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August 1, 1968Circulation170 citationsOpen Access

Left Ventricular Hemodynamics in Exercise-Induced Angina Pectoris

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LWLeslie WienerEDEdward M. DwyerJCJohn W. Cox

Key Points

  • The aim is to study the hemodynamic changes during exercise-induced angina in patients with ischemic heart disease.
  • Ten patients with ischemic heart disease underwent cardiac catheterization during exercise testing.

Structured PICO

What is the sequence of hemodynamic and electrocardiographic events characterizing the onset and course of exercise-induced angina pectoris in patients with ischemic heart disease?

P
Population
10 patients with ischemic heart disease
I
Intervention
Exercise during cardiac catheterization
O
Outcome
Hemodynamic and electrocardiographic changes (including left ventricular end-diastolic pressure, pulmonary artery pressure, cardiac output, stroke volume, heart rate, left ventricular systolic pressure, left ventricular first derivative, and ST-segment depression) characterizing the onset and course of exercise-induced angina pectorissurrogate

Exercise-induced angina is preceded by a precipitous rise in left ventricular filling pressures and significant increases in determinants of myocardial oxygen consumption.

Abstract

The sequence of events characterizing the onset and course of exercise-induced angina pectoris was studied in 10 patients with ischemic heart disease during cardiac catheterization. Exercise produced a precipitous rise in left ventricular end-diastolic pressure prior to the onset of angina and electrocardiographic ischemia. A corresponding abnormal increase in pulmonary artery pressure occurred. Cardiac output increased commensurate with the degree of exertion and was accompanied by a slight reduction in stroke volume. Left ventricular work and stroke work paralleled the changes in cardiac output and stroke volume. Determinants of myocardial oxygen consumption, that is, heart rate, left ventricular systolic pressure, and left ventricular first derivative, were monitored continuously and noted to increase by 43%, 20%, and 38%, respectively, prior to angina. Ischemic ST-segment depression corresponded closely in time with angina. Angina and electrocardiographic and hemodynamic abnormalities persisted throughout exercise. Two minutes after exercise, hemodynamic values returned to normal along with a reduction in intensity of angina; ST-segment abnormalities persisted until 4 minutes after exercise. Pathophysiological mechanisms occurring during angina are described, and differences from typical heart failure are discussed.

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Cite This Study

Wiener et al. (1968) studied this question.

synapsesocial.com/papers/6a1536b137103a43379f644chttps://doi.org/10.1161/01.cir.38.2.240
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