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Diastolic function in Chagas' disease: an echo and tissue Doppler imaging study
M V L Barros1, F S Machado, A L P Ribeiro
1Ecoar-Noninvasive Diagnostic Medicine, Brazil. ecoar@gold.com.br
Insights
Tissue Doppler imaging (TDI) effectively detects diastolic dysfunction in Chagas
Area of Science:
- Cardiology
- Medical Imaging
- Infectious Diseases
Background:
- Chagas' disease (Chd) can affect cardiac function, specifically left ventricular filling.
- Understanding diastolic dysfunction patterns is crucial for managing Chagas' cardiomyopathy.
Purpose of the Study:
- To investigate left ventricular filling patterns in patients with Chagas' disease.
- To evaluate the utility of echocardiography, Doppler, and tissue Doppler imaging (TDI) in assessing diastolic function in Chagas' disease.
Main Methods:
- 169 Chagas' disease patients underwent echocardiography, Doppler, and TDI.
- Patients were categorized into four left ventricular filling groups.
- TDI of basal left ventricular walls was performed.
Main Results:
- Diastolic dysfunction was identified in 21.3% of patients, correlating with reduced ejection fraction (r = 0.78).
- TDI septal e' wave measurement demonstrated high sensitivity (97%) and specificity (84%) for detecting diastolic dysfunction.
- The septal E/e' ratio proved highly sensitive (100%) and specific (88%) for advanced diastolic dysfunction.
Conclusions:
- Echocardiography and Doppler, particularly TDI, are valuable tools for characterizing left ventricular diastolic function in Chagas' disease.
- TDI is useful for diagnosing diastolic dysfunction in patients with Chagas' disease.
Aims:
With the purpose of studying left ventricular filling in Chagas' disease (Chd), we evaluated 169 patients with Chd using echocardiography and Doppler and tissue Doppler imaging (TDI).
Methods And Results:
The patients were divided into four groups according to the pattern of left ventricular filling: Group 0--normal filling pattern, Group 1--abnormal relaxation, Group 2--pseudonormal flow pattern, and Group 3--restrictive pattern. All patients were submitted to TDI of the basal portion of the left ventricle's walls. Diastolic dysfunction was found in 21.3% of the patients, with a strong correlation between the worsening of diastolic function and ejection fraction (r = 0.78, P < 0.001). TDI septal e' wave measurement was the best method for the detection of any kind of diastolic dysfunction. Considering a cut-off point of 11 cm/s, a reduced e' wave value has 97% sensitivity, 84% specificity, 62% positive predictive value, and 99% negative predictive value. The septal E/e' ratio was the best index for the detection of advanced diastolic dysfunction. Considering a cut-point of 7.2, an elevated E/e' ratio has 100% sensitivity, 88% specificity, 54.2% positive predictive value, and 100% negative predictive value.
Conclusion:
This study showed the characterization of the various patterns of left ventricle diastolic function by echocardiography and Doppler in Chagas' disease and the usefulness of TDI in the assessment of diagnosis of diastolic dysfunction in this disease.
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