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Impact of Transaortic Valve Flow Velocity on the Development of Systolic Heart Murmurs
Daiki Hirayama1,2, Susumu Manabe1, Norihisa Yuge1
1Department of Cardiovascular Surgery, International University of Health and Welfare Narita Hospital Chiba Japan.
Insights
Accelerated transaortic valve flow velocity is a key factor in systolic heart murmurs. This finding helps differentiate innocent murmurs from those indicating aortic stenosis, improving diagnostic accuracy.
Area of Science:
- Cardiology
- Echocardiography
- Valvular Heart Disease
Background:
- Cardiac auscultation is vital for detecting valvular heart disease.
- Innocent heart murmurs can lead to false positives in auscultation.
- Accelerated transaortic valve flow velocity contributes to systolic murmurs.
Purpose of the Study:
- Investigate the influence of transaortic valve flow velocity on systolic heart murmurs.
- Determine the diagnostic value of transaortic flow velocity in identifying murmurs.
Main Methods:
- Echocardiography performed on 571 patients.
- Cardiac auscultation to detect systolic heart murmurs.
- Analysis of maximum transaortic valve flow velocity in relation to murmur presence.
Main Results:
- Systolic murmurs detected in 18.0% of patients.
- Higher maximum transaortic valve flow velocity in patients with murmurs (2.02 m/s vs. 1.34 m/s).
- A velocity cutoff of 1.7 m/s predicted murmurs with 65% sensitivity and 88% specificity.
- Flow velocity independently predicted systolic heart murmurs (HR, 9.18).
Conclusions:
- Accelerated transaortic valve flow velocity is a significant determinant of systolic heart murmurs.
- Murmurs can occur at flow velocities below the aortic stenosis threshold, indicating innocent murmurs.
Background:
Although cardiac auscultation plays an essential role in detecting valvular heart diseases, false-positive rates due to innocent heart murmurs remain a concern because accelerated transaortic valve blood flow can be a major contributor to systolic heart murmurs. In this study we investigated the effect of transaortic valve flow velocity on the development of systolic heart murmurs.
Methods And Results:
Cardiac auscultation was performed in 571 patients referred for echocardiography and systolic heart murmur was detected in 103 (18.0%). Maximum transaortic valve flow velocity was higher in patients with murmurs than in those without (2.02 vs. 1.34 m/s, P<0.001; area under the receiver operating characteristic curve, 0.82). A cutoff maximum transaortic flow velocity of 1.7 m/s predicted systolic heart murmurs (sensitivity, 65%; specificity, 88%). The incidence of heart murmur was associated with higher maximum transaortic valve flow velocity (<1.7 m/s, 7.3%; 1.7-2.5 m/s, 50.0%; >2.5 m/s, 73.5%). Multivariate analysis revealed the maximum transaortic valve flow velocity as an independent predictor of systolic heart murmurs (hazard ratio, 9.18; 95% confidence interval, 5.35-15.75; P<0.001).
Conclusions:
Accelerated transaortic valve flow velocity is an important determinant of systolic heart murmurs. Systolic heart murmurs can be heard before the transaortic valve flow velocity reaches the clinically significant aortic stenosis criterion, which can constitute a considerable number of innocent heart murmurs.
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