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[Relationship between ventricular arrhythmia and cardiac function in Chagas disease].

PURPOSE: It is well established the association between heart failure and arrhythmias in different cardiopathies. There are no studies in Chagas' myocardiopathy that analyze the relation between arrhythmias and left ventricular function. METHODS: We studied 629 patients with Chagas' disease, divided in 3 groups, according to ejection fraction obtained through echocardiographic study (normal, between 0.64 and 0.45, and below 0.44). RESULTS: At conventional ECG, the presence of ventricular arrhythmias was respectively in the 3 groups: 15%, 36% and 64%, showing higher incidence when left ventricular function was getting worse. CONCLUSION: Ventricular arrhythmias in Chagas' disease are frequent in patients with normal ejection fraction, and become more intense as ventricular dysfunction progresses.

Adolescent↗

Cardiac function during vagus escape.

It is generally believed that the stimulation of vagus nerve has no direct effect on ventricular myocardium. But recent work has demonstrated clear-cut negative inotropic effect of vagal stimulation on ventricles. In an attempt to study further the effect of vagal stimulation on heart, 15 dogs were studied hemodynamically under nembutal anaesthesia. Bilateral vagotomy caused 9% elevation of heart rate whereas arterial pressure and cardiac output increased by 5% and 3% respectively. Stroke volume output decreased by 8%. Stimulation of the cut peripheral end of vagus caused cardiac standstill followed by vagus escape. During the steady state of vagus escape there was marked reduction in arterial pressure, heart rate and cardiac output, but the stroke volume was significantly elevated above the mean control. These findings suggest that when heart rate decreases, the stroke volume increases in order to restore the decreased cardiac output and that this happens inspite of the negative inotropic effect of vagal stimulation. Thus the Frank-Starling mechanism has a very significant role in an intact organism with normal hemodynamics.

Animals↗

[Comparative activity of ethaverine and papaverine on chronotropic and dromotropic cardiac functions in the anesthetized dog].

Ethaverine inhibits both atrioventricular conduction and heart rate, starting at a dosage of 1 mg/kg, injected i.v. into the anaesthetized dog. In the experimental conditions used, ethaverine is clearly different from papaverine, which stimulates both at a dosage between 1 and 10 mg/kg, and which only produces an inhibitory effect starting at a dosage of 20 mg/kg, with the appearance of cardiotoxic phenomena. After total cardiac denervation the inhibitory action of ethaverine persists partially, especially at the atrioventricular level, which is probably due to a direct effect on the heart muscle. The observed differences can hardly be explained by a more pronounced cardiac toxicity. Consequently, the ethyl-derivative of papaverine constitutes, in certain aspects, a molecule with original pharmacological properties.

Animals↗

The impact of prolonged exercise in a cold environment upon cardiac function.

PURPOSE: The purpose of the present study was to examine the impact of cold exposure coupled with prolonged exercise upon postexercise left ventricular (LV) function and markers of myocardial damage. METHODS: colon; Eight highly trained male athletes (mean +/- SD; age: 28.2 +/- 8.8 yr; height: 1.78 +/- 0.07 m; body mass: 74.9 +/- 7.6 kg; VO2max: 65.6 +/- 7.0 mL x kg(-1) x min(-1)) performed two 100-mile cycle trials, the first in an ambient temperature of 0 degrees C, the second in an ambient temperature of 19 degrees C. Echocardiographic assessment was completed and blood samples drawn before, immediately postexercise, and 24-h postexercise. Left ventricular systolic (stroke volume [SV], ejection fraction [EF], and systolic blood pressure/end systolic volume ratio [SBP/ESV]) and diastolic (early [E] to late [A] filling ratio [E:A]) parameters were calculated. Serum was analyzed for creatine kinase isoenzyme MB (CK-MBmass) and cardiac troponin T (cTnT). cTnT was analyzed descriptively whereas other variables were assessed using two-way repeated-measures ANOVA. RESULTS: No significant change was observed in systolic function across time or between trials. A significant difference between trials was observed in E:A immediately after exercise (1.4 +/- 0.4 [19 degrees C] vs 1.8 +/- 0.3 [0 degrees C]) (P < 0.05). CK-MBmass was significantly elevated immediately after exercise in both trials (P < 0.05). Positive cTnT concentrations were observed in two subjects immediately after the 19 degrees C trial (0.012 microg x L(-1) and 0.034 microg x L(-1)). CONCLUSIONS: Cycling 100 miles in an ambient temperature of 19 degrees C is associated with an acute change in diastolic filling that is not observed after prolonged exercise at 0 degrees C. Prolonged exercise is associated with minimal cardiac damage in some individuals; it appears that this is a separate phenomenon to the change in diastolic filling.

Adult↗

Cardiac function and metabolism during cholinergic stimulation in the newborn lamb.

This study was designed to assess the influences of cholinergic stimulation on coronary flow (CF), oxygen metabolism (MVO2) and contractility (MC) of the left ventricle in the newborn. Nineteen lambs, 1-7 days of age, were anesthetized with pentobarbital (20 mg/kg) and prepared for continuous measurement of CF, heart rate (HR), aortic (AP) and left ventricular end-diastolic (LVEDP) pressures, dP/dt max, and cardiac output (CO). HR, AP, and CO could be controlled as desired. Simultaneous arterial and sinus blood samples were analyzed for O2 content, hematocrit, pH, PO2, and PCO2. LV MVO2 and %O2 extraction (Ext) were calculated. Acetylcholine (ACh) infusion (30-50 microgram/min-kg) caused an increase of LVEDP (4 cmH2O), but no significant change in dP/dt max or HR with constant AP and CO. CF increased by 44%, but MVO2 per beat was unchanged. Similar changes were observed with constant HR (pace). Suramaximal efferent stimulation of right or left vagus nerves produced bradycardia (77-68 beats/min) but no significant changes in contractility, CF, Ext, or MVO2. These findings were unaltered by beta blockade. The changes elicited by ACh infusion or vagal stimulation were abolished by giving atropine. It is concluded that although cholinergic sensitivity can be demonstrated, vagal stimulation does not importantly influence MC, CF, or MVO2 in the lamb. This may relate to incomplete development of the adrenergic system.

Acetylcholine↗

Effect of acute hypoxia on cardiac function in alloxan-diabetic dogs.

The aim of the present study was to examine the left ventricular and haemodynamic parameters during acute hypoxia induced by carbon monoxide intoxication and/or after norepinephrine administration in metabolically healthy and alloxan-diabetic dogs. In metabolically healthy animals after carbon monoxide intoxication followed by norepinephrine administration myocardial oedema occurred with a concomitant elevation of diastolic stiffness in the left ventricular wall, resulting in impaired cardiac performance. In the alloxan-diabetic animals no myocardial oedema developed and therefore no further increase of the originally elevated left ventricular diastolic stiffness could be observed. Close correlations were demonstrable between the enhanced water content and diastolic stiffness of the left ventricular wall in metabolically healthy animals as well as between the myocardial contractile force and cardiac output index in both control and diabetic dogs. In contrast to the controls, following norepinephrine administration per se decrease of cardiac performance could be observed in the alloxan-diabetic animals. Based on these results, it can be concluded that an increase of left ventricular diastolic stiffness impairs the cardiac performance in acute hypoxia following norepinephrine administration both in control and in diabetic animals, even if different reasons are responsible for it.

Animals↗

Chronic endothelin receptor blockade attenuates progressive ventricular dilation and improves cardiac function in rats with myocardial infarction: possible involvement of myocardial endothelin system in ventricular remodeling.

BACKGROUND: Left ventricular dilatation after myocardial infarction is associated with impaired ventricular function and heart failure and has important implications for survival. The purpose of this study was to investigate the role of endothelin-1 (ET-1) in ventricular dilatation and the effects of chronic endothelin receptor blockade by a mixed ET(A) and ET(B) receptor blocker (bosentan) on the circulating and cardiac endothelin systems. METHODS AND RESULTS: Three hours after coronary ligation or sham operation, bosentan (100 mg x kg body wt(-1) x d(-1)) or placebo was given by gavage. Seven days and 8 weeks after surgery, hemodynamic and left ventricular volume studies were performed. Acute bosentan treatment (7 days) had no effects on hemodynamic parameters and early left ventricular dilatation. In the rats with large infarcts, chronic bosentan treatment (8 weeks) versus placebo reduced left ventricular systolic pressure (116+/-2 versus 125+/-3 mm Hg, P<.05) and arterial pressure (93+/-2 versus 103+/-3 mm Hg, P<.05), improved stroke volume index (0.69+/-0.06 versus 0.52+/-0.04 mL/kg, P<.05), and prevented in part the rightward shift of the pressure-volume curve. Chronic bosentan treatment also decreased ET-1 levels (390+/-33 versus 475+/-22 pg/g tissue, P<.05) and density of ET-1 receptors (262+/-24 versus 346+/-31 fmol/mg protein, P<.05) in left ventricular myocardium. CONCLUSIONS: In the present study, a mixed ET(A) and ET(B) receptor antagonist (bosentan) partially prevented left ventricular dilatation and improved hemodynamics, suggesting that endothelin plays a role in left ventricular remodeling after myocardial infarction. Supporting this hypothesis, we show inhibitory effects of bosentan on the peripheral and myocardial endothelin system.

Animals↗

Comparison of cardiac function in surgically corrected and congenitally corrected transposition of the great arteries.

The capacity of the anatomic right ventricle to sustain normal function against systemic pressure long after atrial baffle procedures in patients with complete transposition of the great arteries remains unknown. Pulmonary and systemic ventricular function was measured by first-pass radionuclide studies in 11 children 7 +/- 3 years (+/- standard deviation) after baffle procedures. For comparison, similar measurements were made in eight patients with isolated congenitally corrected transposition of the great arteries and in 10 children in a control group. Exercise increased heart rate and cardiac index to similar levels in all three groups. Ventricular volumes were greater than control volumes in both groups with congenital heart disease. Exercise increased pulmonary ventricular ejection fraction in the control and congenitally corrected groups, but not in the surgically corrected group. Systemic ventricular ejection fraction increased during exercise in the control group, but remained unchanged in both transposition groups. These results show that cardiac index during exercise is maintained in patients after baffle procedures for complete transposition of the great arteries. However, pulmonary and systemic ventricular ejection fractions fail to increase with exercise, and ventricular volumes are markedly greater than normal.

Adolescent↗

Beat-to-beat evaluation of cardiac function in low-dose endotoxemia using a conscious sheep model.

The effects of very low doses of endotoxin (20 ng/kg/h for 8 h) were evaluated in a conscious sheep model in which introducers for catheters for monitoring pressure and ventricular dimensions had been previously inserted so that the studies could be performed without anesthesia and without a previous thoracotomy. Analog data was obtained at hourly intervals for 10 h and again at 24 h and was used to construct a beat-to-beat analysis of left ventricular performance. Only minimal effects were observed on heart rate, end diastolic pressure, arterial pressure, cardiac output, or cardiac work, although there was a significant rise in pulmonary artery pressure at 1 h of infusion. Despite the absence of changes in heart rate, preload, or afterload, maximal dp/dt decreased significantly by 4 h and remained decreased for the 10-h observation period; it returned to normal at 24 h. End systolic elastance decreased at 6 h and Pmax/EDV, a new indicator of performance, also decreased at 6 and 9 h. Thus, systolic performance decreased. Negative dp/dt did not change, but time for relaxation from 80% to 20% of peak ventricular pressure increased significantly at 5, 6, and 8 h. Plasma TNF-alpha was also measured and showed a significant rise at 2 h, but rapidly decreased thereafter. These results indicate an early depression of myocardial contractility and distensibility at doses of endotoxin insufficient to produce measurable effects on arterial pressure or cardiac output.

Animals↗

Effects of moderate hypertension on cardiac function and metabolism in the rabbit.

To study the early effects of hypertension on the heart, we examined isolated hearts from rabbits with slowly developing hypertension of up to 64 weeks in duration after unilateral nephrectomy and renal artery stenosis. Normotensive animals kept under identical conditions served as controls. Mean arterial blood pressure rose from 83 to 155 mm Hg in the hypertensive group of longest duration, but the ratio of left ventricular weight to body weight was not different between the experimental and control groups. Although left ventricular hypertrophy was not present, left ventricular peak systolic pressure of perfused hearts was significantly higher in hypertensive than in normotensive hearts. Furthermore, while in hypertensive hearts the left ventricular end-diastolic volume was increased, the peak systolic pressure did not respond to an increase in left ventricular end-diastolic volume. Functional changes were accompanied by metabolic changes in the left ventricle. Rates of glucose utilization were increased and rates of ketone body utilization were decreased in hypertensive hearts. Activities of key enzymes of carbohydrate metabolism (phosphorylase, hexokinase, phosphofructokinase, and lactate dehydrogenase) were increased, while those of ketone body metabolism (3-oxoacid-CoA transferase, acetoacetyl-CoA synthase) were decreased and those of the citric acid cycle (citrate synthase, 2-oxoglutarate dehydrogenase) were not different between groups. In summary, moderate hypertension for a period of more than 1 year resulted in functional and metabolic changes of the left ventricle in hypertensive animals that were already manifest at 8 weeks of hypertension.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Cardiac function in neuropeptide Y Y4 receptor-knockout mice.

Autonomic control of cardiovascular function in neuropeptide Y (NPY) Y4 receptor-knockout mice was investigated using pancreatic polypeptide (PP), NPY and specific agonists and antagonists for other NPY receptors well characterised in cardiovascular function. Y4 receptor-knockout mice, anaesthetised with sodium pentobarbitone, displayed slower heart rate, indicated by a higher pulse interval and lower blood pressure compared to control mice. After vagus nerves were cut heart rate increased but was still significantly slower than in control mice. PP had no effect on blood pressure or cardiac vagal activity in either group of mice, which was consistent with earlier studies in other species. Injection of NPY evoked an increase in blood pressure but the response was significantly reduced in Y4 receptor-knockout mice compared to the controls. The reduction in pressor activity was not Y1 mediated as the selective Y1 antagonist, BIBP 3226, was effective in blocking NPY pressor activity in knockout mice. In addition, cardiac vagal inhibitory activity evoked by low doses of NPY was also reduced when compared to control responses. As N-acetyl [Leu(28, 31)] NPY 24-36 inhibited vagal activity dose dependently in both groups of mice with no difference in response at any dose, it is unlikely that this effect also is receptor mediated. We propose that the reduced vasoconstrictor and vagal inhibitory activity evoked by NPY in Y4 receptor-knockout mice is due to a lack of adrenergic tone bought about by a proposed reduction in sympathetic activity, possibly resulting from altered NPY activity secondarily affecting adrenergic transmission. We conclude that Y4 receptor deletion disrupts autonomic balance within the cardiovascular system.

Animals↗

Effects of hypertension and coronary constriction on cardiac function, morphology, and contractile proteins in rats.

In an attempt to elucidate the effects of two major risk factors of heart failure in humans, high blood pressure and coronary artery disease, renal hypertension and coronary artery constriction were induced singularly and in combination in rats, and the functional, structural, and biochemical alterations of the myocardium were examined 12-13 wk later. Renal hypertension (RH), coronary narrowing (CN), and their association (NH) resulted in left ventricular failure demonstrated by a significant increase in left ventricular end-diastolic pressure, a decrease in +dP/dt and -dP/dt, and a reduction in stroke volume and cardiac output. Measurements of ventricular loading documented that RH was characterized by elevations in systolic and diastolic wall stress of 42 and 160%, respectively. Corresponding changes with NH were 80 and 315%. CN was accompanied by an augmentation of diastolic wall stress only (280%). The abnormalities in mural stress were coupled with reductions in systolic and diastolic wall thickness-to-chamber radius ratios of 39 and 29% after CN. These anatomic parameters were preserved with RH, whereas the systolic wall thickness-to-chamber radius ratio was reduced 31% with NH. Structurally, multiple foci of replacement fibrosis were found with each intervention. The sites of tissue injury and their volume percent in the myocardium were comparable with CN and RH but were significantly more numerous and occupied a larger fraction of the ventricular wall in the presence of NH. Biochemically, the calcium dose-response curve of myofibrillar Mg2+ adenosinetriphosphatase (ATPase) activity did not vary with CN, RH, and NH. In contrast, a marked decrease in Ca2+ myosin ATPase activity was found in NH rats in association with a shift in myosin isoenzymes from V1 to V3. In conclusion, multiple physiological, morphological, and biochemical factors may participate in the generation of the abnormalities in ventricular loading with hypertension and/or coronary artery stenosis.

Animals↗

Cardiac function in chronic bronchitis: effects of pacing and plasma expansion.

1. We have investigated left ventricular function in 25 selected patients with chronic bronchitis by use of atrial pacing and plasma volume expansion. Nine subjects had a past history of acute respiratory failure. None had either clinical or electrocardiographic signs of coronary heart disease. Paradoxical pulse was absent, since the difference between the highest and lowest systolic arterial pressure throughout the respiratory cycle was 5.4 +/- 1.5 mmHg. 2. During atrial pacing, at a mean rate of 145 +/- 15, about 80% of the predicted maximal rate, none of the patients showed anginal pain or ventricular repolarization abnormality. Cardiac output remained unchanged compared with control values. 3. Plasma volume expansion was achieved by intravenous injection of 1 litre of gelatin over 30 min. Cardiac output, pulmonary wedge pressure and right atrial pressure rose as reported in literature for normal subjects. In four patients cardiac output did not increase although wedge pressure and right atrial pressure did; two of these four patients also had an overshoot in pulmonary wedge pressure just after atrial pacing, suggesting left ventricular dysfunction. Three out of 25 patients had high control right atrial pressures, probably in relation to impaired right ventricular function. No paradoxical pulse occurred during plasma volume expansion. Therefore competition for space in the pericardium between ventricles was unlikely. 4. Our data suggest that left ventricular dysfunction is rare in patients with chronic obstructive pulmonary disease. There was no significant difference between subjects with and without a past history of acute respiratory failure.

Adult↗

Assessment of cardiac function by CMR.

Cardiovascular magnetic resonance (CMR) has emerged as a valuable tool for the non-invasive morphological and functional assessment of the heart. By means of a variety of pulse sequences, accurate estimations of ventricular mass, volumes, ejection fraction and flow volume can be readily performed. When carefully prescribed, CMR sequences provide values on these parameters that can be considered as referential for both the right and left ventricle. This is due to the anatomical approach of the CMR method that, in contrast with other imaging techniques, is based on direct measurements rather than on indirect geometrical assumptions.

Cardiac Volume↗

Cardiac function is a risk factor for paralysis in thoracoabdominal aortic replacement.

PURPOSE: We studied factors that influence paralysis risk, renal function, and mortality in thoracoabdominal aortic replacement. METHODS: We prospectively collected preoperative demographic and intraoperative physiologic data and used univariate and multivariate analyses to correlate this data with risk factors for paralysis. A mathematical model of paraplegia risk was used to study the efficacy of paraplegia reduction strategies. We analyzed preoperative and operative factors for paralysis risk, renal function, and mortality for 217 consecutive patients surgically treated from 1984 through 1996 for 176 thoracoabdominal and 41 thoracic aneurysms at the University of Wisconsin Hospital and Clinics. No patient had intercostal reimplantation or assisted circulation. One hundred fifty patients (group A) received cerebrospinal fluid drainage (CSFD) and low-dose naloxone (1 microg/kg/hour) as adjuncts to reduce the risk of paralysis. Sixty-seven patients (group B) did not receive CSFD and naloxone. RESULTS: Seventeen deficits occurred in 205 surviving patients: 5 of the 147 in group A (expected deficits = 31) and 12 of the 58 in group B (expected deficits = 13) (p < 0.001). In a multivariate logistic regression model, acute presentation, Crawford type 2 aneurysm, group B membership, and a decrease in cardiac index with aortic occlusion remained significant risk factors for deficit (p < 0.0001). By odds ratio analysis, group A patients had 1/40th the risk of paralysis of group B. The only significant predictor of postoperative renal function was the preoperative creatinine level (p < 0.0001); renal revascularization significantly improved renal function. The mortality rate was 1.6% (2) for patients undergoing elective treatment and 21% (19) for patients who had acute presentations. Acute presentation, age, and the preoperative creatinine level were found to be significant factors for operative mortality in a logistic regression model (p < 0.001) and defined a group at high risk for death. CONCLUSIONS: CSFD and low-dose naloxone significantly reduce the paralysis risk associated with thoracoabdominal aortic replacement. A decrease in the cardiac index with aortic occlusion is a previously unreported variable that defines a subset of patients at higher risk for paralysis.

Adolescent↗

Effects of nitroglycerin on cardiac function and regional blood flow distribution in conscious dogs.

The effects of intravenous infusion of nitroglycerin (NTG), 8 and 32 microgram/kg.min for 7 min, and of sublingual NTG, 1.2 mg, were examined on direct and continuous measurements of systemic, coronary, and regional hemodynamics, left ventricular (LV) dimensions, pressures, and myocardial contractility in conscious dogs. NTG induced sustained reductions in LV dimensions and transient increases in heart rate and dP/dt, and decreases in mean arterial pressure. Initially NTG increased cardiac output and flows to the coronary, mesenteric, renal, and iliac beds, while systemic and regional vascular resistances fell. Later, cardiac output, cardiac work, and mesenteric and iliac flows fell significantly below control, and significant vasoconstriction in the systemic as well as mesenteric, iliac, and coronary beds was observed at a time when LV end-diastolic dimensions were still significantly reduced. Peripheral vasoconstriction was not observed with systemic NTG in deafferented dogs or when NTG, 1 microgram/kg.min, was infused intra-arterially into the iliac bed. Thus, systemic NTG induces a biphasic response consisting of initial arteriolar vasodilation followed by vasoconstriction in the mesenteric, iliac, coronary and systemic beds, which is presumably due to longer lasting effects on preload and to secondary reflex responses to the drug.

Administration, Oral↗

Myocardial metabolism in relation to electrocardiographic changes and cardiac function during graded hypoxia in the fetal lamb.

Previous studies from this laboratory have demonstrated early and progressive alterations in the ST-T period of the fetal and neonatal electrocardiogram in relation to asphyxia. The aims of the present study were to investigate the metabolic background of these hypoxic ECG changes by means of serial myocardial biopsies in fetal lambs, relating these changes to the hypoxic depletion of glycogen, ATP and creatine phosphate stores in the heart and to the altered myocardial performance as measured by heart rate, mean arterial blood pressure, combined cardiac output and max. dP/dt. The experiments were performed on 21 fetal lambs, acutely exteriorized and subjected to graded hypoxia. During hypoxia there was a significant relationship between the degree of changes in the ST-T period according to a scoring system and the depletion of myocardial glycogen and ATP, a highly significant correlation between the rate of myocardial glycogenolysis and the rate of increase in T wave amplitude, and a parallelism between the amount of glycogen available and fetal cardiovascular function. The myocardium was capable of regenerating its glycogen stores under conditions of adequate oxygenation and in the absence of acidosis and hypoglycaemia.

Adenosine Triphosphate↗