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Analysis of pulmonary venous flow velocity patterns in hypertensive hearts: its complementary value in the
T Masuyama1, J M Lee, K Yamamoto
1First Department of Medicine, Osaka University School of Medicine, Japan.
Insights
Pulmonary venous flow patterns offer a more reliable assessment of hypertension subgroups than mitral flow patterns. Combining both provides crucial complementary diagnostic information for heart failure patients.
Area of Science:
- Cardiology
- Medical Imaging
- Hemodynamics
Background:
- Mitral flow velocity patterns can normalize in heart failure, complicating diastolic dysfunction assessment.
- Hypertension is a significant risk factor for heart failure and diastolic dysfunction.
Purpose of the Study:
- To investigate if pulmonary venous flow velocity patterns offer complementary diagnostic information to mitral flow patterns.
- To differentiate hypertensive patients with and without heart failure using Doppler flow patterns.
Main Methods:
- Characterized pulmonary venous and mitral flow velocity patterns in 43 hypertensive patients (with/without heart failure) and 24 normal subjects.
- Analyzed peak early diastolic filling velocity (E), E/A ratio, peak diastolic forward flow velocity (D), and systolic/diastolic (S/D) ratio.
Main Results:
- Mitral flow patterns were 'normalized' in heart failure patients, similar to normal subjects.
- Hypertensive patients without heart failure showed decreased D and increased S/D ratio.
- Heart failure patients exhibited higher D and lower S/D ratio compared to non-heart failure hypertensive patients and normal subjects.
Conclusions:
- Pulmonary venous flow velocity patterns are more reliable than mitral flow patterns for differentiating hypertensive subgroups.
- Combined analysis of pulmonary and mitral flow patterns provides essential complementary information for interpreting diastolic function in hypertensive patients with or without heart failure.
Abstract:
Although the Doppler mitral flow velocity pattern changes in accordance with the degree of left ventricular diastolic dysfunction, it is "normalized" in the presence of heart failure. In this study the pulmonary venous flow velocity pattern was characterized in 43 hypertensive patients with and without heart failure to clarify whether analysis of the pulmonary venous flow velocity pattern provides complementary information in the interpretation of the mitral flow velocity pattern. The mitral flow velocity pattern in 32 hypertensive patients without heart failure was characterized by decreases in the peak early diastolic filling velocity (E) and the ratio of E to peak filling velocity at atrial contraction. The mitral flow velocity pattern was "normalized" in 11 patients with heart failure, with no differences in any mitral flow velocity pattern indexes as compared with 24 normal subjects. The pulmonary venous flow velocity pattern in hypertensive patients without heart failure was characterized by a decreased peak diastolic forward flow velocity (D) and an increased ratio of peak systolic forward flow velocity (S) to D (S/D ratio). In patients with heart failure, D was higher and the S/D ratio was lower compared with hypertensive patients without heart failure (p less than 0.01, p less than 0.01) and normal subjects (p less than 0.01, p less than 0.01). Thus the pulmonary venous flow velocity pattern appeared to be more reliable than the mitral flow velocity pattern in differentiating subgroups of patients with hypertension. Analysis of the pulmonary venous flow velocity pattern in conjunction with the mitral flow velocity pattern provides important and complementary information in the interpretation of the mitral flow velocity pattern in hypertensive patients with and without heart failure.
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