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Marianne Lafitte

Publications and source records attributed to Marianne Lafitte.

3 recordsLinked to original sources

Prevalence of metabolic syndrome after acute coronary syndrome and its prognostic significance.

Metabolic syndrome (MS) consists of a cluster of metabolic and hemodynamic disorders that promote the development of atherosclerosis and increase cardiovascular morbidity/mortality. We evaluated the prevalence and characteristics of MS after acute coronary syndrome (ACS) and the effect of intensive risk factor management on the morbidity/mortality associated with MS in a therapeutic cohort; 480 consecutive patients were summoned 3 months after an ACS for cardiovascular evaluation and management. Follow-up was carried out 16 months later. At 3 months after ACS, prevalence of MS was 20.8%, as assessed by criteria of the National Cholesterol Education Program Adult Treatment Panel III and 27.7% according to the definition of the International Diabetes Federation. The most common metabolic disorders were abdominal obesity, hypertriglyceridemia, and fasting hyperglycemia. Characteristics of the initial ACS showed no significant difference between the MS and non-MS groups. Atherosclerotic extent was greater in the MS group according to Adult Treatment Panel III. At follow-up, the MS and non-MS groups achieved optimal low-density lipoprotein cholesterol and blood pressure levels. During follow-up, there was an increase in total mortality in the MS group compared with the non-MS group (5.2% vs 1.4%, p <0.01) as assessed by International Diabetes Federation criteria; however, no difference in minor or major cardiovascular events was found between the 2 groups. In conclusion, MS was highly prevalent after an ACS, notably in young patients, and was not associated with a specific ACS presentation.

Acute Disease↗

Dynamic ventricular dyssynchrony: an exercise-echocardiography study.

OBJECTIVES: We sought to assess the effects of exercise on ventricular dyssynchrony in patients with normal and depressed left ventricular (LV) function. BACKGROUND: Asynchronous myocardial contraction adversely influences ventricular function and is associated with a poor prognosis in heart failure. Exercise-induced changes in ventricular dyssynchrony may be an important determinant of dynamic changes in cardiac output and mitral regurgitation. METHODS: A total of 65 consecutive heart failure patients and 50 matched healthy control patients underwent exercise echocardiography. Conventional and tissue Doppler parameters were measured before and during symptom-limited exercise. Left ventricular dyssynchrony was defined as the standard deviation of 12 LV segmental electromechanical delays. Analysis of the control group allowed delimitation of normal cutoff values. RESULTS: In patients with normal left ventricular function, exercise did not modify the extent of LV asynchrony. In contrast, in heart failure patients, LV dyssynchrony increased by at least 20% in 34%, remained stable in 37%, and decreased by at least 20% in 29%. Moreover, 26% of heart failure patients had either exercise induction or normalization of ventricular dyssynchrony. A significant association was found between exercise-induced changes in dyssynchrony and the presence of ischemic cardiomyopathy (p < 0.05). Rest-exercise differences in ventricular dyssynchrony were correlated with changes in cardiac output and mitral regurgitation (r = -0.63 and 0.56, respectively). CONCLUSIONS: In heart failure patients, exercise can alter the magnitude of ventricular dyssynchrony. Some patients have a response to exertion with induction of ventricular dyssynchrony, whereas others show normalization. Changes in ventricular dyssynchrony during exercise correlate with alterations in cardiac output and mitral regurgitation.

Aged↗

Global and regional myocardial function quantification by two-dimensional strain: application in hypertrophic cardiomyopathy.

OBJECTIVES: Recently, a novel method to measure strain from standard two-dimensional images has been developed. Our goal was to characterize global and regional systolic function abnormalities using this technique in patients with hypertrophic cardiomyopathy (HCM). BACKGROUND: Strain has been proposed as a sensitive tool to detect early systolic function abnormalities in HCM. However, the clinical application of conventional Doppler-derived strain has been limited by poor reproducibility and angle dependency. METHODS: Echocardiographic examinations were performed in 26 patients with nonobstructive HCM and 45 healthy subjects. Using a dedicated software package, bidimensional acquisitions were analyzed to measure longitudinal and transverse strain in apical views and circumferential and radial strain in parasternal short-axis view. RESULTS: Despite apparently normal left ventricular systolic function, all components of strain were significantly reduced in HCM. Average longitudinal, transverse, circumferential, and radial strain in patients with HCM and controls were -15.1 +/- 6.2% versus -20.3 +/- 5.6%, 23.3 +/- 17.0% versus 27.2 +/- 14.9%, -16.8 +/- 7.1% versus 19.6 +/- 5.2%, and 25.2 +/- 13.9% versus 36.8 +/- 17.2%, respectively (all p < 0.001). In patients with asymmetrical HCM, longitudinal septal strain was significantly lower than for other left ventricular segments combined: -9.2 +/- 4.7% versus -12.7 +/- 7.1% (p = 0.001). Average interobserver and intraobserver variabilities were 11% and 11.3%, respectively. CONCLUSIONS: Two-dimensional strain is a new simple, rapid, and reproducible method to measure different components of systolic strain. This technique identified early abnormalities in patients with HCM that have apparently normal left ventricular systolic function.

Cardiomyopathy, Hypertrophic↗