Related Experiment Video
Updated: Jun 5, 2026

Fetal Mouse Cardiovascular Imaging Using a High-frequency Ultrasound (30/45MHZ) System
Published on: May 5, 2018
Caring for the smallest hearts: cardiovascular phenotypes and assessment in tiny babies
Srirupa Hari Gopal1, Shweta Parmekar2, Eugene Dempsey3
1Division of Neonatology, Department of Pediatrics, SSM Health Cardinal Glennon Children's Hospital/Saint Louis University, St Louis, MO, USA. srirupa.harigopal@ssmhealth.com.
Insights
Periviable neonates (≤25 weeks
Area of Science:
- Neonatal cardiology
- Perinatal medicine
- Pediatric critical care
Background:
- Periviable neonates (≤25 weeks' gestation) are a vulnerable population with high cardiopulmonary and vascular risks.
- Immature cardiovascular systems in these neonates lead to complex physiology, hypotension, and poor end-organ perfusion.
- Current hypotension definitions lack validation and do not accurately reflect systemic blood flow in neonates.
Purpose of the Study:
- To review the cardiovascular challenges in periviable neonates.
- To delineate cardiac phenotypes and discuss assessment modalities.
- To identify knowledge gaps and propose a physiology-based management approach.
Main Methods:
- Narrative review of existing literature.
- Focus on cardiovascular challenges during transition to extrauterine life.
- Delineation of cardiac phenotypes and assessment modalities.
Main Results:
- Periviable neonates exhibit unique hemodynamic challenges due to immature cardiovascular systems.
- Hemodynamic phenotypes are influenced by cardiac function, lung compliance, and intracardiac shunts (e.g., PDA).
- Lack of established normative hemodynamic values complicates assessment and management.
Conclusions:
- Optimal care requires early identification of cardiac phenotypes and continuous surveillance.
- A physiology-based management strategy with frequent reassessment is crucial.
- Individualized treatment guided by phenotype and reassessment is essential for periviable neonates.
Abstract:
With improving survival, periviable neonates (≤25 weeks' gestation) represent a dynamic, but under-studied population in neonatal care, with persistently high cardiopulmonary and vascular vulnerability. Immature cardiovascular structure and function as a consequence of immature myocardial architecture, altered calcium handling, relative adrenal insufficiency, and persistent fetal shunts contribute to complex and dynamic cardiovascular physiology in this population. This may be present clinically in the form of hypotension and low end-organ perfusion. Traditional paradigms of blood pressure-based definitions of hypotension are poorly validated in this population and do not accurately reflect systemic blood flow or end-organ perfusion. Emerging evidence supports a phenotype-based multi-parametric approach to cardiovascular assessment, to distinguish ongoing physiological changes such as ductal physiology, pulmonary hypertension, low systemic vascular resistance and primary myocardial dysfunction phenotypes. However, significant knowledge gaps remain, including lack of normative hemodynamic values, and limited evidence guiding pharmacologic therapies. This narrative review focuses on the cardiovascular challenges in the management of periviable neonates as they transition to extrauterine life, delineating cardiac phenotypes, describing modalities of cardiovascular assessment and identifying existing knowledge gaps. We propose a physiology-based approach to cardiovascular management strategies based on existing, albeit limited, evidence. IMPACT: Periviable neonates present unique hemodynamic challenges due to structural and functional cardiovascular system immaturity, which can be categorized into different hemodynamic phenotypes dictated by baseline cardiac function, lung compliance and directionality of intracardiac shunts, especially the patent ductus arteriosus. In the absence of established normative reference values for common modalities of cardiac assessment, optimal care should consist of early identification of cardiac phenotypes, continuous surveillance, physiology-based management strategies, and frequent reassessment to guide individualized treatment.
Related Concept Videos
Cardiomyopathy III: Hypertrophic Cardiomyopathy
Fetal Circulation
Two umbilical arteries transport blood from the fetus to the placenta. At the placenta, the blood absorbs oxygen and nutrients while simultaneously eliminating waste products. This oxygen-enriched and nutrient-rich blood then returns to the fetus through one...

