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Updated: Aug 19, 2026

Echocardiographic Assessment of Cardiac Anatomy and Function in Adult Rats
Published on: December 13, 2019
[Right ventricular function: physiological and physiopathological features]
J Stephanazzi1, C Guidon-Attali, J Escarment
1Centre de traitement des brûlés (Dr Carsin), HIA Percy, Clamart, France.
Insights
The right ventricle
Area of Science:
- Cardiovascular Physiology
- Cardiac Anatomy
Context:
- The right ventricle comprises distinct sinus and conus regions.
- Right ventricular function is influenced by coronary perfusion and ventricular interactions.
Purpose:
- To elucidate the distinct anatomical and functional roles of the right ventricular sinus and conus.
- To explore factors influencing right ventricular performance, including coronary circulation and left ventricular interactions.
Summary:
- The right ventricle's sinus acts as a flow generator, while the conus regulates pressure.
- Right ventricular performance is contingent on heart rate, contractility, loading conditions, and left ventricular influence.
- Pressure and volume overload can precipitate right ventricular failure, characterized by dilation, ischemia, and reduced cardiac output.
Impact:
- Understanding these dynamics is crucial for managing right ventricular failure.
- Accurate assessment of right ventricular afterload and the impact of interventions like vasodilators remains challenging.
- Effective treatment strategies focus on addressing the underlying cause and supporting systemic pressure and biventricular contractility.
Abstract:
Sinus and conus constitute the two cavities of the right ventricle. They are anatomically and functionally different. The sinus is a flow-generator and the conus a pressure-regulator. The coronary circulation of the right ventricle is provided by the right coronary artery and the left anterior descending artery. The right ventricle is perfused during systole and diastole. When oxygen demand increases, coronary arteries dilate and oxygen extraction rises. As for the left ventricle, right ventricular performance depends upon heart rate, rhythm, contractility and loading conditions. Ventricular interactions are very important for right ventricular function. Loading conditions and contractility of the left ventricle are of major significance for right ventricular performance. For the right ventricle, the end of the ejection is different from the end of the active contraction. The time between them allows to achieve ventricular emptying. This duration is linked to afterload. Presently, it is impossible to accurately and simply assess these conditions. Pressure and volume overloadings result in right ventricular failure. They are responsible for ventricular dilation and ischaemia with a decrease in cardiac output, generating a vicious circle. Treatment includes the removal of the cause, and the maintenance of systemic arterial pressure and biventricular contractility. It is difficult to assess the effects of intravenous vasodilators on right ventricular afterload.
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