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Diastolic heart failure: standard Doppler approach and beyond.

Evidence of normal systolic left ventricular function has been reported in up to 30-40% of patients with clinical signs of congestive heart failure, suggesting that diastolic dysfunction is an important predictor of prognosis and mortality. Doppler echocardiography as a noninvasive diagnostic procedure is able to provide immediate and relevant information on functional and structural changes underlying the clinical syndrome of heart failure. Four distinct early filling/late diastole (E/A) ratio patterns (normal, delayed relaxation, pseudonormal, restrictive) can be discerned if viewed within the context of other available clinical information. These patterns evolve from one to another in a single individual, with changes in disease evolution, treatment, and loading condition. They represent a continuum from normal to severe diastolic dysfunction, showing progressively increasing left ventricular (LV) chamber stiffness and subsequently decreasing deceleration time. The combination of Doppler restrictive filling pattern and decreased deceleration time provides important information that helps to differentiate gradations of diastolic dysfunction and has been found to be a potent predictor of prognosis and mortality in various cardiac conditions. When clinical and transthoracic data alone are not sufficient in guiding therapy of congestive heart failure, transesophageal echocardiography can be used to assess most Doppler flows, especially pulmonary venous and left atrial (LA) appendage flows. The use of the multiplane transducer in multiple intermediate scan planes further improves the possibility of optimizing the Doppler incident angle and obtaining the best Doppler recordings of the left upper or right upper pulmonary venous flow. Whereas LV diastolic dysfunction is common in patients with congestive heart failure and appears to be an important predictor of prognosis, little information is available about right ventricular (RV) diastolic dysfunction. The role of RV function in congestive heart failure has probably been underestimated and it is possible that RV diastolic dysfunction assessment is equally important in the follow-up of heart failure patients. Recently, 2 novel echocardiographic technologies for the assessment of ventricular wall dynamics have been developed--color kinesis and tissue Doppler imaging. Both techniques have recently been shown to provide global as well as regional information on LV contraction and filling. Complementary use of both techniques may allow a more complete noninvasive assessment of global and regional systo-diastolic LV function.

Cardiac Output, Low↗

Left ventricular function in patients with chronic kidney disease evaluated by colour tissue Doppler velocity imaging.

BACKGROUND: Cardiovascular disease is the leading cause of death in chronic kidney disease (CKD) patients. Tissue Doppler velocity imaging (TVI) is a new objective method that accurately quantifies myocardial tissue velocities, deformation, time intervals and left ventricular (LV) filling pressure. In this study, TVI was compared with conventional echocardiography for the assessment of left ventricular (LV) function in pre-dialysis patients with different stages of CKD. The results obtained by TVI were used to analyse possible relationships between LV function and clinical factors such as hyperparathyroidism and hypertension that could influence LV function. METHODS: Conventional echocardiography and TVI images were recorded in 40 patients (36 men and 4 women, mean age 60+/-14 years, range 28-80 years) and in 27 healthy controls (21 men and 6 women, mean age 58+/-17 years, range 28-82 years). Twenty-two patients had mild/moderate CKD (CCr>29 ml/min; Group 1) and 18 patients had severe CKD (CCr<or=29 ml/min; Group 2). Using TVI, the myocardial tissue velocities (v; cm/s) for isovolumetric contraction (IVCv), peak systole (PSv), early (E') and late (A') diastolic filling velocities as well as strain rate (SR), mitral annulus displacement, isovolumetric relaxation time (IVRT) and LV filling pressure were estimated using TVI. The average of six LV wall measurements was used to evaluate LV global function. RESULTS: Using TVI, we were able to identify significantly more patients with diastolic dysfunction than using conventional echocardiography (33 vs 26, P<0.05). There was no difference in the prevalence of diastolic dysfunction between Group 1 and 2. However, using TVI, Group 2 CKD patients had lower E' velocities (6.2+/-1.9 vs 8.0+/-2.9 cm/s, P<0.05) and higher IVRT (137.4+/-13 vs 88.2+/-26 ms, P<0.001) in comparison with controls, indicating more accentuated diastolic dysfunction. Systolic blood pressure (SBP) was associated with E' velocities (rho=-0.68, P<0.005) and E'/A' was strongly associated with SBP (rho=-0.60; P<0.01) and PTH (rho=-0.64, P<0.005) in Group 2. Using conventional echocardiography, there was no difference in the prevalence of systolic and diastolic dysfunction between patients with and without LVH. However, using TVI, patients with LVH had significantly lower IVCv (2.8+/-1.3 vs 3.8+/-1.5 and 3.8+/-1.5 cm/s, P<0.05) and PSv (5.5+/-1.0 vs 6.3+/-1.2 and 6.4+/-1.3 cm/s, P<0.05) compared with patients without LVH and controls, and they also had lower E' velocities (7.1+/-2.7 vs 8.0+/-2.9 cm/s, P<0.05) compared with controls, indicating disturbances in systolic and diastolic left ventricular function. CONCLUSIONS: TVI provided additional information on left ventricular function in CKD patients. In patients with advanced renal failure, TVI revealed more accentuated diastolic dysfunction associated with increased systolic blood pressure (SBP) and increased levels of PTH. TVI also demonstrated disturbances in contractility and contraction in patients with LVH, which could not be detected by conventional echocardiography.

Adult↗

Longitudinal changes and prognostic implications of left ventricular diastolic function in first acute myocardial infarction.

BACKGROUND: Left ventricular (LV) diastolic dysfunction contributes to signs and symptoms of clinical heart failure and may be related to prognosis in heart diseases. LV diastolic dysfunction is reported to be present in acute myocardial infarction (MI); however, little is known about the time course of changes in LV diastolic function and its relation to prognosis after acute MI. METHODS AND RESULTS: Two-dimensional and Doppler echocardiographic examinations were performed in 58 consecutive patients with first acute MI. The patients were studied serially within 1 hour and at days 5, 90, and 360 after arrival to the coronary care unit. LV diastolic function was assessed by Doppler measurements of transmitral and pulmonary venous flow. On the basis of mitral inflow, patients with MI were stratified at baseline to 3 LV diastolic filling patterns: normal, impaired relaxation, or pseudonormal/restrictive. Patients with MI were observed for development of congestive heart failure (Killip class >I) during hospitalization and for death during 1-year follow-up, and these complications were related to LV diastolic function. LV diastolic dysfunction was present in the very early phase of acute MI, with signs of impaired relaxation or restrictive LV filling dynamics in 38% and 24% of the patients, respectively, whereas 38% had normal LV filling characteristics. Impaired relaxation of the LV was most pronounced and found in 60% after 1-year follow-up. In-hospital congestive heart failure (Killip class >I) was found in 50% of the patients with initial impaired LV relaxation and in 71% of the patients with initially pseudonormal or restrictive LV filling dynamics, whereas patients with normal LV filling were free of heart failure. Patients with initial impaired relaxation and restrictive LV filling dynamics demonstrated a significant LV dilation during 1-year follow-up. Patients with initial pseudonormal/restrictive LV filling pattern were more frequently readmitted to the hospital for heart failure and had significant higher New York Heart Association class score compared with patients with normal or impaired relaxation during follow-up. Cardiac death was (n = 6) only observed in patients with pseudonormal or restrictive LV filling pattern. In a multivariate stepwise regression analysis, mitral E deceleration time </=140 ms and age were identified as independent variables related to development of in-hospital congestive heart failure and cardiac death during 12 months of follow-up. CONCLUSIONS: LV diastolic dysfunction is present in the very early phase of MI. LV remodeling and development of in-hospital congestive heart failure appear in patients with very early signs of LV diastolic dysfunction. Furthermore, mitral E deceleration time </=140 ms best identified patients at risk of development of in-hospital congestive heart failure and cardiac death after MI.

Adult↗

Systolic and diastolic myocardial dysfunction in cats with hypertrophic cardiomyopathy or systemic hypertension.

BACKGROUND: Hypertrophic cardiomyopathy (HCM) and chronic systemic hypertension (SHT) can both lead to left-ventricular hypertrophy (LVH) in cats. Assessment of LVH-associated myocardial dysfunction could provide new insights in the understanding of the pathophysiology of these diseases. HYPOTHESIS: Quantification of left-ventricular free-wall (LVFW) motion using tissue Doppler imaging (TDI) could permit differentiation of feline HCM from SHT-related LVH (LVH-SHT). ANIMALS: A total of 108 cats of different breeds were enrolled in this study: 35 cats with HCM, 17 with concentric LVH and SHT, and 56 healthy cats as a control group. METHODS: All cats were examined by conventional echocardiography and 2-dimensional color TDI. RESULTS: Radial and longitudinal diastolic LVFW velocities were similarly altered in cats with HCM and LVH-SHT, compared to controls. Systolic velocities were also lower in the groups with hypertrophy than in the controls, for longitudinal but not radial motion. To determine whether these diastolic and systolic alterations could also be observed in cats without LVFW hypertrophy, we performed a subgroup analysis in cats with a normal M-mode examination, that is, with only a localized subaortic interventricular septum hypertrophy. A significant radial and longitudinal diastolic dysfunction was still observed in both the HCM and LVH-SHT groups compared to controls, and systolic dysfunction was detected in the longitudinal motion. CONCLUSIONS: LVFW motion is similarly altered in cats with HCM and LVH-SHT. This dysfunction occurs independently of the presence of myocardial hypertrophy, demonstrating that TDI is capable of detecting systolic and diastolic segmental functional changes in nonhypertrophied wall segments in cats with HCM and SHT.

Age Factors↗

Effect of losartan and amlodipine on left ventricular diastolic function in patients with mild-to-moderate hypertension (J-ELAN): rationale and design.

BACKGROUND: Hypertension is a major underlying disease that may cause left ventricular (LV) diastolic dysfunction, even without LV systolic dysfunction, and antihypertensive drugs could affect LV diastolic function. METHODS AND RESULTS: The Effect of Losartan and Amlodipine on Left Ventricular Diastolic Function in Patients With Mild-to-Moderate Hypertension (J-ELAN) study is a multicenter, prospective, randomized trial designed to assess the effects of losartan and amlodipine on LV diastolic function in hypertensive patients with LV diastolic dysfunction in the absence of systolic dysfunction. A total of 300 patients (150 patients in each group) will be enrolled. In addition to Doppler echocardiographic indices of LV diastolic function, changes in LV structure and atherosclerosis of the carotid arteries will be serially assessed. The maximum follow-up period is 18 months. CONCLUSIONS: This study will provide the characteristic differences in the effects of amlodipine and losartan on LV diastolic dysfunction in hypertensive patients.

Adult↗

Diastolic ventricular dysfunction as a marker for hypertrophic cardiomyopathy in a family with a novel alpha-tropomyosin mutation.

BACKGROUND: Early identification of familial cases of hypertrophic cardiomyopathy (HCM) depends on screening echocardiography, but hypertrophy may not be the most sensitive marker for the disease. We report the echocardiographic findings of a family with HCM and a newly reported mutation in the gene (TPM1) encoding alpha-tropomyosin.Methods and results An 8-year-old girl had sudden cardiac death, and was found to have HCM and a novel L185R-TPM1 mutation on postmortem examination. Screening echocardiograms and DNA analyses were performed on her family. Of the 5 remaining family members, 3 were genetically affected. Those without the TPM1 mutation had normal echocardiographic results. The only echocardiographic finding that identified all 3 of the gene-positive family members was an abnormal left ventricular diastolic filling pattern. CONCLUSION: Abnormal left ventricular diastolic filling patterns, indicating diastolic dysfunction, may provide an early marker for the diagnosis of familial HCM in children, even in the absence of left ventricular hypertrophy.

Adult↗

Assessment of diastolic function by tissue Doppler echocardiography: comparison with standard transmitral and pulmonary venous flow.

The objective of this study was to determine the utility of Doppler tissue echocardiography in the evaluation of diastolic filling and in discriminating between normal subjects and those with various stages of diastolic dysfunction. We measured myocardial velocities in 51 patients with various stages of diastolic dysfunction and in 27 normal volunteers. The discriminating power of each of the standard Doppler indexes of left ventricular filling, pulmonary venous flow, and myocardial velocities was determined with the use of Spearman rank correlation and analysis of variance F statistics. Early diastolic myocardial velocity (E(m)) was higher in normal subjects (16.0 +/- 3.8 cm/s) than in patients with either delayed relaxation (n = 15, 7.5 +/- 2.2 cm/s), pseudonormal filling (n = 26, 7.6 +/- 2.3 cm/s), or restrictive filling (n = 10, 7.4 +/- 2.4 cm/s, P <.0001). E(m ) was the best single discriminator between control subjects and patients with diastolic dysfunction (P =.7, F = 64.5). Myocardial velocities assessed by Doppler tissue echocardiography are useful in differentiating patients with normal from those with abnormal diastolic function. Myocardial velocity remains reduced even in those stages of diastolic dysfunction characterized by increased preload compensation.

Adult↗

Are hematinic deficiencies the cause of anemia in chronic heart failure?

BACKGROUND: Anemia in chronic heart failure (CHF) is common, varying in prevalence between 14.4% and 55%, and is more frequent in patients with more severe heart failure. Patients with CHF who have anemia have a poorer quality of life, higher hospital admission rates, and reduced exercise tolerance. We explored the relation between hematinic levels and hemoglobin (Hb) levels and exercise tolerance in a group of patients with CHF. METHODS: We analyzed data from 173 patients with left ventricular systolic dysfunction (LVSD), 123 patients with symptoms of heart failure, but preserved left ventricular (LV) systolic function ("diastolic dysfunction"), and 58 control subjects of similar age. Each underwent echocardiography, a 6-minute walk test, and blood tests for renal function and Hb and hematinic levels (vitamin B12, iron, and folate). We classified patients as having no anemia (Hb level >12.5 g/dL), mild anemia (Hb level from 11.5-12.5 g/dL), or moderate anemia (Hb level <11.5 g/dL). RESULTS: Of patients with LVSD, 16% had moderate anemia and 19% had mild anemia. Of patients with preserved LV function, 16% had moderate anemia and 17% had mild anemia. Four control subjects had a Hb level <12.5 g/dL. Of all patients, 6% were vitamin B12 deficient, 13% were iron deficient, and 8% were folate deficient. There was no difference between patients with LVSD and the diastolic dysfunction group. In patients with LVSDS, the average Hb level was lower in New York Heart Association class III than classes II and I. The distance walked in 6 minutes correlated with Hb level in both groups of patients with CHF (r = 0.29; P <.0001). Patients with anemia achieved a lower pVO2 (15.0 [2.3] vs 19.5 [4.4], P <.05). Peak oxygen consumption correlated with Hb level (r = 0.21, P <.05) in the patients, but not in the control subjects. In patients with anemia, the mean creatinine level was higher than in patients with a Hb level >12.5 g/dL, but there was no clear relationship with simple regression. Hematocrit level and mean corpuscular volume were not different in the patients with diastolic dysfunction, patients with LV dysfunction, or the control subjects. Hematocrit levels were not influenced by diuretic dose. Patients with anemia were not more likely to be hematinic deficient than patients without anemia. CONCLUSIONS: Patients with symptoms and signs of CHF have a high prevalence of anemia (34%) whether they have LV dysfunction or diastolic dysfunction, but few patients have hematinic deficiency. Hemoglobin levels correlate with subjective and objective measures of severity and renal function.

Aged↗

Diastolic heart failure.

Primary diastolic failure is typically seen in patients with hypertensive or valvular heart disease as well as in hypertrophic or restrictive cardiomyopathy but can also occur in a variety of clinical disorders, especially tachycardia and ischemia. Diastolic dysfunction has a particularly high prevalence in elderly patients and is generally associated, with low mortality but high morbidity. The pathophysiology of diastolic dysfunction includes delayed relaxation, impaired LV filling and/or increased stiffness. These conditions result typically in an upward displacement of the diastolic pressure-volume relationship with increased end-diastolic, left atrial and pulmo-capillary wedge pressure leading to symptoms of pulmonary congestion. Diagnosis of diastolic heart failure requires three conditions: (1) presence of signs or symptoms of heart failure; (2) presence of normal or slightly reduced LV ejection fraction (EF > 50%) and (3) presence of increased diastolic filling pressure. Assessment of diastolic function can be performed with several non-invasive (2D- and Doppler-echocardiography, color Doppler M-mode, Doppler tissue imaging, MR-myocardial tagging, radionuclide ventriculography) and invasive techniques (micromanometry, angiography, conductance method). Doppler-echocardiography is the most useful tool to routinely measure diastolic function. Different techniques can be used alone or in combination to assess LV diastolic function, but most of them are dependent on heart rate, pre- and afterload. The transmitral flow pattern remains the starting point, since it is easy to acquire and rapidly categorizes patients into normal (E > A), delayed relaxation (E < A), and restrictive (E >> A) filling patterns. Invasive assessment of diastolic function allows determination of the time constant of relaxation from the exponential pressure decay during isovolumic relaxation, and the evaluation of the passive elastic properties from the slope of the diastolic pressure-volume (= constant of chamber stiffness) and stress-strain relationship (= constant of myocardial stiffness). The prognosis of diastolic heart failure is usually better than for systolic dysfunction. Diastolic heart failure is associated with a lower annual mortality rate of approximately 8% as compared to annual mortality of 19% in heart failure with systolic dysfunction, however, morbidity rate can be substantial. Thus, diastolic heart failure is an important clinical disorder mainly seen in the elderly patients with hypertensive heart disease. Early recognition and appropriate therapy of diastolic dysfunction is advisable to prevent further progression to diastolic heart failure and death. There is no specific therapy to improve LV diastolic function directly. Medical therapy of diastolic dysfunction is often empirical and lacks clear-cut pathophysiologic concepts. Nevertheless, there is growing evidence that calcium channel blockers, beta-blockers, ACE-inhibitors and AT2-blockers as well as nitric oxide donors can be beneficial. Treatment of the underlying disease is currently the most important therapeutic approach.

Cardiac Catheterization↗

Diastolic function and heart failure: an overview.

Diastolic dysfunction is being recognized increasingly as a primary cause of congestive heart failure. It may result from physiological abnormalities of myocardial relaxation, or anatomical abnormalities which increase resistance to ventricular inflow. With regard to physiological abnormalities, there is substantial evidence to indicate that myocardial ischaemia and hypertrophy are two conditions characterized by impaired inactivation and relaxation of myocardial cells. These conditions often co-exist in patients with idiopathic hypertrophic subaortic stenosis or calcific valvular aortic stenosis. Recent evidence also suggests a role for calcium overload in the diastolic dysfunction seen in some patients with advanced congestive heart failure. Diastolic dysfunction may be of fundamental importance in the pathophysiology of flash pulmonary oedema in patients with advanced ischaemic heart disease, since myocardial ischaemia in such patients may lead to a decline in relaxation rate, increased resistance to early diastolic filling and further impairment in diastolic coronary blood flow due to intramyocardial compression of capillaries and venules. During the transient ischaemia of angina pectoris, patients with multivessel coronary artery disease often show a striking upward shift in the left ventricular diastolic pressure-volume relationship, signifying a marked decrease in distensibility of the left ventricular chamber. With regard to anatomical abnormalities, diastolic dysfunction in heart failure may result from structural changes within the ventricular wall. Diastolic dysfunction of the left ventricle may result from extrinsic compression by pericardial effusion (tamponade), pericardial constriction, and right ventricular overload. Thus, a variety of physiological and anatomical abnormalities may lead to increased resistance to diastolic filling of one or both ventricles, resulting in diastolic heart failure.

Diastole↗

Electrocardiography and Doppler echocardiography for risk stratification in patients with chronic heart failure: incremental prognostic value of QRS duration and a restrictive mitral filling pattern.

OBJECTIVES: This prospective study tested whether Doppler echocardiographic variables add incremental value to QRS duration in determining the prognosis of patients with chronic heart failure (CHF) and systolic dysfunction. BACKGROUND: Diastolic dysfunction frequently is observed in patients with CHF, but its prognostic impact relative to that of QRS duration is unknown. METHODS: A total of 193 patients with CHF and an ejection fraction <45% were enrolled prospectively. Echo measurements included left ventricular dimensions/volumes, ejection fraction, mitral early/late diastolic velocity ratio, deceleration time, and tissue Doppler mitral annular velocities. The mitral filling pattern was classified as either restrictive (RFP) or nonrestrictive. A cardiac event (cardiac death or urgent cardiac transplantation) was defined as combined study end point. RESULTS: During a follow-up of 385 +/- 270 days, 24 patients suffered an event (cardiac death, n = 21; urgent transplantation, n = 3). The RFP, QRS duration, left ventricular systolic diameter, and mitral annular early diastolic velocity were independent predictors of an event. In patients with QRS duration >144 ms, the outcome was markedly poorer in the presence of RFPs as compared with their absence. Similarly, despite a QRS duration <or =144 ms, the outcome was worse in the presence of a RFP. A risk-stratification model based on the three strongest independent predictors separated groups into those with good prognosis and those with high, intermediate, and low event-free survival rates. CONCLUSIONS: In subjects with CHF and systolic dysfunction, transmitral flow patterns add incremental value to QRS duration in determining the prognosis.

Chronic Disease↗

Echocardiographic characteristics of electrocardiographically unrecognized myocardial infarctions in a community population.

Unrecognized myocardial infarction (UMI) as diagnosed by surveillance electrocardiography has been shown to carry the same poor prognosis as recognized myocardial infarction (RMI). The echocardiographic characteristics of UMI have never been studied before. Due to a similar prognosis, we hypothesized that UMI and RMI would exhibit similar degrees of echocardiographic ventricular dysfunction. We studied a random community cohort of 2,042 adults who were > or =45 years of age in a cross-sectional setting in Olmsted County, Minnesota. RMI was diagnosed by review of medical records and UMI was diagnosed if the electrocardiogram met MI criteria without a previous MI recorded in the medical record. All subjects underwent transthoracic echocardiography. We identified 80 patients who had UMI and 101 who had RMI. In bivariate analyses, a stepwise increase in echocardiographic abnormalities was observed from participants who had no MI to UMI to RMI: respective mean ejection fractions were 63%, 61%, and 55; prevalences in left ventricular enlargement were 13%, 22%, and 52%; mean left ventricular mass indexes were 98, 103, and 118 g/m(2); prevalences in regional wall motion abnormality were 2%, 13%, and 42%; and prevalences in diastolic dysfunction were 25%, 56%, and 65% (p for trend <0.0001 for all comparisons). After adjusting for standard coronary risk factors, patients who had UMI continued to exhibit significant abnormalities in systolic dysfunction, diastolic dysfunction, and regional wall motion abnormality, although to a lesser extent than patients who had RMI. In conclusion, patients who have UMI manifest structural abnormalities more commonly than do patients who have no MI but less commonly than do those who have RMI. The similar prognosis after UMI and RMI cannot be explained by comparable degrees of ventricular damage.

Aged↗

[Assessment and evaluation of cardiac function].

Assessment and evaluation of cardiac function have become commonplace in the care of cardiac patients with acute or chronic disorders, since therapy of most cardiac diseases is designed specifically to improve ventricular function. Now, various techniques are available for quantitative measurements of the size, shape and motion of the ventricle. Ventricular dysfunction is defined with two components, systolic and diastolic dysfunction, and can be described hemodynamically in terms of the ventricular pressure-volume diagram. Pure systolic dysfunction is associated with a depression in the end-systolic pressure-volume relation, using the Frank-Starling relation to restore cardiac output toward normal. In contrast, pure diastolic dysfunction is associated with preservation of the end-systolic pressure-volume relation but distortion of the diastolic relation, showing higher diastolic pressure at any given volume. However, in patients presenting clinically with heart failure, both systolic and diastolic dysfunction are usually observed. In this context, factors and disorders that influence ventricular dysfunction are described, considering extrinsic or intrinsic to the ventricular chambers.

Cardiac Output↗

Cardiac abnormalities as a new manifestation of nonalcoholic fatty liver disease: echocardiographic and tissue Doppler imaging assessment.

Nonalcoholic fatty liver disease (NAFLD) is linked to the metabolic syndrome. The aim of the present study is to determine the effect of the metabolic syndrome on left ventricular (LV) geometry and function using as a model patients with NAFLD. Thirty-eight patients with NAFLD, less than 55 years of age and with a normal exercise test, were compared with an age and sex-matched control group. Patients with diabetes mellitus, hypertension, and body mass index>40 were excluded. A complete echocardiographic study including tissue Doppler imaging (TDI) was performed. The following parameters were assessed by echo Doppler: peak velocities of early (E) and late (A) diastolic filling, E/A ratio, flow propagation velocity (Vp). Using TDI early diastolic velocity (E'), and systolic velocity (S') of mitral annulus were obtained. The patients with NAFLD had a significantly higher body mass index (31.4+/-5 vs. 26.4+/-4 kg/m, P=0.01), higher glucose (100.6+/-13 vs. 83.0+/-10 mg/dL, P=0.01), and triglyceride levels (126.5+/-44 vs. 206.5+/-67 mg/dL, P<0.001). Increased thickness of the intraventricular septum, posterior wall (11.03+/-2.2 vs. 8.9+/-2.9 mm, P=0.001; 8.5+/-1.7 vs. 9.7+/-2.3 mm, P=0.04), and larger LV mass and LV mass/height (160.7+/-58.7 vs.115.3+/-35.4 g, P=0.001 and 92.6+/-29.5 vs. 69.2+/-19.8 g/m, P=0.001, respectively) were found in NAFLD group. LV systolic function was similar in both groups. Patients with NAFLD had a lower E (73.6+/-11.0 vs. 86.4+/-20.0 cm/s, P<0.006) and E/A ratio (1.0+/-0.3 vs. 1.76+/-0.8 P<0.0001). Moreover, the Vp and the E' on TDI were significantly lower compared with the control group (49.0+/-9.7 vs. 74.7+/-18.4 cm/s, P<0.0001 and 10.3+/-2.0 vs. 13.8+/-1.7 cm/s, P<0.0001, respectively). On multivariate analysis the E' on TDI was the only independent parameter associated with NAFLD. In conclusion, patients with NAFLD in the absence of morbid obesity, hypertension, and diabetes have mildly altered LV geometry and early features of left ventricular diastolic dysfunction. Early diastolic velocity on TDI was found to be the only index that could identify the patients with NAFLD and metabolic syndrome.

Adult↗

Metabolic support as an adjunct to inotropic support in the hypoperfused heart.

In situations such as severe low-flow ischemia, where myocardial work output is low and dependence on anaerobic glycolysis is high, increasing the myocardial supply of glucose and insulin is cardioprotective. Our goal was to determine whether this strategy of "metabolic support" would also be cardioprotective in the moderately hypoperfused heart receiving inotropic stimulation, i.e. when myocardial work was near normal, and reliance on anaerobic glycolysis was minimal. Isovolumic left ventricular performance and cardiac energetics (31P-NMR spectroscopy) were measured in 20 isolated rat hearts perfused with red blood cell containing perfusate (hematocrit 40%) with either normal (5 m M, 15 microU/ml) or increased (19.5 m M, 250 microU/ml) glucose and insulin in addition to normal levels of lactate and free fatty acids. Lowering global coronary flow to 30% of normal decreased left ventricle developed pressure by 50%. Administering dobutamine for 40 min restored developed pressure to 95+/-13% of baseline but caused diastolic pressure to increase by 23+/-6 mmHg and [ATP] to decrease by 44+/-6%. Glucose and insulin prevented the increase in end-diastolic pressure, and [ATP] fell by only 14+/-3%. Despite these improvements in cardiac energetics and diastolic function, left ventricle developed pressure was not improved by increased glucose and insulin during, or after the hypoperfusion. We conclude that inotropic support of the hypoperfused heart can cause new diastolic dysfunction, but that this diastolic dysfunction can be eliminated by preserving myocardial high-energy phosphates with increased glucose and insulin.

Adenosine Triphosphate↗

Congestive heart failure in coronary artery disease.

Congestive heart failure (CHF) affects approximately 1% of the United States population and its incidence continues to increase. Next to hypertension, coronary artery disease (CAD) is the second most frequent cause of CHF. Important distinction should be made between systolic dysfunction and diastolic dysfunction in CAD. The diagnostic and therapeutic challenges posed by both have stimulated much investigation into the pathophysiologic mechanisms involved and have led to innovative pharmacologic interventions to forestall progression of the disease. The challenge in the 1990s is prevention. In the meantime, results of completed and ongoing randomized controlled trials will determine the most effective forms of therapy, which will not only improve symptoms but also hopefully extend survival.

Angiotensin-Converting Enzyme Inhibitors↗

The NT-proBNP assay identifies very elderly nursing home residents suffering from pre-clinical heart failure.

BACKGROUND: Little is known about the prevalence of heart failure among very old people, although hospitalisation rates for chronic heart failure are very high. Recently, brain natriuretic peptides have emerged as important diagnostic and prognostic serum markers for congestive heart failure. AIMS: The main purpose of our study was to determine whether there is a cut-off for NT-proBNP for detecting the echocardiographic features of left ventricular systolic and/or diastolic dysfunction and clinical heart failure among old people living in nursing homes. Secondarily, we investigated the medium-term prognostic power of the neurohormone levels. METHODS: We screened 101 old people (80% females, aged 84+/-9 years) from two nursing homes. We prospectively evaluated whether we could effectively stratify patients using a combination of (1) restrictive clinical criteria, (2) NT-proBNP measurements (Elecsys System, Roche Diagnostics) and (3) echocardiography for all patients. RESULTS: Forty-two percent of the subjects had left ventricular dysfunction: 11% systolic, 23% diastolic and 8% both systolic and diastolic. The mean NT-proBNP concentration was 2806+/-7028 pg/ml in the 42 patients with left ventricular systolic and/or diastolic dysfunction, compared with 365+/-456 pg/ml in the 59 patients with normal left ventricular function (p<0.01, Z=-4.8 Mann-Whitney U test). The neurohormone proved to be a good predictor of events within 6 months [area under the receiver-operated curve (ROC)=0.79]. CONCLUSIONS: Blood NT-proBNP concentrations can play an important role in stratifying old people into left ventricular dysfunction risk groups. The neurohormone is an independent marker for death or admission for heart failure in the medium term.

Aged↗

Predictive value of systolic and diastolic function for incident congestive heart failure in the elderly: the cardiovascular health study.

OBJECTIVES: We sought to assess the ability of echocardiographic indices of systolic and diastolic function to predict incident congestive heart failure (CHF). BACKGROUND: Noninvasive indices of subclinical systolic and/or diastolic dysfunction that can be used to identify patients in a transition phase between normal cardiac function and clinical CHF would be valuable. Though midwall shortening and Doppler mitral inflow patterns are seemingly well suited to predict subsequent CHF, the predictive value of these indices has not been investigated. METHODS: We studied 2,671 participants in the Cardiovascular Health Study who were free of coronary heart disease, CHF or atrial fibrillation. Clinical and quantitative echocardiographic data were obtained in all participants. RESULTS: At a mean follow-up of 5.2 years (range 0 to 6 years), 170 participants (6.4% of the cohort) developed CHF. Although 96% of these participants had normal or borderline ejection fraction (EF) at baseline, only 57% had normal or borderline EF at the time of hospitalization. In multivariate modeling, fractional shortening at the endocardium (relative risk [RR] 1.85 per 10-unit decrease, confidence interval [CI] 1.27 to 2.39), fractional shortening at the midwall (RR 1.29 per five-unit decrease, 95% CI 1.11-1.51) and peak Doppler peak E (RR 1.15 for each 0.1 M/s increment; CI 1.02 to 1.21) independently predicted incident CHF. Both high and low Doppler E/A ratios were predictive of incident CHF. CONCLUSIONS: Roughly half the occurrences of CHF in this population are associated with normal or borderline EF. Echocardiographic findings suggestive of subclinical contractile dysfunction and diastolic filling abnormalities are both predictive of subsequent CHF. The standard (FSendo) and refined (FSmw) parameters of systolic function performed similarly in this regard, though subjects with left ventricular hypertrophy and depressed FSmw are at particularly high risk for subsequent CHF.

Age Factors↗