Pathophysiologic determinants of third heart sounds: a prospective clinical and Doppler echocardiographic study
C M Tribouilloy1, M Enriquez-Sarano, D Mohty
1Division of Cardiovascular Diseases and Internal Medicine, Mayo Clinic, Rochester, Minnesota 55905, USA.
Insights
An audible third heart sound (S(3)) is a significant indicator of severe hemodynamic alterations and valvular dysfunction. Its presence warrants comprehensive assessment and prompt treatment consideration for patients with heart conditions.
Area of Science:
- Cardiology
- Echocardiography
- Clinical Medicine
Background:
- The third heart sound (S(3)) is a clinical finding that may indicate cardiac dysfunction.
- Its precise association with specific valvular and ventricular pathologies requires further elucidation.
Purpose of the Study:
- To determine the clinical significance of an audible third heart sound (S(3)).
- To investigate the relationship between S(3) and hemodynamic and valvular dysfunction.
Main Methods:
- Prospective enrollment of 580 patients with isolated valvular regurgitation or primary left ventricular dysfunction.
- Analysis of the association between audible S(3) and comprehensive quantitative Doppler echocardiography findings.
Main Results:
- S(3) was more prevalent in patients with left ventricular dysfunction (46%) than in those with mitral (16%) or aortic regurgitation (12%).
- Patients with S(3) exhibited more severe symptoms (Class III-IV), higher pulmonary pressures, and were more likely to have severe regurgitation, restrictive filling, or reduced ejection fraction.
- S(3) served as a marker for severe regurgitation, restrictive filling, marked dilatation, and reduced ejection fraction across different patient groups.
Conclusions:
- An audible S(3) is a crucial clinical sign of significant hemodynamic compromise.
- The presence of S(3) necessitates a thorough evaluation and consideration of aggressive medical or surgical interventions.
Purpose:
We sought to determine the importance of a third heart sound (S(3)) and its relation to hemodynamic and valvular dysfunction.
Subjects And Methods:
We prospectively enrolled 580 patients who had isolated valvular regurgitation (mitral, n = 299; aortic, n = 121) or primary left ventricular dysfunction with or without functional mitral regurgitation (n = 160). We analyzed the associations between the clinical finding of an audible S(3) (as noted in routine clinical practice by internal medicine physicians) and hemodynamic alterations measured by comprehensive quantitative Doppler echocardiography.
Results:
S(3) was more prevalent in patients with primary left ventricular dysfunction (46%, n = 73) than in organic mitral (16%, n = 47) or aortic (12%, n = 14) regurgitation (P <0.001). Patients with an S(3) were more likely to have class III-IV symptoms (55% [74 of 137] vs. 18% [80 of 443] of those without an S(3), P <0.001) and had a higher mean [+/- SD] pulmonary pressure (55 +/- 15 vs. 41 +/- 11 mm Hg, P <0.001). An S(3) was also related to a higher early filling velocity due to a greater filling volume, restrictive filling, or both. An S(3) was a marker of severe regurgitation (regurgitant fraction > or =40%) in patients with primary left ventricular dysfunction (odds ratio [OR] = 2.4; 95% confidence interval [CI]: 1.1 to 5.5), mitral regurgitation (OR = 17; 95% CI: 5.8 to 52), and aortic regurgitation (OR = 7.1; 95% CI: 1.8-28). An S(3) was also associated with restrictive filling in primary left ventricular dysfunction (OR = 3.0; 95% CI, 1.6 to 5.9), marked dilatation in mitral regurgitation (OR = 20; 95% CI: 6.8 to 58), and an ejection fraction (<50%) in aortic regurgitation (OR = 19; 95% CI: 6.0 to 62).
Conclusion:
An audible S(3) is an important clinical finding, indicating severe hemodynamic alterations, and should lead to a comprehensive assessment and consideration of vigorous medical or surgical treatment.
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