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Updated: Apr 26, 2026

Murine Fetal Echocardiography
Published on: February 15, 2013
The new concept of univentricular heart
Carla Frescura1, Gaetano Thiene1
1Cardiovascular Pathology, Department of Cardiac Thoracic and Vascular Sciences, University of Padua Medical School , Padua , Italy.
Insights
Univentricular heart conditions, including functional types, require single-ventricle surgical repair like the Fontan operation. This approach bypasses the ventricular mass for systemic circulation.
Area of Science:
- Pediatric Cardiology
- Congenital Heart Disease
- Cardiac Surgery
Background:
- The definition of univentricular heart has evolved to include conditions not amenable to biventricular repair.
- Functional univentricular hearts encompass hypoplastic ventricles and rare cardiac anomalies.
- These conditions necessitate surgical strategies that utilize a single ventricle for systemic circulation.
Purpose of the Study:
- To clarify the evolving concept of univentricular heart.
- To describe the spectrum of conditions classified as univentricular hearts.
- To highlight the surgical implications, particularly the Fontan operation.
Main Methods:
- Review of the evolving definition and classification of univentricular heart.
- Analysis of anatomical variations including double inlet and absent atrioventricular connections.
- Discussion of ventriculo-arterial connections and associated anomalies.
Main Results:
- Univentricular heart encompasses hearts with one ventricle or those requiring single-ventricle repair.
- Functional univentricular hearts include hypoplastic ventricles and complex cardiac tumors or anomalies.
- Surgical repair often involves the Fontan operation, bypassing the ventricular mass.
Conclusions:
- The concept of univentricular heart is broad, including anatomical and functional definitions.
- Accurate diagnosis and classification are crucial for appropriate surgical management.
- The Fontan operation remains a key intervention for univentricular heart physiology.
Abstract:
The concept of univentricular heart moved from hearts with only one ventricle connected with atria [double inlet ventricle or absent atrioventricular (AV) connection] to hearts not amenable to biventricular repair, namely hearts with two ventricles unable to sustain separately pulmonary and systemic circulations in sequence. In the latter definition, even hearts with one hypoplastic ventricle are considered "functional" univentricular hearts. They include pulmonary/aortic atresia or severe stenosis with hypoplastic ventricle, and rare conditions like huge intramural cardiac tumors and Ebstein anomaly with extreme atrialization of right ventricular cavity. In this setting, the surgical repair is univentricular with "Fontan" operation, bypassing the ventricular mass. In other words, functionally univentricular heart is a condition in which, after surgery, only one ventricle sustain systemic circulation. Univentricular hearts (double inlet or absent AV connection) almost invariably show two ventricular chambers, one main and one accessory, which lacks an inlet portion. The latter is located posteriorly when morphologically left and anteriorly when morphologically right. As far as double inlet left ventricle, this is usually associated with discordant ventriculo-arterial (VA) connection (transposition of the great arteries) and all the blood flow to the aorta, which takes origin from the hypoplastic anterior right ventricle, is ventricular septal defect (bulbo-ventricular foramen) dependent. If restrictive, an aortic arch obstruction may be present. Double inlet left ventricle may be rarely associated with VA concordance (Holmes heart). As far as double inlet right ventricle with posterior hypoplastic left ventricular cavity, ventriculo-arterial connection is usually of double outlet type; thus the term double inlet-outlet right ventricle may be coined. Absent right or left AV connection may develop in the setting of both d- or l-loop, whatever the situs. In this condition, the contra-lateral patent AV valve may be either mitral or tricuspid in terms of morphology and the underlying ventricle (main chamber) either morphologically left or right. Establishing the loop, whatever right or left (also called right or left ventricular topology), is a fundamental step in the segmental-sequential analysis of congenital heart disease.
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