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Updated: Oct 3, 2025

Echocardiographic Assessment of Cardiac Anatomy and Function in Adult Rats
Published on: December 13, 2019
Evaluation of right and left ventricular function in patients with ischemic heart disease complicated by mitral
T Yu Kulagina1, V A Sandrikov1, E Yu Van1
1Scientific Institution "Petrovsky national research centre of surgery", Moscow.
Insights
Ischemic heart disease with mitral valve insufficiency significantly impairs left and right ventricular function. Advanced echocardiography strain and vector analyses reveal key indicators of cardiac dysfunction and interventricular interaction disorders.
Area of Science:
- Cardiology
- Cardiac Surgery
- Medical Imaging
Background:
- Ischemic heart disease (IHD) can lead to mitral valve insufficiency (MVI), affecting ventricular function and interaction.
- Preoperative assessment of cardiac function is crucial for surgical planning in IHD patients with MVI.
Purpose of the Study:
- To evaluate right and left ventricular function and their interaction in patients with IHD complicated by MVI.
- To assess the utility of advanced echocardiography techniques, including strain, vector, and diagram analyses, in identifying cardiac dysfunction.
Main Methods:
- Echocardiography (EchoCG) with strain, vector, and diagram analyses was performed on 118 patients (71 with IHD and MVI, 47 with IHD alone).
- Standard EchoCG parameters and postprocessed image data were analyzed to assess global and local ventricular function and interventricular interaction.
Main Results:
- Patients with IHD and MVI showed significantly decreased global and local left ventricular (LV) systolic function and right ventricular (RV) fractional area change (FAC).
- RV FAC strongly inversely correlated with LV diastolic dysfunction and MVI severity in patients with MVI.
- Advanced EchoCG parameters like global longitudinal strain and ventricular volume/area change velocities were informative for assessing RV and LV disorders.
Conclusions:
- Additional left heart chamber overload in ischemic MVI contributes to systemic and pulmonary circulatory disorders.
- Global longitudinal strain, LV volume change velocity, and long axis change velocity are highly informative for LV and RV dysfunction.
- Vector analysis quantifies local myocardial function, with decreased RV free wall displacement velocities indicating systolic and diastolic dysfunction in IHD with MVI.
Abstract:
Aim To evaluate the right and left ventricular function and their interaction in patients with ischemic heart disease (IHD) complicated with mitral valve insufficiency (MVI) according to data of echocardiography (EchoCG) with the strain in gray scale, vector and diagram analyses.Material and methods The study included 118 patients evaluated with EchoCG at the preoperative stage of treatment; 71 of these patients had ischemic MVI (group 1) and 47 patients had uncomplicated IHD (group 2 or comparison group). Mean age of patients was 64±10 years. All patients underwent a surgery in an appropriate volume for myocardial revascularization supplemented with mitral valve plasty or replacement in patients with MVI. Standard EchoCG parameters and data obtained by postprocessing the EchoCG gray-scale images using the strain in gray scale, vector and diagram analyses were evaluated.Results In patients with complicated IHD, both global and local left ventricular (LV) systolic function and the right ventricular (RV) fractional area change (FAC) were significantly decreased. At the same time, there were no significant differences in the tricuspid annular plane systolic excursion (TAPSE) measured in M-mode and in the tricuspid annular systolic wave velocity (VSta), which also characterize the RV systolic function. The global longitudinal strain, the velocities of LV volume change and RV area change, and the long axis change velocity were informative for the right and left chambers, whereas the velocities of LV volume and RV area changes better detected RV disorders. The Pearson's correlation analysis used to identify the most significant parameters of interventricular interaction showed the presence of a strong inverse correlation, in the group of MVI patients, between the RV FAC and the degree of LV diastolic dysfunction (Е / e') - r= -0,62; p=0.000, as well аs the degree of MVI (vena contracta) - r= -0.58; p=0.001. In the comparison group of IHD patients without MVI, the correlation of RV FAC with E / e' was absent (r=0.28; p=0.192). The volume change velocity (dVol / dt) moderately correlated with the RV end-systolic and end-diastolic area in IHD patients but not in IHD patients with MVI. The RV area change velocity (dS / dt) evaluated during systole and diastole moderately significantly correlated with the LV end-diastolic volume.Conclusion Additional overload of left heart chambers in ischemic MVI is a factor that influences the development of the systemic and pulmonary circuit disorders. Recording and evaluation of global longitudinal strain, LV volume change velocity, and long axis change velocity with simultaneous recording of the segmental myocardial displacement velocity serve as highly informative criteria for disorders of LV and RV function. The vector analysis allows quantitative estimation of the local segmental myocardial function. Decreased velocities of the free RV wall segmental displacements during systole and diastole are characteristic of systolic and diastolic dysfunction in patients with IHD complicated with mitral regurgitation.
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