponade, acute pulmonary embolism, or severe hypovolemia. This allows clinicians to move beyond static etiologic classifications toward a physiology-based assessment of shock. Beyond diagnosis, echocardiography can inform fluid resuscitation and vasoactive or inotropic therapy. Serial assessment also permits evaluation of therapeutic response and evolving hemodynamic phenotypes. This review synthesizes the mechanisms of cardiac involvement across shock syndromes and highlights echocardiography as a unifying tool for their evaluation and management. By integrating pathophysiology, bedside imaging, and hemodynamic treatment, we propose a physiology-based framework that complements traditional shock classification and may improve diagnostic precision and individualized management in critically ill patients.

BiomedicinesVol. 14(10)
Sotiria General Hospital (GR)
Good health and well-being
Openalex Percentile: Top 9%
Hemodynamic Monitoring and Therapy
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.