Key result
Mental stress induced echocardiographic abnormalities in 35% (mental arithmetic) to 61% (anger recall) of patients with coronary artery disease, compared with 96% during exercise (p < 0.001).
Why the study?
Does mental stress induce myocardial ischemia measured by echocardiography and affect subsequent exercise tolerance in patients with coronary artery disease?
Cross-Sectional (n=79)
Does mental stress induce myocardial ischemia measured by echocardiography and affect subsequent exercise tolerance in patients with coronary artery disease?
Absolute Event Rate: 61% vs 96%
p-value: p=<.001
Mental stress induces echocardiographic myocardial ischemia in a significant proportion of CAD patients and shortens the duration of subsequent exercise stress testing.
MS-induced ischemia links to hemodynamic shifts and poorer LV function in CAD; leaves open whether targeted screening refines risk stratification.
OBJECTIVE: The aims of this study were to investigate the incidence and parameters associated with myocardial ischemia during mental stress (MS) as measured by echocardiography and to evaluate the relation between MS-induced and exercise-induced myocardial ischemia. METHODS: Study participants were 79 patients (63 men; mean [M] [standard deviation {SD}] age = 52 [8] years) with angiographically confirmed coronary artery disease and previous positive exercise test result. The MS protocol consisted of mental arithmetic and anger recall task. The patients performed a treadmill exercise test 15 to 20 minutes after the MS task. Data of post-MS exercise were compared with previous exercise stress test results. RESULTS: The frequency of echocardiographic abnormalities was 35% in response to the mental arithmetic task, compared with 61% with anger recall and 96% with exercise (p < .001, exercise versus MS). Electrocardiogram abnormalities and chest pain were substantially less common during MS than were echocardiographic abnormalities. Independent predictors of MS-induced myocardial ischemia were: wall motion score index at rest (p = .02), peak systolic blood pressure (p = .005), and increase in rate-pressure product (p = .004) during MS. The duration of exercise stress test was significantly shorter (p < .001) when MS preceded the exercise and in the case of earlier exercise (M [SD] = 4.4 [1.9] versus 6.7 [2.2] minutes for patients positive on MS and 5.7 [1.9] versus 8.0 [2.3] minutes for patients negative on MS). CONCLUSIONS: Echocardiography can be successfully used to document myocardial ischemia induced by MS. MS-induced ischemia was associated with an increase in hemodynamic parameters during MS and worse function of the left ventricle. MS may shorten the duration of subsequent exercise stress testing and can potentiate exercise-induced ischemia in susceptible patients with coronary artery disease.
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Stepanović et al. (2012) conducted a cross-sectional in Coronary artery disease (n=79). Mental stress vs. Exercise was evaluated on Frequency of echocardiographic abnormalities (p=<.001). Mental stress induced echocardiographic abnormalities in 35% (mental arithmetic) to 61% (anger recall) of patients with coronary artery disease, compared with 96% during exercise (p < 0.001).
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