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[Early diastolic dysfunction of the left ventricle affected by hypertrophy and abnormal histopathology in hypertrophic cardiomyopathy].

In this study, we investigated correlations of left ventricular hypertrophy and its histopathology with diastolic dysfunction in patients with hypertrophic cardiomyopathy. Nine control subjects and 14 hypertrophic cardiomyopathy (HCM) patients with asymmetrical septal hypertrophy were evaluated. M-mode echocardiography was used to assess fractional shortening (FS), isovolumic relaxation time (IRT), and the left ventricular filling volume index during rapid and slow filling periods and atrial contraction period (RFVI, SFVI and ACVI). End-diastolic thickness of the interventricular septum and posterior wall was determined using biventriculography. Right ventricular endomyocardial biopsies were performed to calculate the diameters of myocytes, the percentage of fibrosis and the eccentricity e which indicates the degree of myocardial disarrangement including disorganization. The FS was normal in the two groups. The IRT of the HCM group was significantly greater and the RFVI significantly less than those of the controls. The left ventricular wall thickness, the diameters of myocytes and the percentage of fibrosis in the HCM group were significantly greater; and the eccentricity e was significantly less, suggesting that myocardial disarrangement was significantly more severe than that in the controls. Significant positive correlations were observed between the IRT and the wall thickness (r = 0.647), between the diameter of myocytes (r = 0.681) and the percentage of fibrosis (r = 0.628), and there was a significantly negative correlation between the IRT and the eccentricity e (r = -0.759). There was a significantly negative correlation between the RFVI and the wall thickness (r = -0.663); and a significantly positive correlation between the RFVI and the eccentricity e (r = 0.579). Multiple regression analyses showed that the diameter of myocytes, the percentage of fibrosis and the eccentricity e all correlated significantly with the IRT (R = 0.821) and the RFVI (R =0.604). The standard regression coefficients of the diameter of myocytes, the percentage of fibrosis and the eccentricity e were 0.253, 0.278 and -0.431 in respect to IRT, and those of the percentage of fibrosis and the eccentricity e were -0.204 and 0.469 in respect to RFVI, respectively. These results indicated that diastolic dysfunction in hypertrophic cardiomyopathy is related not only to the degree of left ventricular hypertrophy, but also to the degree of myocardial hypertrophy, increased interstitial fibrosis, and especially to myocardial disarrangement including disorganization.

Adult↗

[Diastolic dysfunction as a cause of heart failure in the hypertensive patient].

Hypertensive cardiomyopathies can be divided into 4 ascending categories according to the pathophysiologic and clinical impact of hypertension on the heart: Grade I. This category is characterized by LV diastolic dysfunction with no associated LV hypertrophy. Grade II. Patients at this stage present LV diastolic dysfunction with echocardiographic LV hypertrophy. Exercise capacity in terms of maximal oxygen consumption may be normal (Grade IIA) o impaired (Grade IIB). Grade III. This stage is distinguished by the presence of congestive heart failure (severe dyspnea and X-ray pulmonary edema with normal EF (> or = 50%). Patients having LV mass/volume ratio > 1.8 with little or no myocardial ischemia are classified as IIIA, as compared with IIIB patients having LV mass/volume ratio < 1.8 and significant myocardial ischemia. Clinically, these two subgroups can be distinguished as follows: the presence of a fourth sound and the absence of cardiomegaly for classification as IIIA, and a third sound plus cardiomegaly for classification as IIIB. Grade IV. Here the profile is one of dilated cardiomyopathy, LV hypertrophy and impaired EF (< 50%). The 5-year mortality rate is higher for Grade IV patients than for Grade III patients, although the morbility rate is similar in both.

Adult↗

Microalbuminuria as a marker of preclinical diastolic dysfunction in never-treated essential hypertensives.

Using 24-h ambulatory blood pressure (BP) monitoring and digitized M-mode echocardiography, we evaluated whether microalbuminuria is related to preclinical left ventricular (LV) diastolic dysfunction in hypertensive patients. We selected 87 never-treated hypertensive patients (mean 24-h BP > 140 and/or > 90 mm Hg); albuminuria was evaluated as mean value of 24-h urinary albumin excretion (UAE) from two 24-h urine collections. Microalbuminuria was found in 28 patients, classified as MA+ (UAE 30 to 300 mg/24 h); 59 patients had normal UAE (< 30 mg/24 h) and were classified as MA-. The MA+ and MA- groups did not differ with regard to age, sex, body mass index, or 24-h heart rate, whereas 24-h, daytime, and nighttime systolic and diastolic BP were significantly higher in MA+ than in MA-. The LV mass index was greater in MA+, as was the prevalence of LV hypertrophy; peak shortening rate of LV diameter, index of systolic function, was normal in all, but was lower in MA+. Peak lengthening rate of LV diameter and peak thinning rate of posterior wall, indices of diastolic function, were lower in MA+ and the prevalence of diastolic dysfunction was higher in MA+. UAE was inversely correlated with both indices of LV diastolic function, also after correction for age, 24-h heart rate, 24-h BP, and LV mass. In conclusion, in never-treated hypertensive patients, microalbuminuria is not only associated with greater myocardial mass, but is also related with preclinical impairment of LV diastolic function. This relation, independent from increased BP or LV mass, strengthens the role of microalbuminuria as an early and reliable marker of preclinical cardiac involvement.

Adult↗

Noninvasive detection of left ventricular diastolic dysfunction using M-mode echocardiography to assess left ventricular posterior wall kinetics in hypertrophic cardiomyopathy.

In patients with hypertrophic cardiomyopathy (HC), it is difficult to determine the severity of left ventricular (LV) diastolic dysfunction. Three different patterns of LV posterior wall motion were found by M-mode echocardiography in patients with HC, and the use of these patterns is proposed as a new noninvasive index of the severity of LV diastolic dysfunction. M-mode echocardiograms were recorded prospectively from 35 patients with HC, and the posterior wall motion pattern in late systole and early diastole was classified into the following 3 types: (1) normal motion (n = 9); (2) flat motion--flat motion from late systole to early diastole, followed by rapid backward movement (n = 13); and (3) downward motion--slow backward movement from late systole (n = 13). There were no differences in the severity or type of hypertrophy, LV systolic function and pulsed Doppler indexes of LV filling among these 3 groups. However, LV end-diastolic pressure was increased in the groups with flat (15 +/- 6 mm Hg) and downward (16 +/- 9 mm Hg) motion. Furthermore, the maximal rate of decrease in LV pressure (normal 1,450 +/- 300, flat 1,250 +/- 300 and downward 860 +/- 80 mm Hg/s) and the time constant of LV pressure reduction (normal 60 +/- 15, flat 70 +/- 25 and downward 101 +/- 34 ms) showed a stepwise deterioration from the normal to the flat and then to the downward motion groups.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin II↗

[Diastolic dysfunction in patients with chronic kidney failure on a hemodialysis program].

OBJECTIVE: The aim of this study was to analyse different ultrasound parameters for the assessment of isolated left ventricular diastolic dysfunction (LVDD) in patients with chronic renal failure (CRF) on periodic hemodialysis (HD), comparing pulsed wave Doppler with pulsed tissue Doppler. MATERIALS AND METHODS: Forty-seven patients with CRF on HD (61% were male; mean age was 51.0 +/- 16.5 years, mean HD time--3.7 +/- 3.8 years, 38% had hypertension, 17% had diabetes) were studied by echocardiography (bidimensional, M-Mode, flow pulsed Doppler and tissue Doppler imaging). All patients had symptoms of left heart failure-class II NYHA, were in sinus rhythm and had no symptoms of ischemic heart disease. The presence of abnormal LV regional contractility was the exclusion criteria. According to their mitral inflow profile Doppler characteristics, patients were included in two groups: Group A (E/A > 1; n = 21) and B (E/A < 1; n = 26). We compared: LV dimensions and function, left atrial (LA) dimension. Gaasch index, LV mass index. E and A wave velocities (in flow pulsatile Doppler and tissue Doppler). E/N ratio in tissue Doppler, isovolumetric relaxation time (IVRT) and deceleration time (DT). RESULTS: There were no significant differences in the prevalence of age > or = 65 years male sex, hypertension or diabetes between group A and B patients, and almost all patients were on hemodialytic treatment for more than one year (81% vs 85%: NS). LV hypertrophy was present in almost all group A and B patients (A--95% vs B--85.5%; NS). Group A, compared with group B, had a difference in the Gaasch index (2.45 +/- 0.3 vs 2.08 +/- 0.4; p < 0.05), E wave velocity in flow pulsatile Doppler and tissue Doppler (cm/sec) (110 +/- 27 vs 62 +/- 20; p < 0.001 and 41 +/- 15 vs 28.5 +/- 16; p < 0.05), E/A ratio in tissue Doppler (1.3 +/- 0.4 vs 0.8 +/- 0.3; p < 0.001). IVRT (msec) (80.7 +/- 15.2 vs 113.5 +/- 28.3; p < 0.001) and DT (msec) (189.7 +/- 24 vs 278.2 +/- 17.9; p < 0.001). According to the E'/A' ratio in tissue Doppler, group A patients were divided in another two groups: E'/A' > 1 (13/21--62%) and < 1 (8/21--38%) and a significantly longer IVRT (75.8 +/- 9.3 vs 100.9 +/- 3.2; p < 0.001) and DT (178 +/- 15 vs 240 +/- 20; p < 0.001) and a greater LA dimension (37.6 +/- 6.9 vs 44.6 +/- 6.9; p < 0.05) were found. CONCLUSIONS: Pulsed wave Doppler is the most useful non invasive method for assessment of global diastolic dysfunction. In our study, 17% of the patients had E/A < 1 only in the tissue Doppler study. These patients probably had a pseudonormal mitral pattern.

Adult↗

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↗

Diastolic dysfunction is predictive of difficult weaning from cardiopulmonary bypass.

Diastolic function is receiving more attention since echocardiographic measurements were developed and have become widely available. The importance and significance of diastolic dysfunction (DD) observed before cardiac surgery and its relationship with adverse outcomes, such as difficult separation from cardiopulmonary bypass (CPB), have not been fully explored. In this study, we hypothesize that DD can be a predictor for the need of inotropic support to successfully separate from CPB. Ninety-two consecutive patients underwent surgery during the study period. Twenty-six patients were excluded. From the remaining 66 patients, 52 had coronary artery bypass grafting alone and 14 combined procedures, valvular surgery, and reoperations (redo). Systolic and diastolic function was evaluated by two experts blinded as to the clinical data except for the age. The evaluation of diastolic function was done according to published guidelines. The demographic, echocardiographic, and hemodynamic variables were entered in a logistic regression analysis to determine which variables were independent predictors of difficult separation from CPB and the need for postoperative vasoactive support. DD was present in 20 patients (30%). Patients with DD had lower weight (P = 0.046), less frequent coronary artery bypass grafting alone (P = 0.0004), more myocardial infarction before surgery (P = 0.02), higher regional wall motion score index (P = 0.0002), and larger left ventricle (P = 0.03). Total CPB time (P = 0.004) and ischemic time (P = 0.007) were longer in the DD group. Patients with DD required more frequent inotropic support at the end of surgery (P = 0.006) and up to 12 h after surgery (P = 0.003). Multivariate logistic regression identified female sex, DD, and total CPB time as predictive of difficult weaning and inotropic requirements up to 12 h after surgery.

Aged↗

[Left ventricular systolic and diastolic dysfunction in patients with chronic renal failure treated with hemodialysis].

Systolic and diastolic left ventricular dysfunction is common and important predictor of risk of death in end-stage renal failure. Systolic dysfunction is defined echocardiographically by a shortening fraction < 25% or an ejection fraction < 40%. Systolic dysfunction has a poor prognosis, strongly associated with myocardial ischemia and left ventricular hypertrophy (LVH). Diastolic dysfunction combines relaxation problems with compliance abnormalities and usually is associated with LVH. It is not clinically possible to distinguish systolic from diastolic LV dysfunction. This underlines the importance of echocardiographic diagnosis. In the present study we have analysed echocardiographically the left ventricular systolic and diastolic function and some possible risk factors contributing to its dysfunction development in patients with chronic renal failure (crf) treated by hemodialysis (HD). From a cohort of 85 patients with crf we selected for analysis 59 clinically stable patients. Echocardiography (ECHO), ECG, body mass index (BMI), serum creatinine, urea, total protein, albumin, hemoglobin, hematocrit, electrolytes, endothelin (ET-1) and parathyroid hormone (PTH) concentrations were evaluated in all patients after HD session. In all HD patients systolic and diastolic LV dysfunction was observed as well as LVH: concentric LVH was detected by ECHO in 46 patients and in 13 patients excentric LVH was observed. Mean serum concentrations of urea, creatinine, endothelin (ET-1), PTH and phosphate were increased while serum concentration of hemoglobin, total protein, albumin, sodium, potassium, calcium were in the normal range. Positive correlation was found between PTH serum concentration and LVM r = 0.704 (p < 0.001), between PTH serum concentration and IVS r = 0.267 (p < 0.04), between PTH serum concentration and PW r = -0.238 (p < 0.04), between ET-1 and RWT r = 0.447 (p < 0.04) and negative correlation between BMI and LVMI r = -0.451 (p < 0.05). Our observations suggests that uremic cardiomyopathy is heterogenous (systolic and diastolic dysfunction) and multifactoral. The correlations between serum PTH concentration and LVH and between BMI and LVH confirmed that both hyperparathyroidism and malnutrition are important factors influencing the development of LVH which plays an important role in the systolic and diastolic cardiac failure in HD patients.

Adult↗

Diastolic heart failure and left ventricular diastolic dysfunction: what we know, and what we don't know!

Diastolic heart failure is a common form of congestive heart failure that is responsible for significant morbidity and mortality. In contrast to heart failure caused by systolic left ventricular dysfunction, diastolic heart failure is harder to diagnose and less likely to be accepted as a diagnosis. In addition, treatment strategies are much less defined than those for heart failure caused by systolic dysfunction.

Adrenergic beta-Antagonists↗

Elevated serum markers for collagen synthesis in patients with hypertrophic cardiomyopathy and diastolic dysfunction.

OBJECTIVES: The hypothesis of impaired collagenolysis in patients with hypertrophic cardiomyopathy (HCM) was tested by measuring serum markers of type-I collagen metabolism. These markers were correlated with echocardiographic parameters of diastolic function. BACKGROUND: HCM is a common disease in the adult population with a wide range of clinical manifestations. Left ventricular hypertrophy and increased intramyocardial collagen content are known to cause diastolic dysfunction in patients with HCM. METHODS: In 26 patients with HCM and 38 control subjects (aged: 57+/-3 and 54+/-2 years, p=n.s.) serum levels of collagenolytic matrixmetalloproteinase-1 (MMP-1) and its inhibitor TIMP-1, the markers for collagen type-I synthesis (PICP) and degradation (ICTP) were determined by ELISA and RIA. Diastolic function were determined by Doppler echocardiography. RESULTS: Free TIMP-1 was elevated in HCM compared to controls (216,78+/-9,89 vs 183.77+/-7.57 ng/ml ; p=0.006) as well as PICP (165.92+/-10.26 vs 114.57+/-6.38 mug/l; p<0.001). Free MMP-1 was significantly lower in HCM (1.13+/-0.20 vs 2.33+/-0.34; p=0.01). ICTP did not differ. The MMP-1/TIMP-1 ratio was significantly lower in HCM (0.006+/-0.001 vs 0.012+/-0.001, p=0.003). PICP correlated positively with diastolic E/A ratio (r=0.389; p=0.05) and septal thickness (r=0.484; p=0.01). CONCLUSIONS: Serum marker of collagen synthesis (PICP) is increased in patients with HCM. Increased marker for inhibition of collagenolysis (TIMP-1) and a disturbed balance of collagen synthesis and degradation (ratio) with a predominance of inhibition of collagenolysis indicates collagen accumulation (fibrosis), which explains passive diastolic dysfunction in patients with HCM.

Adult↗

Recovery of load-induced left ventricular diastolic dysfunction by coenzyme Q10: echocardiographic study.

UNLABELLED: Load-induced cardiac dysfunction (LCD), in which a supernormal left ventricular (LV) systolic performance at rest decreases due to an afterload challenge, usually occurs among children with mitral valve prolapse (MVP). However, diastolic performance is also important because relaxation, like contraction, is based on a process that requires energy. The aim of this study was to examine LV diastolic response patterns to stress in patients with LCD before and after coenzyme Q10 (CoQ) therapy and in controls. The D-E slope, E-F slope and maximal diastolic endocardial velocity were used as echographic diastolic indices. Thirty subjects, aged 9-16 years, were divided into four groups: group 1, 10 normals; group 2, 10 patients with LCD; group 3, the same 10 as in group 2, who recovered with CoQ, 3.0-3.4 mg/kg/day for 7 days; group 4, 10 asymptomatic children with MVP. The heart rate, both at rest and during handgrip (HG), showed little intergroup difference. Only in group 2, were the ejection fraction and all the diastolic indices greater than in the other groups, but these became subnormal with HG. In the other groups, these indices increased with HG to a similar extent, although resting values were smaller than in group 2. IN CONCLUSION: (1) in normal hearts and in hearts with LCD, diastolic performance mimicked systolic performance both in resting and loading conditions; (2) CoQ improved not only the load-induced systolic but also the diastolic dysfunctions in a similar time-course, and (3) mechanical stiffness of the cardiac tissue may not be a cause of load-induced diastolic dysfunction, because the dysfunction was quickly resolved with CoQ therapy. CoQ may be a key substance which affects a common bioenergetic process in contraction and relaxation, to keep these functions normal.

Adolescent↗

Pharmacological strategies for improving diastolic dysfunction in the setting of chronic pulmonary hypertension.

BACKGROUND: Right ventricular (RV) hypertrophy is an adaptive process that occurs in the setting of chronic pulmonary hypertension (CPH) and can lead to alterations in normal RV diastolic properties. This study was designed to investigate the effects of NO and milrinone on RV diastolic dysfunction in the setting of CPH and RV hypertrophy by use of a canine model of monocrotaline pyrrole (MCTP)-induced CPH. METHODS AND RESULTS: Sixteen mongrel dogs (22 to 24 kg) were used. Animals underwent percutaneous pulmonary artery (PA) catheterization to measure pulmonary hemodynamics before and 8 weeks after injection of 3 mg/kg MCTP (n=8) or placebo (control, n=8). Eight weeks after injection, all hearts were instrumented with a PA flow probe, sonomicrometric dimension transducers, and micromanometers. Data were collected at baseline and after both NO and milrinone administration. Diastolic properties were quantified by use of the end-diastolic pressure-volume relationship and the time constant of ventricular isovolumic relaxation. Eight weeks after injection, significant increases in the PA pressure and pulmonary vascular resistance were observed in MCTP dogs. Significant worsening of RV diastolic function occurred in association with significant increases in the ratio of RV dry weight to LV+septal dry weight. NO and milrinone administration both led to significant improvements in RV diastolic properties. CONCLUSIONS: In the setting of MCTP-induced CPH, significant worsening of RV diastolic function was observed in association with significant increases in the ratio of RV dry weight to LV+septal dry weight, suggesting that these changes are partially due to RV hypertrophy. The significant improvement in RV diastolic properties after both NO and milrinone administration suggests that these agents may be effective forms of pharmacological therapy for improving RV diastolic dysfunction in the setting of CPH.

Administration, Inhalation↗

Enhanced sensitivity to hypoxia-induced diastolic dysfunction in pressure-overload left ventricular hypertrophy in the rat: role of high-energy phosphate depletion.

Isolated buffer-perfused rat hearts with pressure-overload hypertrophy develop a greater decrease in left ventricular (LV) diastolic distensibility and a greater impairment in extent of LV relaxation in response to hypoxia than do normal hearts. Using 31P-NMR spectroscopy, we tested the hypothesis that the enhanced susceptibility of hypertrophied hearts to develop hypoxia-induced diastolic dysfunction is due to an accelerated rate of ATP and/or creatine phosphate depletion. Twelve minutes of hypoxia were imposed on isolated isovolumic (balloon-in-left-ventricle) buffer-perfused hearts from 14 rats with pressure-overload hypertrophy (LVH; LV/body wt ratio = 3.43 +/- 17) secondary to hypertension induced by uninephrectomy plus deoxycorticosterone and salt treatment and from 17 age-matched controls (LV/body wt ratio = 2.22 +/- 0.12, p less than 0.001). Coronary artery flow per gram left ventricle was matched in the LVH and control groups during baseline oxygenated conditions and held constant thereafter. Balloon volume was held constant throughout the experiment so that an increase in LV end-diastolic pressure during hypoxia represented a decrease in LV diastolic distensibility. LV systolic pressure was 165 +/- 9 mm Hg in the LVH group compared with 120 +/- 5 mm Hg in the controls during baseline aerobic perfusion (p less than 0.001). LV end-diastolic pressure rose significantly more in response to 12 minutes of hypoxia in the LVH group (12 +/- 1 to 44 +/- 10 mm Hg) than in the controls (12 +/- 1 to 20 +/- 3 mm Hg, p = 0.04). During baseline aerobic conditions, ATP content was the same in the LVH (17.1 +/- 0.5 mumol/g dry LV wt, n = 4) and control (18.8 +/- 0.6 mumol/g dry LV wt, n = 4, p = NS) groups. During hypoxia, ATP declined at the same rate in the LVH and control groups (3.2 +/- 0.5 versus 3.0 +/- 0.5%/min, p = NS) despite the greater rise in end-diastolic pressure in the LVH group. Creatine phosphate content during baseline aerobic perfusion was 14% lower in the LVH group compared with controls, but the rate of creatine phosphate depletion during 12 minutes of hypoxia was the same. During hypoxia, intracellular pH declined modestly and to the same degree in both groups. Thus, the greater susceptibility to hypoxia-induced diastolic dysfunction observed in isolated buffer-perfused hypertrophied rat hearts cannot be explained by an initially lower total ATP content or by an accelerated rate of decline of ATP or creatine phosphate.(ABSTRACT TRUNCATED AT 400 WORDS)

Adenosine Triphosphate↗

[Diastolic dysfunction of the left ventricle: from physiopathology to treatment].

Our understanding of cardiac failure has greatly changed over the last 15 years. Left ventricular diastolic dysfunction, which is now recognised as one of the primary causes of certain types of cardiac failure (1). Abnormal left ventricular diastolic function is the common determinant and indeed the earliest sign of all chronic left ventricular failures whether systolic left ventricular dysfunction is associated with it or not (2). In this paper, we review the basis of diastolic dysfunction and its impact on diagnosis and treatment of cardiac failure.

Aged↗

[Value of echocardiography and heart Doppler in the diagnosis and therapeutic orientation of congestive heart failure--the importance of diastolic dysfunction].

Echocardiography and cardiac-Doppler are very useful techniques to achieve etiologic diagnosis and evaluate therapeutic strategies for heart failure, and left ventricular hypertrophy is known as a serious risk factor for cardiovascular disease morbidity and mortality. Echocardiography establishes, in an easy and noninvasive way, the etiologic diagnosis of heart failure and is a very sensitive technique for the diagnosis and follow-up of patients with left ventricular hypertrophy. On the other hand, diastolic dysfunction is an early manifestation of several conditions associated with heart failure emerging from the diastolic mechanism. The author emphasizes the role of cardiac Doppler in the early diagnosis of diastolic dysfunction and how findings provided by this procedure can lead to more adequate therapeutic measures and assess accurate prognostic information.

Diastole↗

Diastolic dysfunction in the elderly. Genesis and diagnostic and therapeutic implications.

Diastolic left ventricular function is altered substantially with advancing age in healthy persons, and diastolic dysfunction impacts most cardiovascular disorders in the elderly. Older, healthy persons have a delayed relaxation Doppler filling pattern and their early deceleration time is similar to, or modestly lengthened, compared with younger, healthy persons. Two abnormal Doppler filling patterns, the pseudo-normal and the restricted, are discerned more easily, and are more specific in the elderly than the young, because they are the opposite (reverse) of the normal elderly pattern. Most heart failure in the elderly occurs in the presence of preserved systolic function (presumed diastolic heart failure). Elderly patients with diastolic heart failure tend to be women with hypertrophied, hyperdynamic left ventricles, and chronic hypertension. Prognosis may be somewhat better than in systolic heart failure, but the difference diminishes when adjusted for gender and in the very elderly. The pathophysiology of this disorder is not well characterized, diagnostic criteria have not been standardized, and there are no large, multicenter, randomized trials to guide therapy. Further research in this area should be a high priority.

Aged↗

Diastolic dysfunction and increased serum homocysteine concentrations may contribute to increased cardiovascular risk in patients with polycystic ovary syndrome.

OBJECTIVE: To assess cardiac flow parameters in patients with polycystic ovary syndrome (PCOS). DESIGN: A prospective case-control study. SETTING: University-based hospital. PATIENT(S): Thirty consecutive patients with PCOS were enrolled. Thirty women with regular menstrual cycles served as the controls. INTERVENTION(S): Systolic and diastolic function parameters were assessed by standard two-dimensional and M-mode echocardiography. Insulin sensitivity was evaluated by a standard 75-g oral glucose tolerance test and area-under-curve insulin analysis. Serum hormones, lipid profile, homocysteine, vitamin B(12), folate, fibrinogen, uric acid, and plasminogen activator inhibitor-I concentrations were measured. MAIN OUTCOME MEASURE(S): Systolic and diastolic function parameters, insulin sensitivity and serum homocysteine levels. RESULT(S): The mean serum homocysteine and uric acid concentrations were significantly higher in the PCOS group. Patients with PCOS had significant hyperinsulinemia. All systolic function parameters were comparable between the two groups. However, patients with PCOS had significantly lower peak mitral flow velocity in early diastole and significantly lower ratio between the early and late peak mitral flow velocities and also had significantly longer isovolumic relaxation time, reflecting a trend for nonrestrictive-type diastolic dysfunction. The area-under-curve insulin correlated positively with peak mitral flow velocity in late diastole (r = 0.375). The mean cholesterol/high-density lipoprotein ratio correlated negatively with mean mitral flow velocity in early diastole (E) peak (r = -0.474). The mean fasting insulin level correlated negatively with mean E/A ratio (r = -0.387). CONCLUSION(S): Diastolic dysfunction and increased serum homocysteine concentrations may contribute to increased cardiovascular disease risk in patients with PCOS.

Adult↗

Severe diastolic dysfunction with preserved energy conversion efficiency after countershock.

The left ventricular (LV) mechanical performance and the LV myocardial oxygen consumption (VO2)-to-pressure-volume area (PVA; LV total mechanical energy index) relationship were measured in isovolumic contraction of isolated blood-perfused dog hearts before and after direct current (DC) countershocks. At a constant LV volume, DC shocks increased LV end-diastolic pressure progressively and strikingly with the progression of myocardial edema and a marked prolongation of the time constant of LV pressure decay. In contrast, DC shocks changed neither the slope of the LV end-systolic pressure-volume relationship nor the contractile efficiency (the slope of the Vo2-PVA relationship). The oxygen cost of contractility (the slope of the relationship between PVA-independent VO2 and LV contractility) increased 27% after DC shocks. However, the magnitude of this change was considerably smaller than that previously reported in postischemic stunned myocardium (123%), suggesting that the adverse effect of DC shocks on the energy cost of excitation-contraction coupling is relatively minor. Thus, despite the severe diastolic dysfunction, DC shocks do not substantially impair either the efficiency of cross-bridge cycling or calcium cycling. Myocardial interstitial edema is more likely a potential mechanism of diastolic dysfunction after DC shocks.

Animals↗