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Biomedical subjects

A Celentano

Publications and source records attributed to A Celentano.

At least 19 recordsLinked to original sources

Relation of insulin resistance to markers of preclinical cardiovascular disease: the Strong Heart Study.

BACKGROUND AND AIMS: To investigate whether insulin-resistance influences echocardiographic markers of preclinical disease, independent of significant confounders. METHODS AND RESULTS: We examined 1,471 (59 +/- 8 years) non-diabetic individuals (WHO criteria) with available echocardiograms from the Strong Heart Study cohort. Among them, 530 subjects had arterial hypertension (62% on medications), 152 had impaired glucose tolerance (GT) and 460 were normotensive, non-obese with normal GT. Insulin resistance was estimated by the Homeostasis Model Assessment (HOMA). LV mass, systolic function measured at the endocardium and the midwall (also correcting for circumferential wall stress) and arterial compliance (stroke volume/pulse pressure as a percent of predicted from body weight, age and heart rate [delta %SV/PP]) were measured by echocardiography, as prognostically validated markers of preclinical disease. HOMA-index was related positively to body mass index (BMI), waist/hip ratio (WHR), blood pressure, left ventricular (LV) mass, and negatively to arterial compliance (all p < 0.005) in the whole population, as well as in separate normotensive or hypertensive groups. In multiple regression models, relation of HOMA-index with the markers of risk was adjusted for age, sex, WHR, body mass index, presence of hypertension and number of antihypertensive medications. In this analysis, neither LV mass nor indices of systolic function were independently related to HOMA-index. In contrast, HOMA-index maintained a significant negative association with delta %SV/PP, independent of demographics, hypertension, treatment and body fat distribution. Also, HOMA-index maintained an independent relation with LV mass, when WHR and BMI were not included in the regression model. CONCLUSIONS: After accounting for relevant biological covariates, including body mass and fat distribution, insulin-resistance measured by HOMA is not an independent correlate of LV mass and function, but negatively influences arterial compliance.

Aged↗

Serum cholesterol affects blood pressure regulation.

A close relationship between abnormalities of the lipid metabolism and arterial hypertension has been observed in several epidemiological studies. The aim of the present study was to investigate whether serum cholesterol might affect blood pressure (BP) levels at rest, during ambulatory monitoring or during sympathetic stimulation-independently of other variables such as body weight or serum insulin-thus influencing the outcome of hypertensive complications. Seventy-three patients with sustained newly-discovered and never-treated hypertension were divided into tertiles according to their serum cholesterol levels and their resting BP, 24-h BP and BP during isometric exercise (handgrip) were compared. Cardiac mass and carotid wall thickness were measured by echographic technique. The results were that tertiles were similar for body weight, blood glucose and serum insulin, but different for serum cholesterol and triglycerides. BP at rest and during 24-h monitoring was similar in the three groups, whilst a significant difference was detected during sympathetic stimulation by handgrip, with systolic and diastolic BP increasing by 16/12, 28/19 and 30/23 mm Hg (P < 0.01) in lower, medium and higher tertiles, respectively. Intima-media layer of the carotid arteries was also significantly thickened in the groups with higher cholesterol levels (0.54 +/- 0.07, 0.67 +/- 0.14, 0.68 +/- 0.15, P < 0.05). These data support the conclusion that even in patients with recently discovered hypertension, cholesterol levels may influence the BP response to adrenergic stimulation as well as the outcome of target organ disease.

Adolescent↗

Clinic and ambulatory pulse pressure segregate a cluster of cardiovascular risk factors.

Office pulse pressure (PP) has been found to be independently associated with cardiovascular morbidity and mortality. While there is evidence that 24 h blood pressure (BP) is a better marker of the cardiovascular complications of hypertension than office BP, this information is still lacking in regard to PP. The aim of the present study was, therefore, to evaluate possible differences between office and 24 h PP in their relationship with cardiovascular risk profile. This cross-sectional study was performed in a group of 175 (104 M, 71 F) hypertensives (43 never treated before the study) free of clinical evidence of target organ disease. BP was measured at rest and during 24 h monitoring; cardiac structure and function was studied by ultrasounds; biochemical analyses were performed to evaluate some parameters of lipid and carbohydrate metabolism. Patients were divided into tertiles of office PP and of 24 h PP. Those in the highest tertile of PP had a significantly higher office and 24 h systolic BP along with a reduction in peripheral insulin sensitivity. Regarding cardiac structure and function, a significantly higher prevalence of concentric left ventricular hypertrophy (23 vs 55%; P=0.05) and an initial impairment of diastolic function with increase of the A wave was detected in hypertensives with higher PP. No difference between office and 24 h PP in detecting patients at higher cardiovascular risk was observed. In conclusion, office and 24 h pulse pressures were both able to segregate patients with a cluster of cardiovascular risk factors.

Adult↗

Inappropriate left ventricular mass in normotensive and hypertensive patients.

We evaluated cardiovascular features of normotensive and hypertensive adults with left ventricular (LV) mass values exceeding levels predicted for given stroke work, gender, and height, termed "inappropriate" LV mass. Inappropriate LV mass is associated with overweight, concentric LV geometry, and low myocardial systolic function not only in hypertensive subjects, but also in normotensive subjects.

Adult↗

Appropriate or inappropriate left ventricular mass in the presence or absence of prognostically adverse left ventricular hypertrophy.

OBJECTIVES: To evaluate whether assessment of appropriateness of left ventricular mass (LVM) adds to the traditional definition of left ventricular hypertrophy (LVH). DESIGN: Cross-sectional, relational. METHODS: Echocardiographic LVH and appropriateness of LVM were studied in 562 subjects (231 normotensive controls, aged 35+/-11 years, 142 women; 331 hypertensive patients, aged 47+/-11 years, 135 women) classified on the basis of either the presence or the absence of both LVH (LVM index > or = 51 g/m2.7) and inappropriate LVM (LVM > 128% of the value predicted by an equation including age, sex and stroke work). RESULTS: Body mass index was comparable in hypertensive patients and controls. Hypertensive patients without LVH but with inappropriate LVM (n = 21) had higher relative wall thickness and total peripheral resistance than all other groups, whereas cardiac output was lower (all P < 0.001). Midwall mechanics was normal with appropriate LVM, independently of presence of LVH, whereas it was depressed in inappropriate LVM, either with or without LVH (both P < 0.0001). There was no substantial difference in ejection fraction among controls and hypertensive groups. Stress-corrected midwall shortening was more closely related to deviation of LVM from the value appropriate for stroke work, body size and gender (r = -0.56, P < 0.0001) than to LVM index (r = -0.26). CONCLUSIONS: Inappropriate LVM is associated with concentric geometry, high peripheral resistance and depressed wall mechanics. The deviation of LVM from the value appropriate for stroke work, body size and sex correlates with measures of myocardial function better than LVM.

Adolescent↗

Relation of hemodynamics and risk factors to ventricular-vascular interactions in the elderly: the Cardiovascular Health Study.

OBJECTIVE: To investigate the interaction between left ventricular (LV) geometry, carotid structure and arterial compliance in relation to hemodynamic stimuli and risk factors (plasma cholesterol, body mass index, insulin resistance, smoking habit, age, sex and race). DESIGN: Cross-sectional. METHODS: Echocardiography and carotid ultrasound were performed in 2375 elderly subjects without signs or history of prevalent cardiovascular disease, diabetes or renal disease (795 men; 298 non-whites; 1215 hypertensive), from the cohort of the Cardiovascular Health Study. Arterial compliance was estimated by the prognostically validated ratio of stroke volume to pulse pressure (SV/PP) as the percent deviation (Delta%) from the value predicted by individual age, heart rate and body weight. RESULTS: Intima-medial thickness (IMT) was higher in the presence of LV hypertrophy (LVH) in normotensive and hypertensive subjects and was greatest in the presence of concentric LVH. Maximum carotid lumen diameter (CLD) was also higher in the presence of LVH (and was greatest with eccentric LVH, in association with relatively high values for stroke volume). After adjusting for blood pressure, maximum carotid lumen diameter was directly correlated with stroke volume, and IMT to LV mass (all P < 0.001). Similarly, IMT was also related to maximum carotid lumen diameter, independently of prevalent risk factors (P < 0.001). SV/PP-Delta% was reduced in both groups with concentric LV remodeling (both P < 0.0001) or concentric LVH (both P < 0.05). Adjusting for risk factors did not affect these associations in normotensives, but made them insignificant in hypertensives. In normotensives, IMT was inversely related to SV/PP-Delta% (P < 0.001), independently of risk factors, whereas no significant relation was found in hypertensives. CONCLUSIONS: The magnitudes of carotid intima-medial thickness and lumen diameter parallel levels of LV mass and geometry, and are directly related to stroke volume and arterial stiffness; this interaction is most evident in the presence of normal blood pressure, whereas it is affected by other cardiovascular risk factors when arterial hypertension is present.

Aged↗

Fibrinogen and preclinical echocardiographic target organ damage: the strong heart study.

Relations of fibrinogen to preclinical target organ damage, such as left ventricular hypertrophy, systolic dysfunction, and increased arterial stiffness while accounting for traditional risk factors, are unknown in a population-based sample free of clinically overt coronary heart disease. Therefore, we studied clinical and echocardiographic characteristics of 2709 American Indians participating in the Strong Heart Study without symptomatic atherosclerosis. The study sample was divided into tertiles of fibrinogen (cut-points, 3.24 and 3.83 g/L). Mean age, body mass index, proportion of women, and prevalences of hypertension and diabetes increased from the first to third tertile of fibrinogen. After adjustment for covariates, systolic and pulse pressures did not significantly differ among tertiles of fibrinogen, whereas diastolic pressure was slightly lower in the third than in lower tertiles of fibrinogen. HDL cholesterol was lower and plasma creatinine and urinary albumin/creatinine ratio was higher in the third tertile of fibrinogen. Left ventricular mass index, pulse pressure/stroke index, an estimate of arterial stiffness, and cardiac index were higher and left ventricular systolic function and total peripheral resistance were lower in the third than in two lower tertiles of fibrinogen independent of major covariates. In multiple regression analyses, left ventricular mass and pulse pressure/stroke index were positively associated with, and stress-corrected midwall shortening negatively associated with fibrinogen, independent of major covariates. Participants with fibrinogen >3.83 g/L were more likely to have at least 1 preclinical cardiovascular abnormality such as left ventricular hypertrophy, elevated arterial stiffness, or systolic myocardial dysfunction independent of covariates including renal dysfunction (adjusted odds ratio, 1.38; P<0.001). Thus, in a population sample of adults without clinically overt coronary heart disease, elevated fibrinogen is an independent correlate of prognostically relevant cardiovascular target organ damage.

Arteries↗

Relation of heart rate to left ventricular dimensions in normotensive, normal-weight children, adolescents and adults.

BACKGROUND: The quantitative relation between body growth and changes in heart rate, and the relationship of heart rate to left ventricular (LV) dimensions, independent of the influence of body size, have been only marginally investigated. Accordingly, we designed this study to investigate the relation between heart rate, body size and LV dimensions in children, adolescents and adults over a broad age span. METHODS: Eight hundred and nineteen normotensive, multi-racial, normal-weight individuals (444 males, 375 females, aged 1-85 years) with normal LV systolic function were studied at echocardiography in three centers, using previously reported methods. The resting heart rate was measured on the M-mode echo-tracing or right after the echocardiogram with the subject still in the supine position. RESULTS: In children and adolescents (up to 17 years), the heart rate decreased with increasing body height (r = -0.51, p < 0.0001) and body weight (r = -0.42, p < 0.0001), in a similar manner in girls and boys. In adults, the heart rate was higher in women than in men, but it was not independently related to body size. The LV diastolic diameter was higher in males and decreased with increasing heart rate in children and adolescents (r = -0.45) as well as in adults (r = -0.25, both p < 0.0001). This relation was also independent of the effect of body size, sex and race. Similarly, the LV mass increased with decreasing heart rate in children and adolescents (r = -0.45), but the association was not confirmed after controlling for body size, sex and race. In adults, heart rate was inversely related to LV mass (r = -0.21, p < 0.0001), and this relation was also independent of body size, sex, race, age and blood pressure (p < 0.001). In women, the relation of heart rate to LV mass/height2.7 was less close than in men, due to the greater increase in LV mass with age. CONCLUSIONS: The heart rate has an inverse association with the LV chamber diameter and with the LV mass in children-adolescents and in adults. This relation is largely, but not uniquely, mediated by body proportions, especially during body growth.

Adolescent↗

Impact of myocardial diastolic dysfunction on coronary flow reserve in hypertensive patients with left ventricular hypertrophy.

BACKGROUND: The aim of the study was to assess the possible association, in hypertensive patients, between left ventricular myocardial diastolic dysfunction and coronary flow reserve (CFR) in relation to the presence of left ventricular hypertrophy (LVH). METHODS: Twenty-eight untreated hypertensives (22 males, 6 females, mean age 53.1 years), free of coronary artery disease, were enrolled in the study. Standard Doppler echocardiography, color Doppler tissue imaging of the posterior septum during dobutamine stress and second harmonic Doppler of the distal left anterior descending coronary vessel, at baseline and after maximal hyperemia induced by dipyridamole, were performed. CFR was estimated as the ratio between hyperemic and baseline diastolic velocities. Hypertensives were divided into two groups according to the left ventricular mass index: 15 without LVH (left ventricular mass index < 51 g/m2.7) and 13 with LVH (left ventricular mass index > 51 g/m2.7). The two groups were comparable for sex prevalence, age, body mass index, baseline heart rate and blood pressure. RESULTS: Color Doppler tissue imaging did not show any significant difference of both the baseline and high-dobutamine septal systolic peak velocities between the two groups. The ratio between myocardial early and atrial peak velocities (Em/Am ratio) was lower in patients with LVH, either at baseline (p < 0.01) or at high-dose dobutamine (p < 0.0001). Also, CFR was lower in the presence of LVH (p < 0.01). After adjusting for age, body mass index, left ventricular mass index, diastolic blood pressure and high-dose dobutamine heart rate by a multiple linear regression analysis, the high-dose dobutamine Em/Am ratio was an independent contributor of CFR in the overall hypertensive population (beta = 0.65, p < 0.0001) (cumulative r2 = 0.38, p < 0.0001). CONCLUSIONS: The combined use of second harmonic Doppler and color Doppler tissue imaging identifies, in arterial hypertension, an association between myocardial diastolic properties and CFR, independent of the presence of LVH. In hypertensive patients free of coronary artery stenosis, left ventricular myocardial diastolic dysfunction may be a determinant in the impairment of the coronary microvessel vasodilation capacity or a marker of silent ischemia involving the microvascular circulation.

Blood Flow Velocity↗

Insulin resistance, ventricular mass and function in normoglycaemic hypertensives.

BACKGROUND AND AIM: To investigate the possible relationship between insulin sensitivity and the main non-invasively determined parameters of left ventricular structure and function in an early phase of hypertensive disease. METHODS AND RESULTS: We studied a group of 60 patients with previously untreated primary arterial hypertension of recent onset. Insulin sensitivity was evaluated by means of homeostasis model assessment (HOMA), and cardiac structure and function by means of ultrasonography. The patients were subsequently divided on the basis of HOMA tertiles and the between-group differences were statistically evaluated using one-way analysis of variance. No difference was found in the main demographic parameters, but high-density lipoprotein (HDL)-cholesterol was significantly higher (1.43 +/- 0.4, 1.16 +/- 0.2, 1.16 +/- 0.2 mmol/L; p < 0.05) and total triglycerides significantly lower (0.94 +/- 0.3, 1.41 +/- 0.8, 1.54 +/- 0.7 mmol/L; p < 0.05) in the first tertile. In relation to the non-invasive parameters of diastolic function, the E wave was significantly reduced in the third tertile (0.64 +/- 0.1, 0.63 +/- 0.1, 0.52 +/- 0.1 m/s; p < 0.05), with a concomitant significant increase in AFF (0.51 +/- 0.03, 0.51 +/- 0.06, 0.56 +/- 0.03; p < 0.05). The E wave (r = 0.326, p < 0.05), E/A wave ratio (r = -0.277, p < 0.05) and AFF (r = 0.432, p < 0.001) were significantly related to HOMA, regardless of age, body mass index, heart rate, left ventricular mass and blood pressure. CONCLUSIONS: Our results indicate that hypertensive patients in the third HOMA tertile (i.e. those with reduced insulin sensitivity) have early diastolic left ventricular abnormalities.

Adolescent↗

Left ventricular geometry and arterial function in hypercholesterolemia.

AIMS: To investigate the effect of hypercholesterolemia on total arterial compliance and left ventricular (LV) geometry in the absence of arterial hypertension and diabetes. METHODS: One hundred and fifty-two normotensive, non-diabetic patients (109 men) aged 52 +/- 10 years with plasma cholesterol > 240 mg/100 mL, and 282 normotensive controls (154 men) aged 42 +/- 10 years (p < 0.0001) with plasma cholesterol < 200 mg/100 mL were studied by means of echocardiography. The stroke volume/pulse pressure ratio as a percentage of the value predicted by individual age, body weight and heart rate was used as a prognostically-validated index of total arterial compliance. Central pulse pressure (PP) was estimated using a regression equation obtained in a non-overlapping population. RESULTS: Although within the "normal" range, systolic pressure, PP and estimated central PP were higher in the hypercholesterolemic patients even after controlling for differences in age, body mass index (BMI) and race (all p < 0.0001). After controlling for differences in systolic pressure, age, BMI and race, LV mass and the prevalence of hypertrophy were comparable between the two groups, whereas relative diastolic wall thickness was greater (0.36 + 0.06 vs 0.33 + 0.05) and percent SV/PP (stroke volume/PP) lower in the hypercholesterolemic patients (96 +/- 19% vs 102 +/- 18%; both p < 0.005). After considering the covariates, there was still an independent negative correlation between relative wall thickness and percent SV/PP (r = -0.37, p < 0.0001). CONCLUSIONS: Hypercholesterolemia in normotensive non-diabetic adults is independently associated with a mildly concentric LV geometry and a reduced index of total arterial compliance.

Adult↗

Relation of left ventricular diastolic properties to systolic function in arterial hypertension.

BACKGROUND: It is unclear whether impairment of left ventricular (LV) diastolic characteristics is independent of systolic dysfunction. METHODS AND RESULTS: To address this issue, 159 consecutive hypertensive patients (44+/-11 years, 78 obese, 96 women) and 165 normotensive subjects (32+/-11 years, 84 obese, 110 women) were studied with the use of Doppler echocardiography. After adjustment for age, body mass index (BMI), and sex, we found that ejection fraction (EF; M-mode, z-derived) was higher in hypertensive (66. 6+/-5.2%) than in normotensive (63.9+/-4.4%, P<0.0001) subjects, whereas midwall shortening (MS) was lower (hypertensive patients 16. 9+/-2.0%, normotensive subjects 17.8+/-2.2%, P<0.02), even after correction for end-systolic wall stress (P<0.05). Isovolumic relaxation time (IVRT) was greater in hypertensive patients (103+/-14 ms) than in normotensive subjects (78+/-19 ms), as was deceleration time of E velocity and peak A velocity (all P<0.0001). In multivariate analysis, IVRT was unrelated to EF, but a negative relation was found with MS (P<0.001), independent of age, BMI, presence of arterial hypertension, LV geometry, and load (multiple R(2)=0.58). For comparable age, sex distribution, BMI, and blood pressure values, hypertensive patients with lower afterload-adjusted MS exhibited longer IVRT than patients with normal MS (P<0.005). However, IVRT remained higher than in normotensive control subjects after control for LV geometry and load. CONCLUSIONS: Doppler indices of delayed LV relaxation can be detected in the presence of normal or supranormal EF but are independently related to impaired MS. A less severely abnormal relaxation, however, can be also detected in the presence of normal midwall function, independent of LV geometry and load. Thus, diastolic abnormalities may occur before systolic dysfunction even when it is measured at the midwall.

Adult↗

Pulmonary venous flow and mitral inflow velocity pattern in uncomplicated obesity: evidence for late diastolic dysfunction.

BACKGROUND: Active left ventricular relaxation, assessed by Doppler isovolumic relaxation time, is impaired in obesity. There is little information on left ventricular passive properties during filling. METHODS: To evaluate left ventricular late diastolic stiffness in obesity, Doppler echocardiographic interrogation of mitral inflow tract and pulmonary vein flow velocities were obtained from 47 normotensive, young obese subjects (11 males, 36 females) and 43 normotensive, young normal-weight volunteers (13 males, 30 females) of comparable age. RESULTS: After controlling the effect of blood pressure and left ventricular mass, isovolumic relaxation time was prolonged in obese subjects (p < 0.0001 vs normal-weight controls). No difference was found in transmitral peak early and late flow velocities. Obese subjects exhibited prolonged pulmonary vein reverse flow velocity during atrial contraction (p < 0.004), and a higher difference or ratio between duration of pulmonary reverse flow and duration of transmitral forward late flow (6 +/- 31 vs -20 +/- 39 ms or 1.06 +/- 0.3 vs 0.84 +/- 0.3, p < 0.002 and p < 0.001, respectively). These differences were also confirmed after controlling blood pressure and left ventricular mass. Non-invasively estimated left ventricular end-diastolic pressure was higher in obese subjects than in controls (p < 0.002). At multivariate analysis a higher body mass index was the sole predictor of prolonged difference between duration of pulmonary reverse flow and duration of transmitral forward late flow (beta = 0.38, p < 0.001). CONCLUSIONS: Obesity is associated with prolonged left ventricular active relaxation and abnormalities of filling pressure not detectable by the sole mitral inflow velocity pattern. These latter abnormalities are consistent with the presence of early increased left ventricular passive stiffness.

Adult↗

Relation of left ventricular chamber and midwall function to age in normal children, adolescents and adults.

BACKGROUND: The goal of this study was to identify the effect of body growth and aging, and normal limits of the relation of left ventricular endocardial and midwall shortening to wall stress. METHODS: Endocardial and midwall shortening and circumferential end-systolic stress were assessed in 388 normotensive, normal-weight adults (226 men, 162 women, age 18 to 85 years) and 332 children and adolescents (180 males, 152 females, age 4 to 17 years) by two-dimensional targeted M-mode echocardiography and cuff blood pressure measurements. RESULTS: End-systolic stress decreased with age in children and adolescents (p < 0.001), but not during adulthood and maturity. The negative relation of endocardial shortening to end-systolic stress was stronger in adults than in children and adolescents (slope difference p < 0.005). The negative relation of midwall shortening to end-systolic stress was negligible in children and adolescents (r = -0.07, p = 0.18), whereas it was more evident, although weak, in adults (r = -0.14, p < 0.007). For a given level of end-systolic stress, endocardial shortening decreased by 0.32%/year in children and adolescents (multiple r = 0.51, p < 0.0001) and by 0.05%/year in adults, whereas midwall shortening decreased by 0.26%/year during body growth and by 0.02%/year in adults. CONCLUSIONS: In the presence of normal blood pressure and normal weight, the relations between left ventricular wall stress and both chamber and myocardial function are weakly but significantly influenced by age. Left ventricular chamber function is markedly influenced by wall stress, while this influence is reduced for left ventricular wall mechanics.

Adolescent↗