The incidence of ventricular arrhythmias in rehabilitated post-myocardial infarction (MI) patients with left ventricular dysfunction included in a long-term rehabilitation program was assessed and compared with that in similar patients who were not in such a program. Thirty-eight post-MI patients (2 to 19 years after the acute event) with ejection fraction <40% were investigated by 48-hour Holter monitoring. They were divided into the following 3 groups: group I, 11 patients who underwent arm training for 60 months; group II, 11 patients who underwent calisthenics for 36 months; and group III, 16 patients who were not in any rehabilitation program; the age of the patients was 61 ± 7, 61 ± 6 and 61 ± 9 years, respectively, (p = not significant). Ejection fraction at rest was 31 ± 9 for group I, 29 ± 7 for group II, and 29 ± 7 for group III (p = not significant). There were no significant differences concerning the location of Ml, and antiarrhythmic treatment received by patients from all groups. At the conclusion of 48-hour Holter monitoring, 2 blood samples were obtained for assessment of norepinephrine (at rest and after postural change). Quality of life was determined by a detailed questionnaire, including questions concerning social activity, life satisfaction and sexual function. After 36 and 60 months, an improvement in hemodynamic condition of patients in group I was noted. Quality of life was higher in the rehabilitated patients, with enhanced emotional stability, satisfaction with work and social life, and a high percentage of return to work (82 vs 40%). The lowest levels of norepinephrine were found in group I and the highest in group III (p < 0.02), whereas they were within normal limits in group II. Isolated ventricular premature beats (>60/hour) were found in 1 (10%), 2 (18%) and 9 (56%) patients (p < 0.05), and complex ventricular arrhythmias in 4 (33%), 3 (27%) and 12 (77%) patients (p < 0.05) in groups I, II and III, respectively. Nonsustained ventricular tachycardia was recorded in 2 patients (17%) from group I with 4 episodes, 2 patients (17%) from group II with 7 episodes, and 6 patients (37%) from group III with 24 episodes (p < 0.03); 3 of the latter patients had complex ventricular arrhythmias also. It appears that a long-term comprehensive rehabilitation program decreases neuroadrenergic activity, the arrhythmogenic effect of catecholamines and consequently, the incidence of ventricular arrhythmias.
Restoration of the patient's physiological, psychological and social capabilities should improve the quality of survival. It is paramount that a multifactorial disease is treated by a multifactorial approach. Until the end of the 1960s rehabilitation was identified with physiotherapy and physical training. It was only during the past two decades that a comprehensive long-term approach was systematically accepted, mainly that physical training is only one therapeutic modality which can be applied in selected groups of coronary patients, and that rehabilitation procedures must include risk factor modifications, change in life habits, and other conservative and/or surgical therapeutic measures. In programmes which are conducted under directed supervision, either in specific cardiac rehabilitation units, or under clinical conditions (particularly in the early rehabilitation phase II), one of the most important goals of CCC is close follow-up, which enables the early detection of deterioration and timely initiation of effective therapeutic measures. Randomized trials have so far produced some meaningful results concerning mortality, while non-randomized controlled trials have also shown a lower mortality in intervention groups. Rehabilitation programmes have to be considered as an integral part of CCC. The early initiation of such comprehensive interventions in the acute phase I, convalescent phase II and maintenance phase III after myocardial infarction may have contributed to the decline in mortality in some countries. Quality of survival can certainly be enhanced by comprehensive rehabilitation; whether or not survival itself can be influenced still remains to be demonstrated.(ABSTRACT TRUNCATED AT 250 WORDS)
Doppler echocardiography is a useful noninvasive determination of left ventricular function during dynamic exercise. Scarce data are available for the use of this technique during heavy isometric exercise. Therefore, Doppler-derived aortic flow indexes were assessed during and after 50% maximal upper-body isometric exercise in 25 healthy men (aged 47 +/- 6 years) and compared with those of 22 men (aged 48 +/- 9 years) who had suffered myocardial infarction. The heart rate increased (p = 0.01) in each of the groups from a mean of 68 +/- 12 at rest to 84 +/- 11 during isometric exercise. At rest, systolic blood pressure was higher (p = 0.05) in the patients with coronary artery disease. During exercise, the patients with cardiac disease, compared with the healthy volunteers, demonstrated a lesser reduction in flow velocity integral, stroke volume, and cardiac indexes (p = 0.001). Immediately on recovery, the patients with cardiac disease, compared with the healthy group, showed significantly greater (p = 0.001) increase in stroke volume and cardiac indexes. At 3 minute's recovery, the stroke volume index continued to increase in the patients with cardiac disease, while the healthy group showed a decrease to below its resting value. Although 50% of maximal upper-body isometric exercise caused similar heart rate and systolic blood pressure responses in healthy patients and patients with cardiac disease, there were significant group differences in Doppler-derived left ventricular systolic function indexes, which were greatest on immediate and 3 minute's recovery. The results suggest that this novel isometric test may be useful in clinical testing.
12 Autologous bone marrow transplantation 168
The implementation of comprehensive coronary care (CCC), including multiple measures involving physical, psychologic, and pharmacologic procedures, together with a new concept of pharmacologic and surgical revascularization, have caused a remarkable improvement in the treatment of coronary patients with angina pectoris. The role of physical training per se is one measure of CCC and one must observe the fact that a single factor cannot be expected to influence a multifactorial disease. The irrefutable evidence that shows that physical training has an effect on longevity is lacking. On the other hand, a number of important physiologic and psychologic benefits have been found to be accompanying a prolonged physical training program in coronary patients suffering from angina pectoris before or after coronary artery bypass graft (CABG). The effect of training is an improvement of cardiocirculatory performance for given work tasks. This includes a decrease of heart rate, systolic blood pressure, the rate-pressure product, an increase of stroke volume, overall physical work performance, oxygen pulse, and in some instances, the rise of the angina pectoris threshold heart rate and threshold rate-pressure product in patients with angina pectoris.
Using technetium scans, this study was aimed at examining possible changes in left ventricular function related to the natural process of cessation of ovarian estrogen production. Fourteen healthy postmenopausal women, divided into two groups according to the time-lapse from menopause (A > 3 years; B < 5 years), underwent a technetium heart scan. The two groups did not differ in heart rate, blood pressure, double product, systemic vascular resistance and cardiac index. The mean endsystolic volume in group A was 14.9 and 25.7 ml/m2 in group B (p = 0.003). The mean pressure/volume ratio was significantly higher in group A than in group B (8.6 vs. 4.7 mm Hg/ml/m2, p = 0.02). Peak ejection rate and peak filling rate were also significantly greater in group A compared to group B (3.3 vs. 2.8 enddiastolic volumes/s, p = 0.02; 2.8 vs. 2.1 end-diastolic volumes/s, p = 0.001, respectively). Our findings suggest that women at an early phase of menopause have a higher degree of myocardial contractility than women of a similar age whose menopause is of longer duration.
This study was aimed to evaluate the effects of tropicamide 0.5 % eye drops on cardiovascular parameters during exercise testing. The study group included 154 healthy subjects (mean age: 44.7 +/- 8 years). The subjects were divided into three groups according to the size of the pupils at the onset of exercise: A: pupils not dilated (n = 27), B: pupils partially dilated (n = 90) and C: pupils widely dilated (n = 37). They were compared to 66 healthy controls (age 43.8 +/- 8) who did not receive the drops. Rest and exercise parameters were affected in groups A and B, while the results of group C resembled those of the controls: (a) resting heart rate - 66.7, 66.6, 70.9 and 69.3, respectively (p = 0.03); (b) heart rate at 50 and 100 W - 104, 107, 110 and 111 (p = 0.01) and 131, 131, 137, 139, respectively (p = 0.01); and (c) peak systolic blood pressure - 192, 186, 183, 175; respectively (p = 0.004). Reanalyzing the data by scoring of visual impairment gave identical results. As a whole, the study group achieved higher work loads than the controls (126 vs. 119 W; p = 0.03). We conclude that the instillation of ocular tropicamide has definite effects on cardiovascular parameters, both at rest and during exercise. Mainly, patients showed a lower heart rate at the initial levels of exercise. However, at symptom-limited level, tropicamide does not influence a patient's ability to achieve the target heart rate, and stress testing results are not altered by the drug.
The aim of this prospective study was to determine the effects of heavy isometric exercise on left ventricular (LV) wall motion patterns in patients who have had myocardial infarction, and to compare heavy isometric exercise with dynamic exercise for competence in eliciting LV wall motion abnormalities at equivalent rate-pressure products. Echocardiography was performed in 42 patients during supine bicycle ergometry and during heavy dynamometer stretching at 50% of maximal voluntary contraction. Systemic vascular resistance increased from 1,484 to 1,649 dynes s cm-5 (p <0.05) during isometric exercise, and decreased significantly during dynamic exercise. Wall motion abnormalities or new asynergy were induced by isometric exercise in 120 segments, 107 of which (89%) showed significant stenosis of the perfusing coronary artery. Hypokinesia was the dominant pattern in the range of 76 to 90% narrowing; akinesia was dominant at 91 to 100% narrowing. Wall motion abnormalities were also documented in 13 segments (11%) assumed to be supplied by vessels with nonsignificant stenosis. Dyskinesia, seen in 7% of the segments, was equally distributed between both groups with significant stenosis. Sensitivity and positive predictive value in identifying specific coronary vessel disease was similar for both isometric and dynamic exercise. In conclusion, heavy isometric exercise in patients who have had myocardial infarction induces wall motion abnormalities of a severity proportional to the degree of coronary narrowing. This exercise method is similar to dynamic exercise for ability in identifying obstructions in a specific vessel. Furthermore, when compared at near-equal rate-pressure products, heavy isometric exercise is far superior in sensitivity to dynamic exercise.
Among primary cardiac diseases, hypertrophic cardiomyopathy (HC) is known for its diverse clinical manifestations1 and different morphologic aspects.2 The clinical picture ranges from an asymptomatic form, corresponding with a mild, nonobstructive ventricular septal hypertrophy, to the disabled patient with impaired cardiac function or even sudden death,3 when a massive myocardial thickening and a very small left ventricular cavity can be found.5 Scarce data are available about the natural history of mild, nonobstructive HC.5 The present study explores this abnormality to see if it progresses to a more severe form of HC and if it results in any complications.
Doppler-derived parameters of aortic flow were examined during heavy isometric exercise in 48 men with coronary artery disease (CAD) and in 48 gender- and age-matched healthy controls. The aim was to determine which parameters best separated the groups and to look for a possible relation between exercise-induced Doppler patterns and the extent of CAD. Isometric exercise was performed with a 2-hand bar dynamometer, and the subjects were required to perform 50% of maximal voluntary contraction for 2 minutes. Examination was performed with a pulsed Doppler transducer positioned at the suprasternal notch. Resting peak flow velocity, acceleration time, stroke volume index and cardiac index did not show significant differences between the groups. However, mean acceleration and stroke work were significantly lower in patients with CAD. In this group, exercise peak flow velocity decreased from 98 +/- 13 to 55 +/- 12 cm/s, flow velocity integral from 14 +/- 3 to 7 +/- 3 cm, mean acceleration from 11 +/- 0.9 to 4.7 +/- 1 m/s/s, and stroke volume index from 41 +/- 6 to 23 +/- 4 ml/m2 (p less than 0.001 for all). Cardiac index decreased from 2.7 +/- 0.4 to 2 +/- 0.2 liters/min/m2 (p less than 0.05). Acceleration time increased from 82 +/- 6 to 116 +/- 7 ms. In most of the indexes, the directional changes induced by isometric exercise were similar in patients with CAD and in normal control subjects. The differences compared with the rest values were significantly greater in the CAD group, and especially in patients presenting with 3-vessel disease.(ABSTRACT TRUNCATED AT 250 WORDS)
Hemodynamic and left ventricular responses were studied echocardiographically in 20 males (31.5 +/- 4.5 yrs) and 20 females (30.4 +/- 4.3 yrs) at rest and during 3 min of isometric deadlift exercise at 30% of maximum voluntary contraction. Maximal tension exerted was significantly (P less than .001) lower in the female group (87.4 +/- 8.1 kg) compared with the male group (127.3 +/- 15 kg). Significant (P less than .001) increases in heart rate and contractility index were noted in both groups during exercise compared to the resting values. Mean arterial blood pressures were significantly (P less than .05) higher in the males at rest and during exercise. Ejection fraction and fractional shortening, both at rest and during exercise, differed significantly (P less than .05) between the two groups. It was raised by exercise only in the males (from 62 +/- 5% to 65 +/- 5% and 32 +/- 4% to 35 +/- 4%, respectively) but remained unchanged in the females. No significant changes in end diastolic dimension and stroke volume were observed in either group during exercise. End systolic dimension was significantly (P less than .001) lower during exercise in females and males (from 3.25 +/- .23 to 3.1 +/- .26 and 3.12 +/- .33 to 3.00 +/- .32 cm, respectively). These data indicate that hemodynamic and left ventricular function in normal male and female subjects were augmented during submaximal isometric exercise. However, females do so with lower after-load than males.
We compared the response to dynamic exercise in 157 females (mean age 19 +/- 3 years) with borderline hypertension (BH) to findings in 105 normotensive controls. Near-maximal physical working capacity was 90 +/- 17 W in females with BH and 71 +/- 23 W for the controls (p less than 0.001). Mean heart rate, systolic and diastolic blood pressure, and pulse pressure levels both at rest and at exercise were significantly higher in BH patients (p less than 0.001 for all). Mean change between rest and exercise for all the above parameters was not significantly different among BH patients compared with controls. Nonspecific ST-T changes at rest (p less than 0.001) and exercise (p less than 0.005) were more common and mean corrected QT interval was significantly longer (p less than 0.001) in BH patients. The parallel exercise response that we found in BH and normotensives would not appear to substantiate the view that ergometry is particularly useful as a modality for diagnosing hypertension in young females.
Amultistage submaximal exercise test was performed on 1347 apparently healthy men aged 39.8 ± 4 years. Of these, 49 showed a hypotensive response which was defined as a failure of systolic blood pressure (SBP) to rise during exercise by >20mmHg above the resting value, or a fall of 10mmHg when compared with the previous workloads. An aged-matched group of 200 healthy men with a normal blood pressure response to exercise, was selected for the control group. Excluding 13 of the hypotensive group and 52 of the controls who were lost to follow-up, all subjects were retested after 4 years and again after 8.9 years. After 4 years, no significant changes from baseline were found in symptoms or in clinical findings After 8.9 years, however, the following was noted: (A) exercise induced ST segment horizontal depression of > 1mm, was observed in 4/36 (11.1%) of the hypotensive group, and 5/148 (3.4%) of the control group; (B) 3/4 in the hypotensive group, and 3/5 in the control group with exercise induced ST changes of >1mm, had typical stable angina pectoris; (C) two men from the hypotensive group and none in the control group had a transmural myocardial infarction. The results suggested that a hypotensive SBP response to multistage exercise may be an additional indicator of early coronary disease in symptom free healthy individuals.
Although exercise training is an accepted part of comprehensive coronary care programs in patients with coronary artery disease, it still remains to be demonstrated whether or not exercise training should also be applied to patients with impaired ventricular function. Circumstantial evidence exists that patients with impaired ventricular function may eventually benefit from an individually adapted exercise training program provided that contraindications for acceptance of cardiac patients to such a program are well observed. Our study is based on 22 patients with impaired ventricular function, of which 18 were at least 6 months after a Q-wave myocardial infarction and the remaining 4 after coronary artery bypass grafting. Eleven patients with impaired left ventricular function performing upper extremity (arm) ergometry were followed up for 36 months. These patients were trained twice weekly with exercise periods of 30 min duration. The reason for choosing arm ergometry training was that the peak heart rate obtained in arm ergometry is higher when compared to leg ergometry. Rate-pressure product and heart rate were higher for given submaximal work tasks in arm ergometry, while maximal work aerobic capacity was found to be lower in comparison to leg work. The assessment of our patients was based on cardiopulmonary testing, continuous electrocardiographic monitoring (48 h), two-dimensional echocardiography and equilibrium multigated radionuclide ventriculography (99mTc). Group 1, consisting of 11 patients with left ventricular ejection fraction (LVEF) 30.1 +/- 9.5%, were trained by arm exercise for 3 years with a significant increase in work capacity and LVEF. Group 2 consisted of 11 patients with LVEF 25.5 +/- 6.8% who underwent a 12 months' calisthenic program. Peak work capacity and LVEF remained unchanged.(ABSTRACT TRUNCATED AT 250 WORDS)
32 patients with stable angina and a positive symptom-limited exercise test (SLET) were investigated in a double-blind randomized trial in order to assess the therapeutic efficacy of bopindolol or atenolol on the incidence of angina pectoris and on angina pectoris threshold heart rate (ATHR). After a washout and placebo period of 2 weeks, each of the two drugs were applied in dosages of 0.5 mg bopindolol and 50 mg atenolol. The dosage was increased every month up to 2 mg bopindolol and 200 mg atenolol. At the end of every period, the patients were retested by SLET. After 3 months of active treatment, we noticed that the incidence of anginal attacks was lower in the bopindolol group (2.45 vs. 3.29). The resting heart rate was also lower in the bopindolol group (55.89 vs. 63.38). No statistical significance was found between the peak work rate, ATHR, exercise duration and S-T depression. The rate-pressure product was lower in the bopindolol group. We concluded from this that bopindolol and atenolol are active in decreasing the incidence of angina, the former being more effective. Exercise performance and cardiocirculatory parameters did not differ between the two groups.
Of 38 post-myocardial infarction (MI) applicants for a cardiac rehabilitation program, 17 (45%) did not have ischemic ECG changes in exercise testing. Ten (59%) of these 17 patients had echocardiographic wall motion abnormalities at rest. Immediate postexercise two-dimensional echocardiography demonstrated exercise-induced changes in 8 (47%) patients (2 with normal and 6 with abnor mal results from rest studies). The comparative radionuclide (RNA) examina tions showed that there were 6 patients with abnormal findings from rest RNA; exercise-induced changes were detected in 7 (44%) of 16 patients (3 with normal and 4 with abnormal results from rest RNA tests). Statistical analyses, using RNA as reference point, revealed that the total correctly diagnosed cases for the echocardiographic rest studies was 13/17 (77%) and for the exercise studies, 13/16 (81%). The negative predictive values were 7/7 (100%) and 7/8 (88%), respectively. The corresponding positive predictive values were 6/10 (60%) and 6/8 (75%). The same pattern was observed when each segment (septal, apical, and posterolateral) was evaluated separately. The authors conclude that in post- MI patients with a negative stress test, the efficacy of postexercise echocardiog raphy equals that of RNA in the identification of additional patients with ische mia.
Of a total of 1,435 healthy untrained asymptomatic individuals referred for a routine periodic checkup, 23 subjects with exertional hypotension on upright bicycle stress testing were identified. All were male. This study assesses by means of echocardiography the responses to exercise of left ventricular (LV) volumes, ejection fraction and segmental LV contractility in these subjects. Exertional hypotension was defined as a decrease in systolic blood pressure to below the resting value at the end of stress test. Supine systolic blood pressure after exercise was significantly greater in the control group than in the study group (179 vs 121 mm Hg, respectively; p less than 0.001); there was no significant intra- or intergroup difference in the resting values. In the study group end-systolic volume was 37 ml at rest and 35 ml after exercise; ejection fraction varied from 65% at rest to 63% after exercise. The sex- and age-matched control group with a normal systolic blood pressure response to exercise showed a shift from 35 to 23 ml and 65 to 77%, respectively (p less than 0.01 and 0.001). Ejection fraction correlated well with radionuclide angiography values. Exertional hypotension was noted after both upright and supine exercise. The pattern of regional wall motion remained unchanged or was hypokinetic in 87% of the subjects; only 13% presented the normally expected hyperkinesia after exercise. This study demonstrates that exertional hypotension is accompanied by an abnormal LV performance.