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Haemodynamic response to exercise in patients with chest pain and normal coronary angiograms
Insights
Patients with typical angina exhibit impaired left ventricular diastolic filling during exercise, unlike those with atypical or non-anginal chest pain. This finding highlights diastolic dysfunction as a key issue in typical angina presentation.
Area of Science:
- Cardiology
- Cardiovascular Physiology
- Diagnostic Imaging
Background:
- Chest pain with normal coronary angiograms presents a diagnostic challenge.
- Differentiating causes of chest pain requires understanding cardiac function during stress.
Purpose of the Study:
- To investigate left ventricular function and filling pressures in patients with chest pain but normal coronary arteries.
- To assess the predictive value of clinical classification (typical, atypical, non-anginal) for exercise-induced cardiac abnormalities.
Main Methods:
- Prospective classification of 42 patients into typical angina, atypical angina, or non-anginal chest pain groups.
- Radionuclide ventriculography and pulmonary artery pressure measurement at rest and during maximal exercise.
Main Results:
- Patients with typical angina showed significantly higher pulmonary artery diastolic pressures (left ventricular filling pressures) during exercise compared to other groups.
- Left ventricular ejection fraction changes during exercise were not significant in the typical angina group, but increased significantly in the other two groups.
- Clinical classification as 'typical angina' predicted abnormal filling pressures but not abnormal ejection fraction responses to stress.
Conclusions:
- Typical angina is associated with impaired left ventricular diastolic filling during exercise, not consistently with systolic dysfunction.
- Clinical assessment of typical angina can predict abnormal filling pressures, but radionuclide ventriculography and pressure measurements provide a more detailed functional assessment.
Abstract:
A series of 42 patients with chest pain but normal coronary angiograms and normal haemodynamics at rest were prospectively classified as typical angina (group 1, N = 9) or atypical angina (group 2, N = 16) or non-anginal chest pain (group 3, N = 17). All patients underwent radionuclide ventriculography and measurement of pulmonary artery pressure at rest and during maximum exercise. Comparison of data during exercise revealed significantly higher (P less than 0.025) left ventricular filing pressures as reflected by the diastolic pulmonary artery pressure in group 1 (29 +/- 5 mmHg) than in both group 2 (22 +/- 6 mmHg) and group 3 (22 +/- 5 mmHg). The rest-to-exercise change in left ventricular ejection fraction was variable and not significant in group 1 (62 +/- 6% vs 63 +/- 14%). By contrast, both group 2 and group 3 had significant increases (63 +/- 6% vs 69 +/- 10%, P less than 0.02 and 63 +/- 5% vs 68 +/- 5%, P less than 0.01). The classification as 'typical angina' was predictive of an abnormal (greater than 25 mmHg) filling-pressure response to stress. The positive and negative predictive values were 78% and 70%, respectively. The clinical classification was not a predictor of an abnormal (delta less than 5%) ejection-fraction response. No correlation between radionuclide and filling-pressure data could be established. The data suggest that the majority of patients assigned to group 1 manifested an impaired left ventricular function with exercise. This was primarily related to abnormalities in diastolic filling while the systolic performance was not consistently depressed.
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