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L C Becker

Publications and source records attributed to L C Becker.

At least 37 records · Page 2Linked to original sources

Quantification and time course of microvascular obstruction by contrast-enhanced echocardiography and magnetic resonance imaging following acute myocardial infarction and reperfusion.

OBJECTIVES: We aimed to validate contrast-enhanced echocardiography (CE) in the quantification of microvascular obstruction (MO) against magnetic resonance imaging (MRI) and the histopathologic standards of radioactive microspheres and thioflavin-S staining. We also determined the time course of MO at days 2 and 9 after infarction and reperfusion. BACKGROUND: Postinfarction MO occurs because prolonged ischemia produces microvessel occlusion at the infarct core, preventing adequate reperfusion. Microvascular obstruction expands up to 48 h after reperfusion; the time course beyond 2 days is unknown. Though used to study MO, CE has not been compared with MRI and thioflavin-S, which yield precise visual maps of MO. METHODS: Ten closed-chest dogs underwent 90-min coronary artery occlusion and reperfusion. Both CE and MRI were performed at 2 and 9 days after reperfusion. The MO regions by both methods were quantified as percent left ventricular (% LV) mass. Radioactive microspheres were injected for blood flow determination. Postmortem, the myocardium was stained with thioflavin-S and 2,3,5-triphenyltetrazolium chloride. RESULTS: Expressed as % total LV, MO by MRI matched in size MO by microspheres using a flow threshold of <40% remote (4.96+/-3.52% vs. 5.32+/-3.98%, p=NS). For matched LV cross sections, MO by CE matched in size MO by microspheres using a flow threshold of <60% remote (13.27+/-4.31% vs. 13.5+/-4.94%, p=NS). Both noninvasive techniques correlated well with microspheres (MRI vs. CE, r=0.87 vs. 0.74; p=NS). Microvascular obstruction by CE corresponded spatially to MRI-hypoenhanced regions and thioflavin-negative regions. For matched LV slices at 9 days after reperfusion, MO measured 12.94+/-4.51% by CE, 7.11+/-3.68% by MRI and 9.18+/-4.32% by thioflavin-S. Compared to thioflavin-S, both noninvasive techniques correlated well (CE vs. MRI, r=0.79 vs. 0.91; p=NS). Microvascular obstruction size was unchanged at 2 and 9 days (CE: 13.23+/-4.11% vs. 12.69+/-4.97%; MRI: 5.53+/-4.94% vs. 4.68+/-3.44%; p=NS for both). CONCLUSIONS: Both CE and MRI can quantify MO. Both correlate well with the histopathologic standards. While MRI can detect regions of MO with blood flow <40% of remote, the threshold for MO by CE is <60% remote. The extent of MO is unchanged at 2 and 9 days after reperfusion.

Animals↗

Markedly high prevalence of coronary risk factors in apparently healthy African-American and white siblings of persons with premature coronary heart disease.

Among persons with a family history of premature coronary heart disease (CHD), siblings bear an excess risk of CHD that is as high as 12 times that of the general population. Aggressive, new, national guidelines for CHD risk reduction have focused on high-risk families, yet little is known about actual remediable risk factors in siblings of persons with premature CHD. To determine the magnitude of the problem relative to the general population, we screened 846 unaffected siblings (ages 30 to 59 years) of persons with documented CHD before age 60 years and compared their risk factor values with population reference norms obtained in the Third National Health and Nutrition Examination Survey (NHANES III) and the National Health Interview Survey (NHIS). Mean levels of low-density lipoprotein cholesterol were 0.52 mmol/L (20 mg/dl) higher in siblings; the prevalence of low-density lipoprotein cholesterol > or =4.14 mmol/L (160 mg/dl) was nearly twice that of race, sex, and age-specific values from NHANES III. Levels of high-density lipoprotein cholesterol <0.91 mmol/L (35 mg/dl) were similar between siblings and NHANES III (11% and 12%, respectively). Only 4% of all siblings had triglyceride levels > or =4.52 mmol/L (400 mg/dl). Hypertension prevalence was twice as high among siblings as among the NHANES III. Current smoking was 33.9% in white siblings and 25.5% in the NHIS, whereas smoking in African-Americans was similar to that in the NHIS (31.1% vs 29.2%). A mere 13% to 29% of siblings were without any major remediable risk factors. The overwhelming need for risk factor modification in this easily identifiable high-risk population supports aggressive national guidelines and demonstrates the lack of adequate treatment of apparently healthy siblings of persons with premature CHD.

Adult↗

Increased carotid artery intimal-medial thickness in asymptomatic older subjects with exercise-induced myocardial ischemia.

BACKGROUND: Previous studies have shown an association between symptomatic coronary artery disease (CAD) and increased intimal-medial thickness of the common carotid artery (CCA IMT), a purported index of atherosclerosis. This study determines whether CCA IMT is increased in asymptomatic older subjects with an ischemic ST-segment response to treadmill exercise. METHODS AND RESULTS: CCA IMT was measured by B-mode ultrasound in community-dwelling volunteers from the Baltimore Longitudinal Study of Aging, including 397 healthy subjects (age, 58.5+/-15.8 years) with normal ECG responses to maximum treadmill exercise, 72 asymptomatic subjects (age, 66.1+/-13.4 years) with exercise-induced horizontal or downsloping ST-segment depression >/=1 mm, and 38 subjects (age, 77. 4+/-7.8 years) with clinically manifest CAD as diagnosed by medical history and resting ECG. Forty-three subjects with abnormal exercise ECGs also underwent exercise thallium scintigraphy. Exercise-induced ST-segment depression was associated with increased IMT (P<0.0001) independent of age and manifest CAD. After adjustment for age, IMT values progressively increased from healthy subjects to asymptomatic subjects with positive exercise ECG alone to those with concordant positive ECG and thallium scintigraphic findings who had virtually identical IMT to subjects with manifest CAD. Each 0.1-mm increase in IMT was associated with a 1.91-fold (95% CI, 1.46 to 2.50; P<0.0001) increased risk for concordant positive exercise tests or manifest CAD, independent of other significant predictors of CAD. CONCLUSIONS: CCA IMT is increased in older subjects with asymptomatic myocardial ischemia as evidenced by exercise ECG alone or in combination with thallium scan. Carotid ultrasound may help to identify asymptomatic individuals with CAD.

Adult↗

Magnitude and time course of microvascular obstruction and tissue injury after acute myocardial infarction.

BACKGROUND: Microvascular obstruction within an area of myocardial infarction indicates worse functional recovery and a higher risk of postinfarction complications. After prolonged coronary occlusion, contrast-enhanced MRI identifies myocardial infarction as a hyperenhanced region containing a hypoenhanced core. Because the time course of microvascular obstruction after infarction/reperfusion is unknown, we examined whether microvascular obstruction reaches its full extent shortly after reperfusion or shows significant progression over the following 2 days. METHODS AND RESULTS: Seven dogs underwent 90-minute balloon occlusion of the left anterior descending coronary artery (LAD) followed by reflow. Gadolinium-DTPA-enhanced MRI performed at 2, 6, and 48 hours after reperfusion was compared with radioactive microsphere blood flow (MBF) measurements and myocardial staining to define microvascular obstruction (thioflavin S) and infarct size (triphenyltetrazolium chloride, TTC). The MRI hypoenhanced region increased 3-fold during 48 hours after reperfusion (3.2+/-1.8%, 6.7+/-4.4%, and 9.9+/-3.2% of left ventricular mass at 2, 6, and 48 hours, respectively, P<0.03) and correlated well with microvascular obstruction (MBF <50% of remote region, r=0.99 and thioflavin S, r=0.93). MRI hyperenhancement also increased (21.7+/-4.0%, 24.3+/-4.6%, and 28.8+/-5.1% at 2, 6, and 48 hours, P<0.006) and correlated well with infarct size by TTC (r=0.92). The microvascular obstruction/infarct size ratio increased from 13.0+/-4.8% to 22.6+/-8.9% and to 30.4+/-4.2% over 48 hours (P=0.024). CONCLUSION: The extent of microvascular obstruction and the infarct size increase significantly over the first 48 hours after myocardial infarction. These results are consistent with progressive microvascular and myocardial injury well beyond coronary occlusion and reflow.

Analysis of Variance↗

Nurse-mediated cholesterol management compared with enhanced primary care in siblings of individuals with premature coronary disease.

BACKGROUND: Siblings of individuals with premature coronary heart disease have a high prevalence of low-density lipoprotein cholesterol (LDL-C) levels requiring treatment. OBJECTIVE: To evaluate management strategies for high LDL-C levels in apparently healthy 30- to 59-year-old siblings of individuals with documented coronary heart disease prior to age 60 years. METHODS: In a 2-year trial of care provided by either a nurse trained in lipid management (NURS) or enhanced primary care (EPC), in which physicians received recommendations based on national guidelines, 156 siblings with LDL-C levels of 4.14 mmol/L (160 mg/dL) were randomized by family. The LDL-C goal levels below 3.36 mmol/L (130 mg/dL) were compared between and within intervention groups. Multiple logistic regression analyses were applied to predict 2-year achievement of the goal. RESULTS: The NURS group achieved a significantly greater percentage of goal LDL-C levels than the EPC group (26% vs 10%; P=.008). The NURS LDL-C levels decreased an average of 0.91 mmol/L (35 mg/dL) while EPC levels decreased by 0.52 mmol/L (24 mg/dL) (P=.09). In the final multivariate model, siblings taking lipid-lowering drug treatment were 6.02 times more likely (95% confidence interval, 2.24-16.18) than those not receiving pharmacotherapy to achieve LDL-C goals; nurse management (P=.09) was marginally significant. Pharmacotherapy was instituted in 45.2% of NURS and 16.7% of EPC siblings (P=.001). CONCLUSIONS: High LDL-C levels in siblings were more effectively treated by a trained nurse, probably related to greater adherence to the application of national guidelines. Nonetheless, the majority of siblings with high LDL-C levels did not meet goal levels 2 years after an index case coronary heart disease event.

Adult↗

Heterogeneity among cardiac ischemic and anginal responses to exercise, mental stress, and daily life.

The objectives of this study were to compare and contrast indicators of ischemia in a well-characterized group of 196 patients with coronary artery disease, documented angiographically or by verified history of myocardial infarction, and a positive exercise test result. Myocardial ischemia occurs frequently in response to everyday stressors in patients with coronary artery disease. The Psychophysiological Interventions in Myocardial Ischemia study provides a unique opportunity to study neuroendocrine and psychological manifestations of ischemia. Patients with exercise-induced ischemia underwent exercise radionuclide ventriculography and electrocardiographic monitoring and 2 laboratory mental stressors (Speech and Stroop) after being withdrawn from cardiac medications. In addition, 48-hour ambulatory electrocardiograms were recorded during routine daily activities. Patients with a history of angina within the past 3 months reported angina during the bicycle or treadmill test with a much higher frequency than patients without such an anginal history (77% vs 26%). Ejection fraction (EF) responses to the Stroop test were abnormal in 48% of patients with an abnormal EF response to the Speech task, versus 17% in patients with a normal EF response (p <0.01). Seventy-six percent of patients had an abnormal EF response to bicycle exercise. Three indicators of ischemia (ST-segment depression, wall motion abnormality, and EF response) were compared during the same laboratory stressor and across different types of stress tests. Presence of the 3 indicators was only moderately associated during exercise, and only weak or nonsignificant associations occurred among the presence of the 3 ischemic markers during mental stress. Occurrence of the same ischemic markers was moderately associated between the 2 mental stress tasks, but few associations were found between the occurrence of the same ischemic marker during exercise and mental stress. There is a marked heterogeneity of responses to psychological and exercise stress testing using electrocardiography, ambulatory electrocardiography, or radionuclide criteria for ischemia during stress. The heterogeneity may be related to differences in the magnitude or types of physiologic responses provoked and to differences in the sensitivity and specificity of the different tests used to identify ischemia.

Aged↗

Progression of myocardial necrosis during reperfusion of ischemic myocardium.

BACKGROUND: The occurrence of myocyte necrosis during reperfusion of ischemic myocardium is controversial. This study measured myocardial 2-deoxyglucose uptake, correlated with histology, to determine whether loss of viability occurred during reperfusion of ischemic myocardium. METHODS AND RESULTS: In 12 anesthetized dogs, the left anterior descending coronary artery was occluded for 90 minutes before 4 hours reperfusion. Myocardial blood flow was measured by microspheres and the tracers 14C-2-deoxyglucose and 18F-2-deoxyglucose were injected intravenously after 5 and 180 minutes of reperfusion, respectively. After 240 minutes, the heart was stained with thioflavin-S (size of no-reflow zone) and triphenyl-tetrazolium chloride (TTC, extent of necrosis). Samples from normal, salvaged, and necrotic myocardium were counted for 14C- and 18F-deoxyglucose and microspheres. With the use of a three-compartment model of 2-deoxyglucose uptake, the rate constant k3 for phosphorylation of 14C- and 18F-2-deoxyglucose was calculated for each sample. Viability was defined as k3> or = 0.125 min(-1) (predictive accuracy 88% versus electron microscopy and 97% versus TTC). Among 58 samples from no-reflow regions, 97% were nonviable after 5 minutes of reperfusion (k3=0.096 +/- 0.027 min[-1]). Among 164 samples from salvaged myocardium, 95% were viable after both 5 and 180 minutes of reperfusion (k3=0.170 +/- 0.056 min[-1] P<.01 versus no-reflow). Among 179 samples from infarcted myocardium, mean k3 after 5 minutes of reperfusion was 0.184 +/- 0.070 min(-1) and 65% of samples were viable, but after 180 minutes of reperfusion mean k3 had decreased to 0.077 +/- 0.032 min(-1) (P<.0001) and 98% of samples were nonviable. CONCLUSIONS: A large proportion of samples from infarcted myocardium are viable at the end of the ischemic period but lose viability during the first hours of reperfusion.

Animals↗

Exercise-induced silent myocardial ischemia in master athletes.

High-physical activity levels are associated with reduced risk of symptomatic coronary artery disease (CAD). However, there are a number of reports of exercise-related sudden death and myocardial infarction in aerobically trained athletes. This study compared the prevalence of exercise-induced silent myocardial ischemia on maximum graded exercise tests with tomographic thallium scintigraphy in 70 master male athletes (63 +/- 6 years, mean +/- SD) (maximum aerobic capacity, VO2max >40 ml/kg/min) and in 85 healthy untrained men (61 +/- 7 years) with no history of CAD. The prevalence of silent ischemia (exercise-induced ST-segment depression on electrocardiogram and perfusion abnormalities on thallium scintigraphy) was similar in athletes and untrained men; 16% of the athletes (11 of 70) had silent ischemia compared with 21% of the untrained men (chi-square = 0.81, p = 0.36). No athletes had hyperlipidemia, systemic hypertension, or diabetes mellitus. However, the apolipoprotein E4 allele was present in 9 of the 11 athletes with silent ischemia compared with 2 of 32 athletes with normal exercise tests (chi-square = 24, p = 0.0001). These results suggest that older male athletes with the apolipoprotein E4 allele are at increased risk for the development of exercise-induced silent ischemia.

Aged↗

Expanded blood volumes contribute to the increased cardiovascular performance of endurance-trained older men.

To determine whether expanded intravascular volumes contribute to the older athlete's higher exercise stroke volume and maximal oxygen consumption (VO2 max), we measured peak upright cycle ergometry cardiac volumes (99mTc ventriculography) and plasma (125I-labeled albumin) and red cell (NaCr51) volumes in 7 endurance-trained and 12 age-matched lean sedentary men. The athletes had approximately 40% higher VO2 max values than did the sedentary men and larger relative plasma (46 vs. 38 ml/kg), red cell (30 vs. 26 ml/kg), and total blood volumes (76 vs. 64 ml/kg) (all P < 0.05). Athletes had larger peak cycle ergometer exercise stroke volume indexes (75 vs. 57 ml/m2, P < 0.05) and 17% larger end-diastolic volume indexes. In the total group, VO2 max correlated with plasma, red cell, and total blood volumes (r = 0.61-0.70, P < 0.01). Peak exercise stroke volume was correlated directly with the blood volume variables (r = 0.59-0.67, P < 0.01). Multiple regression analyses showed that fat-free mass and plasma or total blood volume, but not red cell volume, were independent determinants of VO2 max and peak exercise stroke volume. Plasma and total blood volumes correlated with the stroke volume and end-diastolic volume changes from rest to peak exercise. This suggests that expanded intravascular volumes, particularly plasma and total blood volumes, contribute to the higher peak exercise left ventricular end-diastolic volume, stroke volume, and cardiac output and hence the higher VO2 max in master athletes by eliciting both chronic volume overload and increased utilization of the Frank-Starling effect during exercise.

Aged↗

Hypertension among siblings of persons with premature coronary heart disease.

To determine the extent to which the Fifth Joint National Committee on Detection, Evaluation, and Treatment of High Blood Pressure (JNC-V) guidelines were implemented in high-risk families with premature coronary heart disease, we examined the prevalence of hypertension and associated coronary risk factors in asymptomatic siblings of persons with documented premature coronary disease (<60 years of age). A total of 859 apparently healthy siblings (51% male, 19% African American) were screened for coronary risk factors. Siblings were classified as normotensive or hypertensive (BP > or = 140/90 and/or current antihypertensive pharmacotherapy). The prevalence of hypertension, awareness, treatment, and control among siblings was compared with published national estimates from the third National Health and Nutrition Examination Survey. The prevalence of hypertension in siblings was 44%. Among all hypertensives, only 60% were aware of being hypertensive, 45% were being treated, and 16% were under control. A high prevalence of other coronary risk factors was found among hypertensive siblings: 72% were hypercholesterolemic; 61% were obese; 29% were current smokers; 82% were consuming >30% of calories from fat; and only 14% were participating in vigorous physical activity three or more times per week. Comparisons with the national reference population revealed siblings to have a significantly higher prevalence of hypertension, along with significantly lower levels of awareness, treatment, and control. These findings demonstrate the intersection of multiple risk factors among hypertensive siblings and emphasize the need for more aggressive screening and treatment in this easily identifiable high-risk population.

Adult↗

Ultrastructural localization of glycolytic enzymes on sarcoplasmic reticulum vesticles.

We have previously obtained indirect evidence that sarcoplasmic reticulum (SR) vesicles from cardiac and skeletal muscle contain the complete chain of glycolytic enzymes from aldolase to pyruvate kinase. To investigate directly whether pyruvate kinase and other glycolytic enzymes are anatomically associated with the SR, electron microscopic immunogold++ labeling studies were carried out in isolated SR vesicles using specific primary antibodies against selected glycolytic enzymes and Ca2+-ATPase, and appropriate secondary antibodies labeled with 6-nm or 12-nm gold particles. Pyruvate kinase was broadly dispersed on the cytoplasmic side of the SR membrane of both cardiac and skeletal muscle vesicles. With 6-nm gold particles, density of binding to pyruvate kinase was 2522 +/- 445 and 4171 +/- 1379 particles/microm2 for cardiac and skeletal muscle SR, respectively. Binding densities to Ca2 +/- ATPase were similar (2550 +/- 639 particles/ microm2 for cardiac SR, 3877 +/- 408 particles/microm2 for skeletal muscle SR). Immunogold labeling of ultrathin sections indicated that pyruvate kinase was attached to the SR membrane and located immediately adjacent to the Ca2+-ATPase. Aldolase and glyceraldehyde phosphate dehydrogenase were also found to be attached to the cytoplasmic side of SR vesicles and located in close proximity to Ca2+-ATPase. These results provide the first ultrastructural evidence that glycolytic enzymes are anatomically associated with SR membranes and located near the SR C2+-ATPase. The results further support the hypothesis that ATP generated by SR-associated glycolytic enzymes is coupled to SR Ca2+ active transport.

Animals↗

Lipoprotein(A) and coronary heart disease risk factors in a racially mixed population: the Johns Hopkins Sibling Study.

OBJECTIVES: To determine if heart disease risk factors differentially affect lipoprotein(a) concentration by race, we assessed the association of lipoprotein(a) with heart disease risk factors in healthy Caucasians and African Americans with family histories of premature heart disease. METHODS: Participants (403 Caucasian and 148 African American), all less than 60 years old and free of heart disease, were recruited through a brother or sister diagnosed with coronary heart disease before age 60. Risk factor information was elicited through an interview and medical examination. RESULTS: As expected, lipoprotein(a) was significantly higher among African Americans than among Caucasians. Mean lipoprotein(a) concentrations were positively associated with smoking status and age, and negatively associated with hypertension in African Americans. Smokers had lipoprotein(a) levels 38% higher than nonsmokers. Conversely, lipoprotein(a) concentrations were unrelated to heart disease risk factors among Caucasians. CONCLUSION: While this study confirms that lipoprotein(a) concentration is independent of CHD risk factors in Caucasians, lipoprotein(a) appears to be related to several CHD risk factors in African Americans at high risk for premature heart disease. Given the high levels of lipoprotein(a) in people of African descent and lipoprotein(a)'s link to cardiovascular diseases, more research is needed to understand the relationship of lipoprotein(a) to heart disease risk factors and the subsequent disease in African-American populations.

Adult↗

Exaggerated reactivity to mental stress is associated with exercise-induced myocardial ischemia in an asymptomatic high-risk population.

BACKGROUND: This study was done to determine whether cardiovascular reactivity to mental stress is associated with exercise-induced occult ischemia in an asymptomatic population at high risk for premature coronary heart disease (CHD). METHODS AND RESULTS: One hundred fifty-two siblings of persons with premature CHD underwent mental stress testing. Exercise thallium tomography and 24-hour Holter monitoring were also performed. Hemodynamic changes were monitored during both stressors. Siblings positive for exercise-induced ischemia were offered cardiac catheterization. During mental stress, siblings with an abnormal exercise ECG and/or thallium scan (n=15) had greater maximal increases in systolic blood pressure (SBP, P=.0004) and diastolic blood pressure (DBP, P=.05) and had greater heart rate variability in the normalized low frequency domain of an analysis of Holter monitor recordings, compared with siblings without exercise-induced ischemia. Coronary arteriography confirmed coronary atherosclerosis in 85% of siblings with exercise-induced ischemia. Regression analyses showed that occult ischemia during exercise was a strong independent predictor of maximal change in SBP and DBP during mental stress. A multivariate logistic model demonstrated that siblings with exercise-induced occult ischemia were 21 times more likely to be "hot" responders (top quartile of change in SBP and DBP) during mental stress. CONCLUSIONS: An exaggerated cardiovascular response to mental stress is associated with exercise-induced myocardial ischemia in persons with preclinical coronary heart disease.

Adult↗

Hydroxyl radical inhibits sarcoplasmic reticulum Ca(2+)-ATPase function by direct attack on the ATP binding site.

Oxygen-derived free radicals have been reported to damage the sarcoplasmic reticulum (SR) Ca(2+)-ATPase, potentially contributing to cellular Ca2+ overload and myocardial damage after ischemia and reperfusion. To determine whether the ATP binding site on Ca(2+)-ATPase is involved in oxygen radical injury, SR vesicles containing bound Ca(2+)-ATPase were isolated from rabbit cardiac and skeletal muscle and exposed to a hydroxyl radical (.OH)-generating system consisting of H2O2 and Fe(3+)-nitrilotriacetic acid in amounts that generate a magnitude of .OH similar to that which occurs in the reperfused heart. .OH exposure completely inhibited Ca(2+)-ATPase activity and SR 45Ca uptake for both cardiac and skeletal muscle. In contrast, when the purified vesicles were premixed with 1 mmol/L ATP before exposure to .OH, complete protection was observed: there was no loss of ATPase activity or 45Ca transport. No significant protection occurred with adenosine, sucrose, AMP, or ADP (1 mmol/L each). SDS-gel electrophoresis indicated that .OH did not damage the primary structure of the enzyme. Electron paramagnetic resonance spin-trapping experiments demonstrated that ATP did not scavenge .OH. These results suggest that .OH denatures the SR Ca(2+)-ATPase by directly attacking the ATP binding site, and occupation of the active site by ATP protects against .OH-induced loss of enzymatic activity and SR Ca2+ transport. The depletion of ATP that occurs during ischemia may enhance the toxic effect of .OH at the time of reperfusion.

Adenine Nucleotides↗

Left ventricular, peripheral vascular, and neurohumoral responses to mental stress in normal middle-aged men and women. Reference Group for the Psychophysiological Investigations of Myocardial Ischemia (PIMI) Study.

BACKGROUND: The normal cardiovascular response to mental stress in middle-aged and older people has not been well characterized. METHODS AND RESULTS: We studied 29 individuals 45 to 73 years old (15 women, 14 men) who had no coronary risk factors, no history of coronary artery disease, and a negative exercise test. Left ventricular (LV) volumes and global and regional function were assessed by radionuclide ventriculography at rest and during two 5-minute standardized mental stress tasks (simulated public speaking and the Stroop Color-Word Test), administered in random order. A substantial sympathetic response occurred with both mental stress tests, characterized by increases in blood pressure, heart rate, rate-pressure product, cardiac index, and stroke work index and rises in plasma levels of epinephrine and norepinephrine but not beta-endorphin or cortisol. Despite this sympathetic response, LV volume increased and ejection fraction (EF) decreased secondary to an increase in afterload. The change in EF during mental stress-varied among individuals but was associated positively with changes in LV contractility and negatively with baseline EF and changes in afterload. EF decreased > 5% during mental stress in 12 individuals and > 8% in 5; 3 developed regional wall motion abnormalities. CONCLUSIONS: Mental stress in the laboratory results in a substantial sympathetic response in normal middle-aged and older men and women, but EF commonly falls because of a concomitant rise in afterload. These results provide essential age- and sex-matched reference data for studies of mental stress-induced ischemia in patients with coronary artery disease.

Aged↗