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Biomedical subjects

G de Simone

Publications and source records attributed to G de Simone.

At least 73 records · Page 4Linked to original sources

Age-related changes in total arterial capacitance from birth to maturity in a normotensive population.

We evaluated the effect of body growth and aging on the ratio of echocardiographic (Teichholz) stroke volume to pulse pressure (SV/PP ratio) in 373 normal-weight, normotensive children to adolescents (1 day to 17 years old; 166 girls, 87 nonwhite) and 393 normal adults (17 to 85 years old; 164 women, 112 nonwhite). Stroke volume increased with age in children (r = .64, P < .0001) and was stable in adults; pulse pressure decreased slightly with age in children (r = -.10, P = .06) and increased in adults (r = .29, P < .0001). As a consequence, SV/PP ratio increased with age in children (r = .51, P < .0001) and decreased in adults (r = -.18, P = .0004). To control for changes in body size that influence the size of the arterial tree, we used ANCOVA to adjust SV/PP for body size. Body size-adjusted SV/PP ratio was no longer related to age in children, whereas the negative relation with aging in adults remained statistically significant (r = -.19, P < .0002). Heart rate was negatively related to SV/PP ratio in both children and adolescents and adults, but this relation did not influence the relation with age. In multivariate analysis, high SV/PP ratio was predicted by greater height (P < .002) and weight (P < .04) and nonwhite race (P < .001) in children and adolescents and by younger age (P < .0001), greater weight (P < .0001), and low heart rate (P < .001) in adults. Sex did not enter the regression models. Thus, (1) SV/PP ratio is a measure of increasing capacity of the arterial tree during growth, whereas it depends on arterial compliance during adulthood through old age; (2) arterial compliance decreases progressively with aging; (3) the apparent difference between males and females might be due to their different body sizes.

Adolescent↗

Relations of left ventricular geometry and function to body composition in children with high casual blood pressure.

To determine whether abnormal casual blood pressure (BP) is associated with left ventricular (LV) abnormalities in children, 190 6- to 11-year-old children (77 girls, 113 boys) were studied at a school site in Naples, Italy, by limited echocardiography and bioelectric impedance to calculate fat-free body mass (FFM). Single-visit BP measurements (defined as casual BP) were high (based on the Italian tables of BP) in 34 children (18%; 9 girls, 25 boys; 133+/-8/81+/-10 mm Hg) and obesity was present in 44 (23%; 15 girls, 29 boys). Sex- and age-independent risk of high casual BP value was 2.9-fold (odds ratio) greater in obese than in normal-weight children (95% confidence interval, 1.3 to 6.5; P<.01). LV mass (as both absolute value and normalized for height or FFM) was higher and relative wall thickness increased in children with high casual BP (all P<.01). Prevalence of LV hypertrophy was 21% among children with high casual BP (P<.004 versus 4.3% in normal group). Risk of LV hypertrophy was 5.5-fold higher in the presence of high casual BP (P<.004), whereas obesity, age, and sex did not have independent effects. Endocardial shortening was slightly higher in children with high casual BP (36.8+/-8.2%) than in children with normal BP (34.3+/-4.8%, P<.02), whereas midwall shortening was identical in the two groups (20%). Both endocardial shortening and midwall shortening were negatively related to end-systolic stress (r=-.62, SEE=3.8% and r=-.32, SEE=2.4% in normal children). Shortening as a percentage of predicted from wall stress was increased in children with high casual BP at the endocardial level (P<.001), whereas it was normal at the midwall. Therefore, (1) casual detection of high BP in school children is associated with LV geometric abnormalities similar to those found in adults with sustained hypertension (LV hypertrophy, concentric pattern); (2) similar to in adult hypertension, endocardial chamber function in children is supranormal; and (3) in contrast to findings in adults, midwall shortening is normal in children with high casual BP.

Blood Pressure↗

Estimation of left ventricular chamber and stroke volume by limited M-mode echocardiography and validation by two-dimensional and Doppler echocardiography.

This study has been designed to improve estimation of stroke volume from linear left ventricular (LV) dimensions measured by M-mode echocardiography, in symmetrically contracting ventricles. In experimental studies, the ratio of LV epicardial long/short axes "Z" is about 1.3. We measured systolic and diastolic epicardial long and short axes by 2-dimensional echocardiography in 115 adults with widely varying LV short-axis dimensions (LV end-diastolic dimension = 3.95 to 8.3 cm). In a learning series of 23 normotensive and 27 hypertensive subjects, Z(diastole) was 1.3 +/- 0.1 and Z(systole) = 1.2 +/- 0.1, similar to findings in experimental animals. Regression equations were developed by comparing LV volumes by M-mode and 2-dimensional echocardiography. In a test series (65 subjects), LV volumes were calculated using separate regression equations for end-diastolic volume ([LV end-diastolic dimension] 4.765 - 0.288 x posterior wall thickness]) and for end-systolic volume ([LV end-systolic dimension] [4.136 - 0.288 x posterior wall thickness]). Because the term 0.288 x wall thickness was only about 8% of the first term between brackets, the average wall thickness in the learning series was substituted in the Z-volume formulas applied to the test series: end-diastolic volume = (4.5 x [LV end-diastolic dimensions]2) and end-systolic volume = (3.72 x [LV end-diastolic dimension]2). The mean relative error produced with this simplified method was 0.9%. in diastole and 1.4% in systole. Compared with Teichholz' M-mode volume method, Z-derived end-diastolic volume in the test series was equally well related to 2-dimensional volumes (both r = 0.88), with a better intercept (1.5 vs -23 ml, p <0.001) and a slope closer to the identity line (1.1 vs 1.4). Similar results were found for systolic volumes. In a second test series of 1,721 American Indian participants in the Strong Heart Study without mitral regurgitation or segmental LV wall motion abnormalities, Doppler-derived LV stroke volume (70 +/- 14 ml/beat) was similarly predicted by the Z-derived method (r = 0.65, 70 +/- 11 ml/beat) and Teichholz formulas (r = 0.64, 72 +/- 13 ml/beat), but Z-derived volumes had a regression line significantly closer to the identity line (p <0.005). Thus, LV chamber and stroke volumes can be determined from M-mode LV diameters over a wide range of LV sizes and in epidemiologic as well as clinical populations. The performance of this new method appears better than that obtained using the Teichholz formula, with a formula that is easy to handle and makes calculation of LV volumes by pocket calculator possible, even from limited echocardiographic studies.

Adult↗

Assessment of left ventricular function by meridional and circumferential end-systolic stress/minor-axis shortening relations in dilated cardiomyopathy.

Echocardiographic meridional wall stress-endocardial shortening relations provide estimates of left ventricular (LV) contractility that do not uniformly detect myocardial dysfunction despite severe symptoms in dilated cardiomyopathy. To improve detection of myocardial dysfunction in patients with congestive heart failure (CHF) due to dilated cardiomyopathy, echocardiographic meridional and circumferential end-systolic stress were related to endocardial and midwall shortening in 42 patients (95% dead within a mean of 22 months) with dilated cardiomyopathy and 140 normal subjects. A method to estimate LV long-axis dimension from M-mode minor-axis epicardial measurements was developed in a separate series of 115 subjects. Endocardial shortening to meridional wall stress relation identified 31 of 42 CHF patients falling below the 95% normal confidence interval of the reference population; use of midwall shortening decreased this number to 26 (p = NS). The use of circumferential wall stress identified 39 of 42 patients with subnormal endocardial LV shortening and 41 of 42 patients with depressed midwall performance (p < 0.01 vs use of meridional stress). The circumferential/meridional wall stress ratio was 2.6 +/- 0.5 in normal subjects and 1.3 +/- 0.2 in CHF patients (p < 0.0001). Thus, use of circumferential end-systolic stress as the measure of afterload improves the detection of myocardial dysfunction by stress/shortening relations in patients with CHF. The ratio between the 2 stresses decreases with more spherical LV shape. Midwall and endocardial shortening measurements are equivalent in the setting of thin LV walls as occurs in dilated cardiomyopathy.

Adult↗

Left ventricular filling pattern in uncomplicated obesity.

To determine if uncomplicated obesity is associated with systolic dysfunction or impairment of left ventricular (LV) filling, 40 normotensive, white, asymptomatic, obese subjects (16 men and 24 women, mean +/- SD age 35 +/- 13 years; body mass index 36 +/- 6 kg/m2) and 40 normotensive, normal-weight, white volunteers matched for age and sex distribution, were studied by Doppler echocardiography. Endocardial and midwall shortening did not show differences between groups (obese = 33 +/- 4% and 17 +/- 2%; normal weight = 33 +/- 3% and 18 +/- 2%, respectively). LV mass index was higher in obese than in normal-weight subjects (p <0.0001). Obese persons had prolonged isovolumic relaxation time (p <0.0001), lower transmitral peak early diastolic filling wave (E) velocity (p <0.02), higher E velocity deceleration time (p <0.002) and lower E/atrial diastolic filling wave (A) flow velocity ratio (p <0.01) than did normal-weight subjects, even after controlling for age and blood pressure. Between-group differences in E and E velocity deceleration time disappeared when controlling for LV mass index, whereas prolonged isovolumic relaxation time in obesity was independent of LV mass, chamber dimension, and end-systolic stress. LV filling variables were not statistically related to endocardial or midwall shortening, both as absolute value or as a percentage of that predicted from wall stress. We conclude that uncomplicated obesity is associated with primary impairment of LV isovolumic relaxation; abnormalities of early passive filling flow in obesity are associated with increased LV mass.

Adult↗

Midwall left ventricular mechanics. An independent predictor of cardiovascular risk in arterial hypertension.

BACKGROUND: An appreciable proportion of asymptomatic hypertensive patients have depressed left ventricular (LV) performance that is identified by midwall shortening/endsystolic stress relations but not by indexes that use endocardial shortening. It has not been established, however, whether depressed midwall ventricular performance has prognostic implications. METHODS AND RESULTS: Echocardiographic endocardial and midwall LV fractional shortening/circumferential end-systolic stress relations in 294 hypertensive patients were analyzed as predictors of the occurrence of cardiovascular morbid events that occurred in 50 patients (including 14 deaths) during a 10-year mean follow-up. Patients with initially lower midwall but not endocardial shortening, either in absolute terms or as a percentage of predicted from observed end-systolic stress, were more likely to suffer morbid events than those with initially normal values (P < .004). Cardiovascular events occurred in 29 of 100 patients (29%) and death in 10 of 100 patients (10%) among those who were in both the two highest quartiles of LV mass index and the two lowest quartiles of midwall shortening, as opposed to 21 of 194 (11%) and 4 of 194 (2.1%) of the remaining patients (odds ratio, 3.4; 95% CI, 1.8 to 6.3; P < .0001; and odds ratio, 5.3; 95% CI, 1.6 to 17.3; P < .006, respectively). In logistic analysis, increasing age, high LV mass, high systolic blood pressure, and low values for an interaction term between LV mass index and midwall shortening independently predicted cardiovascular events (.04 < P < .001); increasing age, low midwall LV shortening as a percentage of predicted, and high value of the interaction term predicted the occurrence of cardiac death (.004 < P < .0002). Survival analysis controlling for age confirmed that low midwall shortening independently predicted cardiac morbidity or death, especially in the subgroup of patients with LV hypertrophy. CONCLUSIONS: Depressed midwall shortening is a predictor of adverse outcome in arterial hypertension; the combination of higher LV mass and lower midwall shortening identifies individuals at markedly increased risk.

Adult↗

Reduction of development of left ventricular hypertrophy in salt-loaded Dahl salt-sensitive rats by angiotensin II receptor inhibition.

To determine the effect of the angiotensin II AT1 receptor antagonist losartan (DuP753) on echocardiographic left ventricular (LV) anatomy in Dahl rats on high sodium diet, 27 Dahl salt-sensitive (Dahl-S, 13 on drug and 14 receiving tap water) and 27 Dahl salt-resistant rats (Dahl-R, 13 on drug and 14 receiving tap water) were studied by M-mode echocardiography during 8 weeks of 8% NaCl diet. At the endpoint (after 8 weeks or the last echocardiogram for animals who died earlier), Dahl-S receiving losartan had lower LV mass (1.6 +/- 0.4 g/kg 0.59) than Dahl-S receiving tap water (2.2 +/- 0.7 g/kg 0.59; P < .005), although blood pressure was only partially reduced (167 +/- 29 v 195 +/- 52; P = .05). This difference was mainly due to lower LV wall thickness (P < .02), with a less consistent decrease in LV chamber size in Dahl-S receiving losartan. Blood pressure was normal in Dahl-R (tap water group = 116 +/- 11 mm Hg; losartan group = 115 +/- 13 mm Hg) and losartan had no effect on LV mass (1.6 +/- 0.4 g/kg 0.59) in both groups). In the majority of rats, echocardiographic measurements were compared between the end of second or third week and the last available study: LV mass increased in salt-loaded Dahl-S receiving tap water (1.6+/- 0.6 to 2.1 +/- 0.7 g/kg 0.59, P < .04) and was stable in Dahl-S receiving losartan (1.5 +/- 0.1 to 1.5 +/- 0.3 g/kg 0.59), paralleling changes in LV chamber dimension. Thus, a high salt diet leads to hypertension and eccentric LV hypertrophy in Dahl-S but not in Dahl-R. Inhibition of angiotensin II AT1 receptors reduces the development of LV hypertrophy in Dahl-S rats despite lack of efficient control of blood pressure.

Analysis of Variance↗

Influence of obesity on left ventricular midwall mechanics in arterial hypertension.

The evaluation of the effect of obesity on left ventricular systolic performance may differ in relation to the method used to measure left ventricular function and to the type of study population. Whether obesity worsens left ventricular midwall mechanics in arterial hypertension has never been investigated. Accordingly, we assessed echocardiographic left ventricular midwall shortening-circumferential end-systolic stress relations in 156 normotensive and normal-weight (reference) adults, 94 normotensive and overweight (1985 National Institutes of Health partition values) to obese (body mass index > 30 kg/m2) adults, 263 hypertensive and normal-weight adults, and 224 hypertensive and overweight-to-obese adults. There was an inverse relation of midwall shortening to circumferential end-systolic stress in all groups (all P < .005). Left ventricular performance as a ratio of observed to predicted midwall shortening fell below the fifth percentile in 4 of 94 (4%) of overweight-to-obese normotensive individuals. Eighty-eight of 487 hypertensive subjects (18.1%) exhibited depressed midwall shortening as a percentage of the value predicted from wall stress, with no difference between normal-weight (50 of 263 [19%]) and overweight (38 of 224 [17%]) subjects. Sixty-one normotensive and 131 hypertensive subjects were frankly obese. After adjustment for sex and age, midwall shortening, as either absolute values or a percentage of predicted, was not statistically different among obese, overweight, and normal-weight subjects in both normotensive and hypertensive groups. For each quartile of observed-to-predicted midwall shortening ratio, obese subjects had greater left ventricular end-diastolic volume than normal-weight subjects among both normotensive and, more evidently, hypertensive subjects. A predicted midwall shortening was generated from both wall stress and left ventricular volume with the use of multiple regression analysis. High body mass index, mean blood pressure, aging, and male sex independently predicted low afterload and left ventricular volume-independent midwall left ventricular performance (multiple R = .31, P < .0001). Thus, (1) midwall left ventricular systolic performance in asymptomatic overweight or frankly obese individuals is comparable to that in normal-weight individuals in both the presence and absence of arterial hypertension; (2) however, maintenance of normal life ventricular performance in obese individuals is associated with the use of Starling reserve; and (3) this compensatory mechanism is especially evident when arterial hypertension and obesity coexist.

Adult↗

Effect of growth on variability of left ventricular mass: assessment of allometric signals in adults and children and their capacity to predict cardiovascular risk.

OBJECTIVES: We sought to determine whether growth influences the relation between left ventricular mass and body size and whether use of different body size indexes affects the ability of ventricular mass to predict complications of hypertension. BACKGROUND: Allometric (or growth) signals between left ventricular mass and height have recently been reported to improve previous approaches for normalization of ventricular mass for body size. METHODS: Residuals of left ventricular mass-height2.7 relations were analyzed in a learning series of 611 normotensive, normal-weight subjects 4 months to 70 years old and, separately, in 383 children (< 17 years old) and 228 adults. Ten-year cardiovascular morbidity in a test series of 253 hypertensive adults was compared with groups with normal or high baseline left ventricular mass normalized for body weight, height, body surface area and allometric powers of height. RESULTS: The dispersion of residuals of ventricular mass versus height2.7 increased with increasing height or age in children but not in adults, suggesting that the effect of other variables on ventricular growth increases during body growth and stabilizes in adulthood. Therefore, we derived separate allometric signals for adults (predicted ventricular mass = 45.4 x height2.13, r = 0.48) and children (32.3 x height2.3, r = 0.85) (both p < 0.0001). Patients with left ventricular hypertrophy had 3.3 times higher cardiac risk with elevated left ventricular mass/height2.7 (p < 0.001), 2.6 to 2.7 times higher risk with left ventricular mass indexed for height, height2.13 and body surface area (all p < 0.01) and 1.7 times the risk with ventricular mass/weight (p > 0.1). CONCLUSIONS: These results show the following: 1) Variability of left ventricular mass in relation to height increases during human growth; 2) allometric signals of left ventricular mass versus height are lower in adults and children than those obtained across the entire age spectrum; 3) height-based indexes of left ventricular mass at least maintain and may enhance prediction of cardiac risk by hypertensive left ventricular hypertrophy; and 4) the allometric signal derived across the entire spectrum of age appears to be more useful for prediction of cardiovascular risk than that computed in adults.

Adult↗

Assessment of cardiac autonomic control by heart period variability in patients with early-onset familial obesity.

For quantitative assessment of cardiac autonomic control, time and frequency domain measures of heart period variability were calculated by 24 h Holter recording in 10 young obese women with early-onset familial obesity and in 10 control subjects. Ultra low frequency and very low frequency power were lower in obese subjects than in controls (P < 0.05). High frequency power, a pure measure of vagal tone, was comparable between the two groups. However, low frequency power, which analysed over a 24 h Holter recording reflects parasympathetic more than sympathetic activity, was slightly lower in obese subjects than in controls (P = 0.06). Body mass index showed an inverse correlation with total power (r = -0.62; P < 0.05) and separately with ultra low (r = -0.59; P < 0.01), very low (r = -0.64; P < 0.005), low (r = -0.61; P < 0.005) and high frequency power (r = -0.53; P < 0.05). These results demonstrate a parasympathetic withdrawal increasing body weight. The reduction of ultra low frequency and very low frequency power, which are associated with sudden death, may help to explain the higher cardiovascular risk in obesity.

Adolescent↗

Gender differences in left ventricular growth.

Because the number of human cardiac myocytes is determined in infancy, subsequent increases in left ventricular (LV) muscle mass reflect cellular enlargement (hypertrophy). To determine whether the greater LV mass in adult men than in women reflects sex differences that are present throughout development or disproportionate LV growth during puberty in men, we compared echocardiographic LV mass in 333 female and 278 male normal-weight, normotensive subjects from 4 months to 70 years of age. Only a small sex difference in LV mass (mean = 6%) existed before age 12 years, whereas in all older-age strata LV mass in men was 25% to 38% greater than that in women (P < .02 to P < .0001). The divergence in LV mass between male and female adolescents closely paralleled differences in height and weight and was due to proportional increases in LV chamber dimension and wall thickness in males (with no sex difference in relative wall thickness). LV mass grew less rapidly from infancy through childhood than did body size, assessed by body weight or height, yielding a reduction of LV mass/body size ratios up to puberty, which was followed by gradual increases during adulthood. Indexation of LV mass by body weight or height but not by body surface area or height markedly reduced the sex differences in LV mass/body size ratios from puberty through the seventh decade of life. Thus, before puberty, LV mass is only modestly higher in boys than in girls.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Midwall left ventricular performance in salt-loaded Dahl rats: effect of AT1 angiotensin II inhibition.

OBJECTIVE: The relationship between left ventricular midwall shortening and circumferential end-systolic stress was studied in Dahl salt-sensitive (Dahl S) and salt-resistant (Dahl R) rats after 6-8 weeks of an 8% Na+ diet with or without losartan, an AT1 angiotensin II receptor antagonist. MATERIALS AND METHODS: Losartan was given in drinking water to 13 Dahl S and 13 Dahl R rats, while 14 control Dahl S and 14 control Dahl R rats were given tap water, for 8 weeks. The endpoint was the last blood pressure and echocardiographic examination after 8 weeks or before death for rats which did not survive the entire period. Tail blood pressure was measured in awake animals and two-dimensional guided M-mode echocardiography was used. RESULTS: The left ventricular midwall shortening-circumferential end-systolic stress relationship in 45 normotensive Wistar rats was used to calculate the ratio of observed to predicted left ventricular midwall fractional shortening. At the endpoint, afterload-independent midwall shortening was higher in Dahl S rats on losartan or tap water, and in Dahl R rats on losartan than in weight-matched normotensive Wistar rats (all P<0.05). Afterload-independent midwall shortening was related to the left ventricular chamber dimension in a learning series of 109 rats (64 Goldblatt and 45 normotensive rats on a normal sodium diet; r = 0.73) and was adjusted in Dahl rats to a constant left ventricular internal diameter (6.9 mm) by the learning regression equation. The adjusted afterload-independent midwall shortening was still higher in Dahl S rats on losartan than in controls (P<0.02). Left ventricular internal diameter-adjusted afterload-independent midwall shortening was inversely related to the left ventricular mass in both Dahl S and Dahl R groups (r = -0.40 and -0.72, both P<0.04). CONCLUSIONS: (1) Midwall left ventricular performance was higher in Dahl S than Dahl R rats on a high-salt diet; (2) this elevation was partially independent of an increase in left ventricular chamber size, an indirect measure of preload; and (3) in Dahl S rats on losartan, increased left ventricular performance is related to improved contractility, associated with a blunted development of left ventricular hypertrophy.

Angiotensin Receptor Antagonists↗

Ageing induces left ventricular concentric remodelling in normotensive subjects.

OBJECTIVE: To assess whether age affects left ventricular anatomy independently of age-related hypertension or concomitant heart diseases. DESIGN AND METHODS: In 430 consecutive normotensive and clinically healthy subjects aged 16-85 years we obtained echocardiographic measurements of left ventricular posterior wall thickness, internal diameter, relative wall thickness, Penn mass index and systemic haemodynamics. The pulse pressure : stroke volume ratio was calculated as an estimate of systemic arterial stiffness. The subjects were divided into three age groups: < or = 40 (group 1, n = 137), 41-64 (group 2, n = 261) and > or = 65 years (group 3, n = 32). RESULTS: Systolic blood pressure increased from group 1 to group 3, as did the pulse pressure : stroke volume ratio and posterior wall thickness, whereas the left ventricular internal diameter was less in group 3 than in groups 1 and 2. The relative wall thickness increased from group 1 to groups 2 and 3, whereas the left ventricular mass index did not differ among age groups. Age was related positively to the systolic blood pressure, pulse pressure : stroke volume ratio, posterior wall thickness index and relative wall thickness, and negatively to the left ventricular internal diameter but not to the left ventricular mass index. CONCLUSIONS: In healthy adults, relative wall thickness increases with age whereas left ventricular mass does not change. The concentric remodelling of left ventricular geometry parallels age-related stiffening of the arterial tree, elevation of systolic blood pressure and decrease in left ventricular volume. Thus partition values of relative wall thickness should be adjusted for age.

Adolescent↗

Assessment of left ventricular function by the midwall fractional shortening/end-systolic stress relation in human hypertension.

OBJECTIVES: This study examined left ventricular performance in relatively unselected hypertensive patients by use of physiologically appropriate midwall shortening/end-systolic stress relations. BACKGROUND: Supranormal left ventricular function has been reported in hypertensive patients, possibly due to an artifact of mismatching endocardial rather than midwall fractional shortening to mean left ventricular end-systolic stress. METHODS: Samples of 474 hypertensive patients (150 women, 324 men) and 140 normal subjects (68 women, 72 men) were drawn from a large urban employed population. The inverse relations (p < 0.0001) of both echocardiographic endocardial and midwall fractional shortening to end-systolic stress in normal subjects were used to calculate the ratios of observed to predicted endocardial and midwall fractional shortening in hypertensive patients. Midwall shortening was calculated from an elliptic model, taking into account the epicardial migration of the midwall during systole. RESULTS: Use of midwall fractional shortening in hypertensive patients reduced the proportion of patients with function above the 95th percentile of normal from 22% to 4% (p < 0.0001) and fractional shortening as a percent of predicted from 107% (p < 0.001 vs. 100% in normotensive control subjects) to 95% (p < 0.0001; p < 0.001 vs. 101% in normotensive control subjects). Midwall shortening was below the 5th percentile of normal in 16% of hypertensive patients instead of 2% with endocardial shortening (p < 0.0001): They tended to be older than other hypertensive patients and had concentric left ventricular hypertrophy. Among hypertensive patients, those with concentric left ventricular hypertrophy or remodeling had reduced midwall shortening as a percent of predicted from end-systolic stress (p < 0.0001). CONCLUSIONS: Use of the physiologically more appropriate midwall shortening/end-systolic stress relation 1) markedly reduces the proportion of hypertensive subjects identified as having high endocardial left ventricular function; and 2) identifies a substantial subgroup of patients with reduced left ventricular function who have concentric geometry of the left ventricle, a pattern associated with high cardiovascular risk.

Adult↗