Effect of left ventricular global systolic function, mitral regurgitation, and left ventricular inflow pattern on
Jesús Peteiro1, Lorenzo Monserrat, Beatriz Bouzas
1Service of Cardiology, Juan Canalejo Hospital, A Coruña, Spain. jpeteiro@mundo-r.com
Insights
Exercise echocardiography effectively diagnoses coronary artery disease (CAD) using regional wall-motion abnormalities. Other indicators like mitral regurgitation and LV inflow patterns also aid in diagnosis, offering high specificity.
Area of Science:
- Cardiology
- Diagnostic Imaging
- Echocardiography
Background:
- Exercise echocardiography (EE) is crucial for diagnosing coronary artery disease (CAD).
- While regional wall-motion abnormalities are standard, the diagnostic value of other EE parameters like mitral regurgitation (MR) and left ventricular (LV) inflow is less consistently analyzed.
Purpose of the Study:
- To evaluate the diagnostic value of various parameters during treadmill exercise echocardiography for CAD.
- To assess the feasibility and accuracy of a comprehensive Doppler echocardiography approach.
Main Methods:
- 120 patients with suspected CAD underwent treadmill exercise echocardiography and coronary angiography.
- Evaluated parameters included regional wall-motion abnormalities, LV ejection fraction (LVEF), LV volumes, MR, and LV inflow patterns (E/A wave).
- Coronary angiography defined the presence of significant CAD (≥50% luminal narrowing).
Main Results:
- Feasible images for analysis were obtained in 90% of patients.
- Regional wall-motion abnormalities (94%) and LVEF decrease (75%) showed the highest sensitivity for CAD.
- New/increased MR (90%), pseudonormalized LV inflow (88%), and angina (87%) demonstrated the highest specificity.
- Exercise ECG was also a valuable diagnostic tool with good sensitivity and specificity (67% and 85%).
Conclusions:
- A comprehensive rest and exercise Doppler echocardiography approach is feasible and valuable for diagnosing CAD.
- Regional wall-motion abnormalities are the most accurate EE variable for CAD diagnosis.
- New/increased MR and altered LV inflow patterns are highly specific indicators of CAD.
Abstract:
Diagnosis of coronary artery disease (CAD) by exercise echocardiography is usually based on rest or exercise-induced regional wall-motion abnormalities. Mitral regurgitation (MR), left ventricular (LV) global systolic function, and LV inflow measurements can be assessed during exercise echocardiography; however, their diagnostic value has not been analyzed consistently. Treadmill exercise echocardiography and coronary angiography were performed in 120 patients (94 male, 26 female; mean age 61 +/- 10 years [+/- 1 SD]) to evaluate known or suspected CAD. Positive exercise echocardiography was defined either as a rest- or exercise-induced regional wall-motion abnormalities. An abnormal response of LV ejection fraction (EF), LV volumes, MR (as assessed by color Doppler), and LV inflow pattern was defined as a fall in LVEF, a LV end-diastolic volume increase, a LV end-systolic volume increase, a new or increased MR, or a change from an impaired relaxation pattern (E < A) to a "pseudonormalized" pattern (E > A) from rest to exercise, respectively. CAD (> or = 50% luminal narrowing in at least one vessel) was found in 89 (74%) patients. EE-based regional wall-motion abnormality analysis was positive in 95 (79%) patients and negative in 25 (21%) patients. Feasible images for regional wall-motion abnormalities, LVEF and volumes, LV inflow, and MR measurements were acquired in 90% of patients. Regional wall-motion abnormality analysis and LVEF decrease provided the greatest sensitivities for CAD (94% and 75%, respectively), while the highest specificity was given by a new or increased MR (90%), the development of a pseudonormalized pattern (88%), and the appearance of angina (87%). A positive electrocardiogram (ECG) finding in patients with interpretable ECGs provided good sensitivity and specificity (67% and 85%, respectively). In conclusion, a complete rest and exercise Doppler echocardiography approach is feasible in most patients. Regional wall-motion abnormalities are the most accurate exercise echocardiography variable for diagnosing CAD, whereas exercise ECG remains a good test in patients with interpretable ECGs. Exercise echocardiography, exercise ECG, newly developed or increased MR, and change to a pseudonormalized LV inflow pattern are highly specific.
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