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Biomedical subjects

M F Rousseau

Publications and source records attributed to M F Rousseau.

At least 19 recordsLinked to original sources

Circulating urotensin II levels in moderate to severe congestive heart failure: its relations with myocardial function and well established neurohormonal markers.

Urotensin II (UII) is a potent vasoactive cyclic peptide thought to play a role in myocardial hypertrophy and remodelling. We therefore determined UII plasma levels in congestive heart failure (CHF) patients and its relationship with the severity of the disease and well-established markers of left ventricular function. UII was significantly higher in CHF patients (n = 57) than in controls (n = 48) [geometric mean (pg/ml), 95% PI: 1.32 (0.67-2.59) versus 0.84 (0.31-1.61), p < 0.0001], was related to the functional class of the disease and correlated negatively with left ventricular ejection fraction (r = -0.316, P = 0.016). Furthermore, UII correlated significantly with Big-ET1 (r = 0.32, p = 0.03), BNP (r = 0.42, p = 0.005) but poorly with Nt-proANP (r = 0.28, p = 0.07). Our results suggest that UII could play a role in worsening the course of congestive heart failure and is associated with established markers of cardiovascular dysfunction.

Aged↗

Cardiac and hemodynamic effects of intravenous dofetilide in patients with heart failure.

This study assesses the effects of dofetilide, a new selective Ikr blocker with class III properties, on left ventricular function and hemodynamics of heart failure and compares these effects with those of placebo and amiodarone. Because available antiarrhythmic drugs may depress myocardial performance, an invasive hemodynamic study was performed to assess the safety of this agent. Hemodynamic and angiographic data were obtained at baseline and after 30 minutes of double-blind infusion of dofetilide (8 microg/kg; n = 12), placebo (n = 12), or amiodarone (5 mg/kg; n = 6) in heart failure patients (New York Heart Association class II or III, ejection fraction <35%). Intravenous dofetilide preserved the inotropic indexes and the end-systolic volume index despite a slight but significant decrease in heart rate, whereas intravenous amiodarone increased end-diastolic and end-systolic volume indexes. Amiodarone induced a negative inotropic effect illustrated by a rightward shift of the pressure-volume loop and a reduction in pressure-derived indexes of contractility. Intravenous dofetilide acutely prolonged QT interval more than intravenous amiodarone; however, dofetilide did not slow the overall relaxation rate and reduced QT dispersion. In an acute setting, compared with intravenous amiodarone, intravenous dofetilide preserves cardiac function offering a hemodynamic advantage to treat arrhythmias in patients with impaired left ventricular function.

Adult↗

Direct comparison between endothelin-1, N-terminal proatrial natriuretic factor, and brain natriuretic peptide as prognostic markers of survival in congestive heart failure.

BACKGROUND: Endothelin-1 (ET-1) and cardiac natriuretic peptide plasma concentrations have prognostic significance in congestive heart failure (CHF). However, their respective prognostic values in this setting have never been directly compared. METHODS AND RESULTS: We studied the prognostic performances of ET-1, N-terminal proatrial natriuretic factor (N-proANF), and brain natriuretic peptide (BNP) to predict the long-term cardiac mortality in fully treated patients with CHF. Peripheral plasma concentrations of the 3 peptides were measured in 109 patients (left ventricular ejection fraction [LVEF] < 35%) in New York Heart Association (NYHA) functional classes II (n = 65) or III to IV (n = 44). The outcome of the patients was evaluated 3 years after the beginning of the study, and a Cox regression model was used to identify predictors of death. Plasma concentrations of the 3 peptides increased with the severity of heart failure. By univariate analysis, 6 parameters were significantly associated with death during follow-up: ET-1 level, NYHA classes III to IV, N-proANF level, BNP level, LVEF, and age (all P < .01). By multivariate analysis, only ET-1 level and, to a lesser extent, N-proANF level contributed significantly and independently to risk stratification (chi2 = 53.4 and 12.8; P < .0001 and P < .001, respectively). CONCLUSION: In a group of patients in whom the vast majority were administered angiotensin-converting enzyme inhibitor therapy, plasma ET-1 and N-proANF concentrations identify better than several clinical markers a very high-risk group, fairly amenable to heart transplantation or new therapies.

Aged↗

Cardiac natriuretic peptides for diagnosis and risk stratification in heart failure: influences of left ventricular dysfunction and coronary artery disease on cardiac hormonal activation.

BACKGROUND: Cardiac natriuretic peptides are activated in heart failure. However, their diagnostic and prognostic values have not been compared under the routine conditions of an outpatient practice. METHODS: We studied the diagnostic and prognostic value of plasma N- and C-terminal peptides of the atrial natriuretic factor prohormone (N-proANF and ANF respectively) and brain natriuretic peptide (BNP) to evaluate the severity of congestive heart failure (CHF) as reflected by the New York Heart Association (NYHA) classification and to predict its 2-year mortality. Peripheral plasma concentrations of the three natriuretic peptides were measured in 27 normal subjects (CTR), in 32 patients with coronary artery disease (CAD) and normal left ventricular ejection fraction and in 101 patients with chronic CHF in functional classes I and II (n = 61) or III and IV (n = 40). RESULTS: Plasma concentrations of the three peptides increased in the presence of CHF in relation to its severity (P < 0.01). BNP was unable to distinguish CTR from CAD, just as ANF could not differentiate CAD from CHF I-II; only N-proANF displayed a significant and continuous increase from CTR to CAD, CHF I-II and III-IV. Receiver-operating characteristic curves showed better evaluation of the degree of CHF by BNP than by ANF or ejection fraction (P < 0.05). Assessment of the 2-year prognosis revealed that N-proANF and BNP were the best independent predictors of outcome after the NYHA classification. These peptides identify a very high-mortality group. CONCLUSION: Plasma N-proANF and BNP concentrations are good indicators of the severity and prognosis of CHF in an outpatient practice. CAD does not stimulate BNP as long as ventricular dysfunction is not present, although increased N-proANF levels in this setting suggest an early humoral activation.

Aged↗

Dose-related hemodynamic and electrocardiographic effects of the calcium promoter BAY y 5959 in the presence or absence of congestive heart failure.

OBJECTIVES: The aim of this study was to assess the cardiovascular effects of BAY y 5959, a calcium promoter modulating myocardial calcium channels, in the presence or absence of congestive heart failure. BACKGROUND: There is still a clinical need for short-term administration of intravenous positive inotropes. BAY y 5959 was developed as a new approach to increase myocardial performance by selectively enhancing calcium influx in the myocytes. METHODS: Forty-one patients (21 without and 20 with congestive heart failure) were studied in an open label, dose-ranging study. Hemodynamic variables (including left ventricular [LV] angiography) and plasma samples were obtained at baseline and after 20 min of intravenous infusion of BAY y 5959 at doses ranging from 0.25 to 4.5 microg/kg body weight per min. RESULTS: In both study groups, BAY y 5959 produced dose-dependent increases in the indexes of inotropic state, without affecting isovolumetric relaxation rate. The magnitude of the response was comparable in patients with or without heart failure (average 38% increase in maximal first derivative of LV pressure [dP/dt max] at plasma levels of 100 microg/liter). BAY y 5959 also induced mild but statistically significant bradycardia and significantly decreased end-systolic volume while producing a leftward shift of the pressure-volume loop. Mean aortic pressure was unaffected at doses up to 3.0 microg/kg per min, and cardiac index improved in patients with heart failure at doses of 2.0 microg/kg per min (+23%, p < 0.05). However, at a dose of 4.5 microg/kg per min, mean aortic pressure and LV systolic wall stress increased, suggesting systemic vasoconstriction. The QT interval was also prolonged significantly at most doses. CONCLUSIONS: BAY y 5959 exhibits positive inotropic effects in patients with and without heart failure. The optimal response--combining bradycardia, reduced preload and improved cardiac output--appeared to be achieved at a dose of approximately 2.0 microg/kg per min. The impact of QT prolongation with regard to potential antiarrhythmic or proarrhythmic effects is unclear at this time.

Calcium Channel Agonists↗

Hemodynamic and cardiac effects of the selective T-type and L-type calcium channel blocking agent mibefradil in patients with varying degrees of left ventricular systolic dysfunction.

OBJECTIVES: This study sought to assess the hemodynamic and cardiac effects of two dose levels of mibefradil in patients with varying degrees of ischemic left ventricular dysfunction. BACKGROUND: Mibefradil is a new, selective T-type and L-type calcium channel blocking agent. Because L-type channel blockade may depress myocardial performance, an invasive hemodynamic study was performed to assess the safety of this agent. METHODS: We performed an open label study, examining the effects of two intravenous doses of mibefradil, selected to produce plasma levels comparable to those measured after oral administration of 50 mg (dose 1: 400 ng/ml) or 100 mg (dose 2: 800 ng/ml) of the drug. Variables studied included the indexes of left ventricular function and neurohormone levels. Patients were stratified according to ejection fraction (EF) (> or = 40%, n = 26; < 40%, n = 24) and the presence (n = 15) or absence (n = 35) of heart failure. RESULTS: In patients with preserved systolic function, dose 1 had no clinically significant hemodynamic effects, but dose 2 decreased mean aortic pressure and systemic vascular resistance (-8.5 mm Hg, -12%, both p < 0.01) and also reduced end-systolic stress and volume, thus improving EF (52% to 58%, p < 0.01). Heart rate tended to decrease. In patients with depressed EF, heart rate decreased significantly with both doses. The effects of dose 1 mimicked those observed after dose 2 in patients with preserved EF. Dose 2 (plasma levels 1,052 +/- 284 ng/ml) still decreased left ventricular systolic wall stress and improved EF (24.0% to 28.5%, p < 0.05) but also significantly depressed the maximal first derivative of left ventricular pressure. Examination of individual pressure-volume loops in two patients with heart failure showed a clear rightward shift of the loop despite a decrease in systolic pressure, suggesting negative inotropy. Neurohormone levels were unchanged at both dose levels and in all subgroups. CONCLUSIONS: Intravenous mibefradil was well tolerated and produced an overall favorable cardiovascular response. However, high plasma concentrations might produce myocardial depression in patients with heart failure, and caution should be exerted in this setting.

Adult↗

Medium-term effects of beta-blockade on left ventricular mechanics: a double-blind, placebo-controlled comparison of nebivolol and atenolol in patients with ischemic left ventricular dysfunction.

The aim of this study was to compare the effects on left ventricular function and exercise tolerance of a selective beta-antagonist (atenolol) with those of another selective beta 1-antagonist with vasodilator properties (nebivolol) in patients with ischemic left ventricular dysfunction but no overt congestive heart failure. Beta blockers are widely used in ischemic heart disease, but their effects on left ventricular mechanics and exercise tolerance are poorly defined in the subgroup of patients with significant systolic dysfunction but without clinical evidence of ischemia or congestive heart failure. Angiographic and symptom-limited exercise data were obtained at baseline and after an 8-10-week double-blind treatment with placebo (n = 10), 50 mg atenolol daily (n = 10), or 2.5 mg (n = 10) or 5 mg (n = 10) nebivolol daily. When compared to placebo, both atenolol and nebivolol reduced resting heart rate and improved left ventricular ejection fraction (from 33.9 to 39.2% with atenolol and from 36.5 to 40.8% with nebivolol, both P < .05) while lowering mean systolic wall stress. Only nebivolol, however, produced a parallel downward shift of the pressure-volume relationship during early diastolic filling and improved the early peak filling rate when compared to placebo (+ 10%, P < .05). When compared to baseline, maximal exercise duration increased by 7 and 13 seconds with placebo and atenolol, respectively (both NS vs baseline), and increased by 44 seconds with nebivolol (P = .0077 vs baseline). Both atenolol and nebivolol decreased maximal exercise heart rate; the reduction was more pronounced with atenolol. Prolonged beta 1-adrenoceptor blockade leads to a significant increase in left ventricular ejection fraction in patients with ischemic left ventricular dysfunction. The dissociation between the changes in resting left ventricular function and the changes in exercise duration suggests that in this clinical setting, the changes in systolic function may have less impact on functional capacity than an improvement in diastolic distensibility during the rapid filling phase.

Adrenergic beta-Antagonists↗

Contractile state is the major determinant of functional outcome in patients with left ventricular dysfunction treated with enalapril.

Large-scale drug trials have focused primarily on mortality and morbidity and less on the functional state of the myocardium. A model was developed to assess myocardial contractile state in patients with left ventricular (LV) dysfunction and to address the questions of differences in function between patients with and without overt heart failure, effects of enalapril, and best predictors of functional outcome. Pressure-angiographic data were obtained from 16 patients with overt heart failure and 47 without heart failure. Repeat studies were conducted in 41 patients following 1 year's treatment with enalapril or placebo. Left ventricular silhouettes were divided into 18 segments to estimate regional ejection fraction, wall stress and myocardial damage (% myocardial damage). Contractile state was assessed and ranked by ejection rate-preload-afterload relationships and by a score method based on 10 myocardial and ventricular function parameters. End-diastolic and end-systolic volumes (EDV, ESV) were significantly greater (P < 0.001), ejection fraction (EF) lower (P < 0.009), % myocardial damage greater (P < 0.008) and contractile state more depressed in patients with overt heart failure. Changes in EDV and ESV (delta placebo vs delta enalapril) were significant (delta EDV, P < 0.003; delta ESV, P < 0.014). Directional shifts in the diastolic pressure-volume relationships with enalapril or placebo depended primarily on the basal contractile state and diastolic volume range. The best single predictors of post-treatment EF were the score index (a surrogate parameter for the contractile state) and ESV. Added benefits of enalapril include the prevention of further dilatation in patients with less depressed contractile state and delay in the onset of heart failure. Asymptomatic patients with LV dysfunction should also be considered for angiotensin converting enzyme (ACE) inhibitor therapy.

Blood Pressure↗

Progression of left ventricular dysfunction secondary to coronary artery disease, sustained neurohormonal activation and effects of ibopamine therapy during long-term therapy with angiotensin-converting enzyme inhibitor.

Left ventricular function and neurohormonal status in patients with heart failure remaining symptomatic during therapy with angiotensin-converting enzyme inhibitors were assessed, and the effects of dopaminergic receptor stimulation in this setting were determined. Neurohormonal and left ventricular function (radionuclide angiography) data were obtained in 19 patients with symptomatic ischemic heart failure. Measurements were repeated after 4 to 6 weeks of therapy with the dopamine agonist ibopamine (100 mg, 3 times/day) or placebo administered in a double-blind, randomized, parallel group design. At baseline, despite therapy with enalapril, the angiotensin II levels (mean 39.4 pg/ml; p < 0.01 vs controls) were significantly increased, as were plasma norepinephrine (497 +/- 240 pg/ml; p < 0.01 vs controls), endothelin-1, atrial natriuretic peptide and arginine vasopressin. Moreover, in comparison with pretreatment values, left ventricular ejection fraction had decreased substantially (-9.1%) in patients with plasma norepinephrine > or = 600 pg/ml, but not in those with lower values of norepinephrine. With ibopamine, plasma norepinephrine decreased from 516 +/- 241 to 391 +/- 208 pg/ml (n = 8; p < 0.025 vs placebo), whereas it increased with placebo. In conclusion, the neurohormonal control provided by an angiotensin-converting enzyme inhibitor is reduced in a large subset of patients during prolonged therapy; ibopamine appears to be a potentially useful drug to improve neurohormonal control in this setting.

Aged↗

Effects of ranolazine on left ventricular regional diastolic function in patients with ischemic heart disease.

To assess the effects of ranolazine, a new antiischemic drug, on regional myocardium of the left ventricle, left ventricular (LV) hemodynamic and angiographic data were obtained in 15 patients with previous transmural myocardial infarction before and after intravenous infusion of ranolazine (200 or 500 micrograms/kg body weight). LV angiogram was analyzed by the area method and was divided into six segments. Regional LV segments were classified as normal (perfused by intact coronary vessels, n = 20), ischemic (perfused by stenotic vessels but without ECG evidence suggesting myocardial necrosis, n = 25), or infarcted (total coronary occlusion and with the ECG evidence for necrosis, n = 45). Regional area fractional shortening, peak filling rate, and segmental wall motion during isovolumic relaxation period were analyzed. After ranolazine, regional area fractional shortening was unchanged in all segments. However, regional peak filling rate was decreased in the normal segments (1499 +/- 315 to 1368 +/- 303 mm2/sec, p < 0.05). In the ischemic segments, by contrast, the administration of ranolazine significantly increased the regional peak filling rate (1050 +/- 410 to 1133 +/- 439 mm/sec, p < 0.05) and regional wall lengthening during the isovolumic relaxation period (0.9 +/- 4.1% to 2.8 +/- 5.7% of end-diastolic segmental area, p < 0.05), which indicates an improvement of regional diastolic function. Infarct segments were little affected by ranolazine. Thus, ranolazine improves diastolic function of the noninfarcted myocardium under chronic ischemic conditions and also may exert a mild negative lusitropic effect on the normal myocardium, although the former beneficial effect appears to be more clinically important.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetanilides↗

Neurohormones in patients with ischemic left ventricular dysfunction.

Measurements of plasma neurohormones in patients with left ventricular dysfunction are generally performed for research purpose rather than for diagnostic purpose or to guide therapy. These studies have shown that in patients with left ventricular dysfunction, several neurohormonal systems were activated, even in the absence of symptoms of congestive heart failure. This suggested that the cardiovascular system was not in a steady state and pointed out potential culprits for the progression of the disease. It has also been shown that the levels of several of these markers, particularly plasma norepinephrine, had an important prognostic value. Another value of neurohormonal studies obviously is the design of new therapeutic approaches aimed at improving symptoms and prognosis. In this respect, important therapeutic successes have been obtained with agents that interfere with the actions of some of these neurohormonal systems, such as with the use of the angiotensin-converting enzyme (ACE) inhibitors, particularly captopril and enalapril, and to a lesser extent, with beta-blockers. It can therefore be expected that, in the future, most patients with severe ischemic dysfunction will be treated with an ACE inhibitor. Nonetheless, neurohormonal control is not complete with these drugs; powerful vasoconstrictor forces, such as endothelin-1, remain activated, and an escape of angiotensin II from the control of ACE inhibition may exist. Thus, morbidity (e.g., progression towards congestive heart failure and angina pectoris) and mortality remain high despite treatment with ACE inhibitors. In the search for future improvements, the new generation of long-acting dihydropyridines is worth considering. Their afterload reducing action, coupled with powerful coronary vasodilation, might hypothetically delay the progression of ischemic LV dysfunction.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin-Converting Enzyme Inhibitors↗

Effects of nisoldipine therapy on myocardial perfusion and neuro-hormonal status in patients with severe ischaemic left ventricular dysfunction.

The effects of nisoldipine on regional myocardial perfusion and neuro-hormonal status were assessed in a double-blind, placebo-controlled study of 32 patients. All patients had ischaemic left ventricular dysfunction, with a left ventricular ejection fraction between 25% and 35%; per protocol, they were stratified according to concomitant use of ACE inhibitors. After baseline measurements at rest, including single photon emission computed tomography (SPECT) with Tc-MIBI, plasma neuro-hormones (norepinephrine, renin, arginine vasopressin, atrial natriuretic peptide) and echocardiography, the patients were randomized to nisoldipine (core coat tablet, 20 mg once daily; n = 16) or placebo (n = 16). Measurements were repeated after 8 weeks. SPECT data were analysed qualitatively (visual comparison by blinded observer) and quantitatively to derive an index of hypoperfusion representing the percentage of the left ventricular mass with Tc-MIBI activity below normal. At baseline, all patients had left ventricular areas with reduced Tc-MIBI uptake and 29 patients also had increases in plasma neuro-hormones. With nisoldipine, the extent of hypoperfusion (quantitative analysis) was reduced in 8/14 patients vs only 2/14 patients with placebo (P = 0.046, 2-tailed test). The benefit of nisoldipine was similar in patients with or without ACE inhibitor therapy and was also confirmed by the visual analysis of the data. Further, none of the neuro-hormones examined was significantly modified by nisoldipine. Thus, chronically underperfused areas are present at rest in patients with ischaemic left ventricular dysfunction, and nisoldipine significantly improved Tc-MIBI uptake in these areas without evidence of detrimental changes in plasma neuro-hormones.(ABSTRACT TRUNCATED AT 250 WORDS)

Arginine Vasopressin↗

Intracardiac angiotensin-converting enzyme inhibition improves diastolic function in patients with left ventricular hypertrophy due to aortic stenosis.

BACKGROUND: Cardiac hypertrophy is associated with elevated intracardiac angiotensin-converting enzyme activity, which may contribute to diastolic dysfunction. METHODS AND RESULTS: We infused enalaprilat (0.05 mg/min) for 15 minutes into the left coronary arteries of 20 adult patients with left ventricular (LV) hypertrophy due to aortic stenosis (mean aortic valve area, 0.7 +/- 0.2 cm2) and 10 patients with dilated cardiomyopathy (mean ejection fraction, 35 +/- 4%) and assessed (1) simultaneous changes in LV micromanometer pressure and dimensions, (2) LV regional wall motion analyzed by the area method, and (3) Doppler flow-velocity profiles. Systemic neurohormonal activation did not occur with the selective left coronary artery infusion; there were no changes in plasma renin activity, angiotensin-converting enzyme activity, or atrial natriuretic peptide. In patients with aortic stenosis, LV end-diastolic pressure declined from 25 +/- 2 to 20 +/- 2 mm Hg (P < .05). LV pressure-volume and LV pressure-dimension relations showed downward shifts by ventriculography and echocardiography, respectively, indicating improved diastolic distensibility. Regional area change during isovolumic relaxation increased in the anterior segments perfused with enalaprilat but decreased in the inferior segments, indicating acceleration of isovolumic relaxation in the anterior segments and reciprocal shortening in the inferior segments. Regional peak filling rate increased in the anterior segments but not in the inferior segments, and the regional area stiffness constant decreased in the anterior segments but not in the inferior segments. There were no changes in heart rate, cardiac output, or right atrial pressure, excluding alterations in right ventricular/pericardial constraint. In contrast, in the patients with dilated cardiomyopathy the decrease in LV end-diastolic pressure from 22 +/- 2 to 18 +/- 2 mm Hg (P < .05) was accompanied by a significant fall in right atrial pressure (9 +/- 1 to 6 +/- 1 mm Hg), implicating alterations in pericardial constraint. The patients with dilated cardiomyopathy showed no improvement in regional diastolic relaxation, filling, or distensibility. CONCLUSIONS: Intracoronary enalaprilat at a dosage that did not cause systemic neurohormonal activation improved LV diastolic chamber distensibility and regional relaxation and filling in patients with LV hypertrophy due to aortic stenosis. In contrast, these effects of intracoronary enalaprilat on diastolic function were not observed in patients with dilated cardiomyopathy who did not have concentric hypertrophy. These observations support the hypothesis that the cardiac renin-angiotensin system is activated in patients with concentric pressure-overload hypertrophy and that this activation may contribute to impaired diastolic function.

Aged↗

Regional remodeling and nonuniform changes in diastolic function in patients with left ventricular dysfunction: modification by long-term enalapril treatment. The SOLVD Investigators.

OBJECTIVES: The purpose of the present study was to assess the process of late regional remodeling and the changes in regional diastolic function at the base and apex of the left ventricle in patients with chronic systolic dysfunction. BACKGROUND: Remodeling has been suggested to play an important role in the progression of left ventricular dysfunction and heart failure. However, the regional difference in the process of late remodeling and its relation to diastolic function remain unclear. METHODS: In 32 patients with previous myocardial infarction and left ventricular ejection fraction < or = 35%, left ventricular hemodynamic and angiographic data were studied before and 1 year after randomization to conventional therapy with placebo (n = 12) or enalapril, 10 mg twice daily (n = 20). Left ventricular regional wall dynamics were analyzed in the basal and apical regions by the area method. RESULTS: In the placebo group, left ventricular end-diastolic and end-systolic regional areas increased significantly over time at the base but were unchanged at the apex. At the base, the diastolic left ventricular pressure-regional area relation shifted rightward and the regional stiffness constant decreased (6.9 +/- 4.3 to 5.0 +/- 3.1 x 10(-3) mm-2, p < 0.05), indicating an increase in regional distensibility. At the apex, however, the diastolic pressure-regional area relation shifted upward slightly, and the regional stiffness constant increased from 11.5 +/- 4.4 to 14.4 +/- 5.6 x 10(-3) mm-2 (p = 0.08). The regional peak filling rate was maintained at the base but decreased at the apex (1,014 +/- 436 to 762 +/- 306 mm2/s, p < 0.05); further, the changes in regional peak filling rate during follow-up were inversely related to the changes in the regional stiffness constant (r = -0.78, p < 0.001) at the apex. In contrast, in the enalapril group, end-diastolic and end-systolic regional areas significantly decreased over time both at the base and at the apex. Diastolic pressure-regional area relations shifted leftward, but the regional stiffness constant and regional peak filling rate did not change significantly either at the base or at the apex. CONCLUSIONS: These findings suggest that in patients with severe systolic left ventricular dysfunction, there was a regional difference in the process of late remodeling between the base and apex of the left ventricle, which was associated with nonuniform changes in regional diastolic function in the placebo group. The data also suggest that the nonuniform progression of regional remodeling and diastolic dysfunction was prevented by long-term enalapril treatment.

Cardiac Catheterization↗

Wall motion asynchrony is a major determinant of impaired left ventricular filling in patients with healed myocardial infarction.

Left ventricular (LV) diastolic filling is impaired in hearts with healed myocardial infarction. Possible hemodynamic parameters related to impaired LV filling include left atrial pressure, time constant of isovolumic relaxation, chamber stiffness and wall motion asynchrony. Previous studies demonstrated univariate correlations between each of these parameters and LV filling. The current study was designed to compare relative importance of these parameters in patients with a myocardial infarction. Left ventriculograms with simultaneous LV pressure measurement were analyzed in 15 patients with a myocardial infarction and in 10 control subjects. Every frame of the left ventriculogram was divided into 8 segments and the volume of each segment was obtained frame-by-frame by planimetry and area-length method. Asynchrony was quantitated as the sum of areas of discrepancy between each segmental and global volume-time curve. Patients with myocardial infarction had greater asynchrony (20 +/- 2 vs 10 +/- 1%, p < 0.01), greater atrial filling fraction (46 +/- 4 vs 35 +/- 5%, p < 0.05) and slower peak early filling rate (2.5 +/- 0.1 vs 4.1 +/- 0.4 end-diastolic volume/s, p < 0.01) than the control subjects. Multiple regression analyses with hemodynamic variables (asynchrony, LV pressure at mitral valve opening, time constant of LV isovolumic pressure decrease and LV chamber stiffness constant) showed that asynchrony and LV pressure at mitral valve opening were significant determinants of LV filling in patients with myocardial infarction, whereas LV pressure at mitral valve opening was the only significant determinant in control subjects.

Analysis of Variance↗

Changes in ventricular volume, wall thickness and wall stress during progression of left ventricular dysfunction. The SOLVD Investigators.

To assess the long-term changes in cardiac function in asymptomatic patients with severe left ventricular dysfunction, left ventricular (cineangiography) and right ventricular (radionuclide angiography) function were assessed at baseline in 49 patients enrolled in the prevention arm of the Studies of Left Ventricular Dysfunction. After an average follow-up period of 12.4 months, 30 patients (11 randomized to the placebo group and 19 to the enalapril group) could be restudied to assess the progression of ventricular dysfunction. After 1 year of follow-up, the changes in heart rate, left ventricular end-diastolic and systolic pressure and right ventricular volumes were comparable in both groups. However, there were modest but opposite changes in left ventricular end-diastolic volume (+9 ml/m2 with placebo vs. -10 ml/m2 with enalapril, p < 0.05) and end-systolic volume (+5 ml/m2 with placebo vs. -13 ml/m2 with enalapril, p < 0.05). Mean systolic wall stress increased insignificantly in both groups, whereas ejection fraction increased from 29% to 31% in the placebo group and from 28% to 32% with enalapril (p = NS, placebo vs. enalapril). Even in asymptomatic patients with severe left ventricular dysfunction, there was a slow progression of left ventricular dilation. Enalapril administration appeared to slow this progression, but wall stress was not normalized by the treatment at the doses used in the study, indicating that at least one of the stimuli for further remodeling remained present.

Adult↗