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"Pure" diastolic dysfunction is associated with long-axis systolic dysfunction. Implications for the diagnosis and
Dragos Vinereanu1, Eleftherios Nicolaides, Ann C Tweddel
1Wales Heart Research Institute, University of Wales College of Medicine, Heath Park, Cardiff CF14 4XN, United Kingdom.
Insights
Impaired diastolic function in the left ventricle is linked to reduced longitudinal systolic function, even with normal ejection fraction. This suggests a need to revise heart failure definitions and diagnostic approaches.
Area of Science:
- Cardiology
- Echocardiography
- Heart Failure Research
Background:
- Diastolic dysfunction, characterized by impaired left ventricular filling with preserved ejection fraction, is increasingly recognized.
- The relationship between pure diastolic dysfunction and regional systolic function requires further investigation.
Purpose of the Study:
- To investigate regional systolic function of the left ventricle.
- To test if
- pure
- diastolic dysfunction is associated with longitudinal systolic dysfunction.
Main Methods:
- 130 subjects (patients with diastolic dysfunction, diastolic heart failure, systolic heart failure, and controls) underwent conventional and tissue Doppler echocardiography.
- Global diastolic function assessed via flow propagation velocity and E/E(TDE) ratio; global systolic function by ejection fraction.
- Regional radial and longitudinal functions assessed using posterior wall and mitral annular velocities.
Main Results:
- Patients with diastolic dysfunction or diastolic heart failure showed impaired longitudinal systolic function compared to controls (8.0±1.2 and 7.7±1.5 cm/s vs. 10.1±1.5 cm/s, p<0.001).
- Global and radial systolic function were similar between "pure" diastolic dysfunction and normal subjects.
- In subjects with normal ejection fraction, diastolic function correlated with longitudinal systolic function (r=0.56, r=-0.53; p<0.001).
Conclusions:
- Progressive global diastolic dysfunction is associated with declining longitudinal systolic function.
- Diastolic heart failure involves regional systolic dysfunction detectable by tissue Doppler.
- Current diagnostic algorithms and definitions for heart failure may need revision.
Aims:
To investigate regional systolic function of the left ventricle, to test the hypothesis that "pure" diastolic dysfunction (impaired global diastolic filling, with a preserved ejection fraction > or = 50%) is associated with longitudinal systolic dysfunction.
Methods And Results:
One hundred thirty subjects (31 patients with asymptomatic diastolic dysfunction, 30 with diastolic heart failure, 30 with systolic heart failure; and 39 age-matched normal volunteers) were studied by conventional and tissue Doppler echocardiography. Global diastolic function was assessed using the flow propagation velocity, and by estimating left ventricular filling pressure from the ratio of transmitral E and mitral annular E(TDE) velocities (E/E(TDE)); and global systolic function by measurement of ejection fraction. Radial and longitudinal functions were assessed separately from posterior wall and mitral annular velocities. Global and radial systolic function were similar in patients with "pure" diastolic dysfunction and normal subjects, but patients with either asymptomatic diastolic dysfunction or diastolic heart failure had impaired longitudinal systolic function (mean velocities: 8.0+/-1.2 and 7.7+/-1.5 cm/s, respectively, versus 10.1+/-1.5 cm/s in controls; p<0.001). In subjects with normal ejection fraction, global diastolic function correlated with longitudinal systolic function (r=0.56 for flow propagation velocity, and r=-0.53 for E/E(TDE) ratio, both p<0.001), but not with global systolic function.
Conclusion:
Worsening global diastolic dysfunction of the left ventricle is associated with a progressive decline in longitudinal systolic function. Diastolic heart failure as conventionally diagnosed is associated with regional, subendocardial systolic dysfunction that can be revealed by tissue Doppler of long-axis shortening. Diagnostic algorithms and definitions of heart failure need to be revised.
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