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Use of maximal bicycle exercise testing with respiratory gas analysis to assess exercise performance in patients with congestive heart failure secondary to coronary artery disease or to idiopathic dilated cardiomyopathy.

Analysis of respiratory gases during maximal treadmill exercise testing has been used in patients with congestive heart failure (CHF) to detect the lactate threshold, presumed to reflect the onset of skeletal muscle underperfusion, and maximal oxygen consumption (VO2), the point at which VO2 plateaus with increasing work due to exhaustion of peripheral oxygen delivery capacity. To determine if this approach is also useful during maximal bicycle exercise testing, ventilatory, hemodynamic and systemic lactate responses to bicycle exercise were measured in 48 patients with CHF. Ventilatory responses also were assessed in 12 normal subjects. Exercise increased VO2 to 24.8 +/- 3.9 ml/min/kg in normal subjects and 13.9 +/- 3.7 ml/min/kg in patients with CHF (p less than 0.001). In all but 1 patient the VO2 increment over the last 3 minutes of exercise was comparable to that in normal subjects exercising over identical work times, suggesting that maximal VO2 was not achieved. Moreover, in patients who exercised for less than 6 minutes, a ventilatory lactate threshold could not be identified. In the 33 patients who exercised longer, a ventilatory lactate threshold was identified in 31 and correlated well (r = 0.81) with blood lactate threshold, as defined by the VO2 at which lactate increased 5 mg/dl over rest levels. However, the 95% confidence limit for predicting blood lactate threshold from ventilatory data was +/- 200 ml/min, a large range relative to the measured ventilatory threshold (570 +/- 132 ml/min). These data suggest that in patients with CHF, respiratory gas analysis during maximal bicycle exercise cannot be used to measure maximal VO2 and provides only a general index of blood lactate behavior.

Cardiac Output↗

The prognostic value of the exercise test.

Numerous investigators have demonstrated that responses to exercise testing enable prediction of the severity of underlying coronary disease and the patient's prognosis. However, exercise testing cannot predict angiographic findings or a poor prognosis with absolute certainty. Because survival can only be improved in specific clinical subsets of patients, it is important to carefully select for catheterization those in whom intervention can improve both quality and quantity of life. To deliver cost-effective health care, an effort has been made to use decision analysis to select those who should undergo cardiac catheterization. Decision analysis depends on reliable information regarding the predictive accuracy of the exercise test. Thus, this review is timely. Recent studies investigating the prognostic value of the exercise test are reviewed in this monograph. Patients include those recovering from a recent myocardial infarction (MI), those with stable coronary heart disease (including studies that have considered coronary angiographic findings, cardiac end points, and/or improved survival with coronary artery bypass surgery), and apparently healthy individuals. From this review, we conclude that silent ischemia induced by exercise testing in apparently healthy men is not as predictive of a poor outcome as once thought. Also, the use of the exercise test for screening is even more misleading than previously appreciated because of the higher rate of false positive results. Review of the 24 available studies of exercise testing in post-MI patients demonstrates that clinical judgment can be used to identify the high-risk patients, and that ST-segment shifts are not as predictive of high risk as an abnormal systolic blood pressure response or a poor exercise capacity. In patients with stable coronary heart disease, studies considering angiographic findings, cardiac events, and the differential outcome of coronary artery bypass surgery as compared with medical therapy have shown the exercise test to have prognostic power. From this perspective, it is obvious that there is much information supporting the use of exercise testing as the first noninvasive step after the history, physical examination, and resting electrocardiogram in the prognostic evaluation of patients with coronary artery disease. It accomplishes both purposes of prognostic testing: to provide information regarding the patient's status, and to help make recommendations for optimal management. The exercise test results help us make reasonable decisions for selection of patients who should undergo coronary angiography-including quality-of-life issues.(ABSTRACT TRUNCATED AT 400 WORDS)

Aged↗

Exercise testing in heart failure. A critical review.

Exercise intolerance is one of the primary characteristics of chronic congestive heart failure (CHF). Therefore, exercise testing has been widely used in the assessment of CHF patients, both to define the severity of the disease and to assess the efficacy of pharmaceutical agents in clinical trials. A number of different exercise tests can be used, although maximal exercise testing is the most common. Maximal exercise capacity can be determined by measuring exercise duration during incremental exercise, or maximal oxygen (O2) consumption, or it can be estimated by anaerobic threshold. While baseline exercise testing in CHF patients accurately identifies and quantifies cardiac failure and determines prognosis, it is of limited value in assessing changes that occur as a result of drug therapy. A key drawback of exercise testing as a measurement of drug effect is the fact that exercise changes produced by drug intervention do not correlate well with changes in the mortality rate. Several examples of the lack of correlation between exercise testing and mortality rates have been observed in clinical trials with angiotensin converting enzyme (ACE) inhibitors and vasodilators. ACE inhibitors have a modest effect on maximal exercise capacity but they improve survival. It is thought that neuroendocrine activation more closely reflects mortality rates and also the changes in survival observed with pharmacological intervention compared with other modes of evaluation.

Angiotensin-Converting Enzyme Inhibitors↗

Improved myocardial performance during repetitive exercise testing: the role of extracellular superoxide dismutase activity in a model of exercise-induced myocardial preconditioning.

BACKGROUND: The aim of this study was to investigate whether endogenous antioxidant defense is involved in adaptation to myocardial ischemia in patients with coronary artery disease and severe exercise-induced myocardial ischemia. METHODS: Fifty patients, aged 50 to 72 years (mean, 58 +/- 6 years), with positive exercise test results underwent 4 treadmill exercise tests. Thallium-201 scintigraphy was performed during the first and the fourth testing. The second, the third, and the fourth tests were performed the next day. The time interval between the second and the third test was 15 minutes, and between the third and the fourth test, the interval was 45 minutes. Extracellular superoxide dismutase activity was measured just before and at the peak of the first and the fourth exercise test. RESULTS: The patients were divided in 2 groups according to the extent of myocardial ischemia at peak exercise of the fourth test compared with the first test. Most of the patients studied (37/50) showed improved myocardial performance during the last of the sequential exercise tests, as demonstrated with the studied exercise parameters and the extent of myocardial ischemia in thallium-scintigraphy. Extracellular superoxide dismutase activity before the last exercise test was found to be significantly increased only in the patients who had improved myocardial performance at the last of the sequential exercise tests. CONCLUSION: The beneficial effects of sequential episodes of exercise-induced myocardial ischemia seem to be strongly related to extracellular superoxide dismutase activity. Although there is still lack of direct evidence, our data support the theory that the favorable adaptation to repetitive exercise may represent an aspect of the clinical relevance of ischemic preconditioning in humans.

Aged↗

Comparison of ambulatory electrocardiography and exercise testing.

Ambulatory electrocardiography and exercise testing are two noninvasive diagnostic procedures widely employed to evaluate patients for cardiac arrhythmias and S-T segment changes. This review addresses the differences and similarities of the two techniques, and examines the relative diagnostic and prognostic merit of the arrhythmia and S-T segment changes detected with each method. Ambulatory electrocardiography is more sensitive than exercise testing in detecting cardiac arrhythmias. The recording of ventricular arrhythmia is of value in predicting sudden death in survivors of myocardial infarction, whereas exercise-induced ventricular arrhythmia has limited predictive value. Nevertheless, exercise-induced S-T depression is of great prognostic value in predicting mortality and sudden death in patients with acute and chronic coronary heart disease.

Ambulatory Care↗

Submaximal exercise testing: clinical application and interpretation.

Compared with maximal exercise testing, submaximal exercise testing appears to have greater applicability to physical therapists in their role as clinical exercise specialists. This review contrasts maximal and submaximal exercise testing. Two major categories of submaximal tests (ie, predictive and performance tests) and their relative merits are described. Predictive tests are submaximal tests that are used to predict maximal aerobic capacity. Performance tests involve measuring the responses to standardized physical activities that are typically encountered in everyday life. To maximize the validity and reliability of data obtained from submaximal tests, physical therapists are cautioned to apply the tests selectively based on their indications; to adhere to methods, including the requisite number of practice sessions; and to use measurements such as heart rate, blood pressure, exertion, and pain to evaluate test performance and to safely monitor patients.

Adolescent↗

A basic approach to the interpretation of the exercise test.

To interpret the exercise test, the following parameters need to be evaluated: the heart rate and blood pressure response, symptoms, dysrhythmias, aerobic capacity, and evidence for myocardial ischemia. When analyzing the ST segment for ischemia, the amount and type of ST depression and the time of onset and resolution are examined. The exercise test results are best used to determine a post-test probability that the patient has significant coronary disease, predict its severity, and provide a prognosis of the patient. The test allows primary care physicians to decide which patients with coronary artery disease can be safely managed medically and which high-risk patients need further evaluation and consideration for revascularization.

Arrhythmias, Cardiac↗

[Prognostic value of results from clinical tests, echocardiographic, electrocardiographic and spiro-ergometric exercise test examinations in patients with heart failure].

UNLABELLED: The aim of this study was to assess the importance of the non invasive procedures in determinating prognosis of patients with heart failure (HF). MATERIAL AND METHODS: We investigated 110 patients with a mean age of 52.1 (65 patients--59%) with chronic (HF) due to coronary artery diseases and dilated cardiomyopathy (45 patients--41%). All the patients underwent baseline evaluations including a clinical status, echocardiography, Holter monitoring and a cardiopulmonary exercise test (CPX). After the mean follow-up period of 28.5 +/- 12 months, the patients were divided into 2 groups: Group I--in which 78 patients survived without heart transplantation (HTX) and Group II--in which 20 patients died and 12 underwent HTX. The relationship between the variables derived from noninvasive procedures was assessed using multivariate Cox proportional hazards models. RESULTS: Compared to group I, Group II had a significantly higher number of patients that were classified into NYHA class III. In addition, a third heart tone was identified more often in group II and an increased number of HF etiology was due to ischemia. Electrocardiographic recording showed an increased frequency of left bundle branch block and complex ventricular arrythmias. Markedly increased values of WSLK, OKSLK, WLP, OKRLK and FW were found in group II, as compared to group I. Cardiopulmonary exercise tests in group II revealed lower values of T, VO2AT, SBPpeak, VO2peak, VO2peak%N, PETCO2peak as well as VD/VTpeak, VE/VO2peak, and VE/VCO2peak. After multivariate analysis lope VE/VCO2peak (p = 0.009), peak oxygen uptake VO2peak-%N (p = 0.035), (p = 0.036), left ventricle end systolic volume (p = 0.045) and left bundle branch block (p = 0.046) were independent predictors of survival without heart transplantation. CONCLUSION: On multivariate analysis by the Cox proportional hazards method, the variables: VE/VCO2peak, VO2peak%N, etiology--CAD, OKSLK, and left bundle branch block were independent prognostic predictors. The echocardio-graphic evaluation play a significant role in the assessment of prognosis in patients, with HF. The ejection fraction of the left ventricle was not confirmed as an independent prognostic factor in HF.

Adult↗

A new method for data presentation in incremental cardiorespiratory exercise testing.

In incremental cardiopulmonary exercise testing, the averaging of data is usually performed to provide group mean data for statistical purposes. They are usually presented as averaged maximum values, or as averaged data at different exercise levels. However, during incremental exercise testing the change in metabolic status may vary between subjects, thus averaging data may not classify the metabolic status accurately. We present an averaging method using a segmented ordinal scale based on individual maximal work performance and the anaerobic threshold (AT). Individual exercise data are grouped into ten classes ranging from unloaded exercise to maximal exercise. The classes are defined in relation to the AT, resulting in an ordinal scale of four classes for exercise data below the AT, one class at the AT and five classes beyond the AT. Resting and unloaded pedalling are treated as separate classes. For evaluation, this method of classification is compared to one based on an absolute scale of oxygen uptake (Cabs) and to another based on a relative scale in 10% steps of maximal oxygen uptake (Crel). Ten healthy male subjects (mean age 23.3 years) performed a ramp cycle ergometer test. When using the Cabs classification method for mean data averaging, mean values for performance at high-intensity exercise were calculated using data from only two of the ten subjects because of variations in individual work capacity. In addition, the AT data were distributed across four classes, thus anaerobic and aerobic exercise data were mixed. Using the Crel classification method enabled data for all ten subjects to be included in the calculation of every data point, but the AT values were still distributed across three classes, resulting in the mixing of anaerobic and aerobic exercise data. However, using the segmented ordinal scale method of classification enabled data from all ten subjects to be included in the calculation of all data points, and it permitted the grouping of the AT values into one class. Thus, this latter method more accurately represents the data of the whole group under study and it allows the metabolic status of the subjects to be taken into consideration.

Adult↗

Exercise testing in special populations: athletes, women, and the elderly.

Exercise testing in special populations such as athletes, women, and the elderly requires additional considerations from the clinician. Different protocols, as well as special accommodations, may be necessary for performing the test. Symptomatic athletes may have a number of cardiac conditions that lead to ischemic changes on the exercise test. Asymptomatic athletes often use serial exercise testing to evaluate the efficacy of training programs. For women and the elderly, assessment of risk factors and evaluation of symptoms are important considerations before performing the exercise test. Negative exercise test findings suggest a low risk for future cardiovascular events. Positive exercise test findings must be interpreted in light of the individual's pre-test probability. Assessment of the needs of these patients allows the clinician to tailor the exercise test to produce useful information.

Adult↗

A basic approach to the interpretation of the exercise test.

For primary care physicians, exercise testing is a cost-effective tool to evaluate patients presenting with symptoms. It helps to stratify those with probable coronary artery disease into a high-risk group needing referral and a low-risk group that can be observed. Each of the five main responses--the presence of myocardial ischemia, the heart rate and blood pressure response, the symptoms, any dysrhythmias, and the maximal aerobic capacity--should be mentioned in the final report. A suggested format for the exercise test report is shown in Table 4. Using the tools of pretest and post-test probability, the severity of disease, and the exercise treadmill scores greatly aids the primary care physician in the management of the patient evaluated with an exercise test.

Aerobiosis↗

Exercise testing and chronic lung diseases in children.

Exercise activity is an important part of daily life for both healthy children and children with respiratory diseases. Overall fitness level and responses to exercise can be assessed through cardiopulmonary exercise tests (using a treadmill or a cycloergometer). In asthmatic children exercise tests are useful to diagnose exercise-induced bronchoconstriction, which may affect up to 80% of asthmatic subjects. In cystic fibrosis patient, as the disease progresses, lung function deteriorates and exercise tolerance likewise diminishes. This reduced tolerance may not be predicted on the base of a standard spirometry while an exercise test can offer useful information. Eventually, exercise testing is useful in children with bronchopulmonary dysplasia to determine any presence and extent of gas exchange and ventilation dysfunction during exercise. Exercise challenges are a valuable tool to assess exercise tolerance that may be not adequately reflected by resting lung function tests.

Child↗

Validity of rating of perceived exertion during graded exercise testing in apparently healthy adults and cardiac patients.

PURPOSE: Recent exercise guidelines recommend a generalized rating of perceived exertion (RPE) range of 12 to 16 (15-point Borg scale) as the perceptual range associated with a physiological training effect. However, whether an individual who selects an RPE within the generalized range during an graded exercise test or exercise training, is actually within the correlated physiological range (50 to 85% maximum oxygen consumption [VO2max]) has not been studied in large samples of apparently healthy individuals or cardiac patients. The purpose of the present study was to assess the validity of the generalized RPE recommendations in a large heterogeneous group of apparently healthy subjects and cardiac patients. METHODS: Subjects included apparently healthy adults (N = 463) and cardiac patients (N = 217) who presented for a sign-symptom limited maximal graded exercise test (SSLMGXT). Ratings of perceived exertion associated with relative exercise intensities of 60 and 80% of maximal heart rate reserve (MHRR) and peak exercise were selected for analyses. RESULTS: Significant interindividual variability in RPE was observed at both relative exercise intensities (6 to 20 RPE range at 60% MHRR; 8 to 20 RPE range at 80% MHRR) for both populations. Thirty-nine percent of healthy subjects and 32% of cardiac patients reported an RPE outside an 11 to 14 range at 60% of MHRR, whereas 32% of healthy subjects and 52% of cardiac patients reported an RPE outside of a 14 to 17 range at 80% of MHRR. Peak RPE was higher for the apparently healthy subjects compared with the cardiac patients (18.8 +/- 1.2 versus 16.5 +/- 1.8; P < 0.01). CONCLUSIONS: These results challenge the applicability of the generalized RPE recommendations described in recent exercise guidelines under typical clinical exercise testing conditions. The basis for the generalized RPE recommendations warrant further investigation. Those who desire to use RPE as a marker of relative exercise intensity during SSLMGXT should take into consideration the large interindividual variability in these measures.

Adult↗

[Cardiopulmonary exercise test in cardiology].

In the cardiopneumologic exercise test, a concomitant analysis of respiratory gas exchange is conducted in addition to the usual cardiologic exercise test: After excluding patients with the habitual contraindications, the test must be conducted with a rigorous methodology, with particular care being given to standardizing the equipment settings before each test and in choosing an individualized protocol allowing a maximal test for a duration of no longer than 10 to 12 minutes. This cardiopneumologic exercise test allows a good assessment of the pneumological pathophysiological factors participating in limited exercise capacity of cardiac origin. It can also help the clinician distinguish cardiac from pulmonary dyspnea, particularly by measuring ventilatory reserves at maximum effort. Most importantly, in clinical practice the test provides an objective and reproducible assessment of the patient's exercise capacity. This allows a functional classification useful for therapeutic decision making, as for example when determining the best moment to propose heart transplantation or when prescribing adapted exercise retraining for a heart failure patient. Finally, the exercise test provides objective evidence of symptom improvement, for example after rehabilitation, an improvement which is one of the mainstay objectives of treatment in patients with cardiac-related exercise intolerance.

Contraindications↗

Single-chamber cardiac pacing with activity-initiated chronotropic response: evaluation by cardiopulmonary exercise testing.

In this study, sequential cardiopulmonary exercise testing was used to assess the physiologic benefits of a single-chamber ventricular pacing system that utilizes a piezoceramic sensor to adjust heart rate by detecting "physical activity." An initial exercise test was conducted with the pacemaker programmed (based on a randomization table) to either the fixed rate (VVI, 70 beats/min) or rate-variable (VVI-Act) mode, and the results were compared with those obtained during a second exercise test in which the pacemaker was programmed to the alternate pacing mode. A 1.5 to 2 hr rest period was permitted between exercise tests, each of which consisted of a symptom-limited constant speed (3.0 mph) Balke protocol with 2 min stages commencing at 0.0% grade with increments of 2.5% at end of each stage. Compared with findings during fixed-rate VVI pacing, VVI-Act pacing was associated with greater exercise-induced positive chronotropic response (mean maximum heart rate VVI-Act 128 +/- 15.3 beats/min vs VVI 90 +/- 28.4 beats/min; p less than .01), prolongation of exercise duration (VVI-Act 10.2 +/- 3.8 min vs VVI 7.7 +/- 2.5 min; p less than .01), increased peak oxygen consumption (VVI-Act 1617 +/- 656 ml O2/min vs VVI 1325 +/- 451 ml O2/min; p less than .01), and onset of anaerobic threshold at a higher oxygen consumption (VVI-Act 1208 +/- 343 ml O2/min vs VVI 1064 +/- 377 ml O2/min: p less than .01). Additionally, of 44 comparable exercise stages tested in the two pacing modes, perceived exertion (assessed by a numerical grading system) was lower in 38 of 44 instances during VVI-Act compared with VVI pacing.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗