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A new use for M-mode echocardiography in detecting left ventricular diastolic dysfunction in coronary artery disease.

Regional left ventricular (LV) diastolic function affects the global rate and pattern of LV filling. These changes may be detected by changes in the magnitude and timing of the increase in LV basal diameter during diastole. Because M-mode echocardiography possesses the high temporal and spatial resolution to detect such abnormalities, a group of 8 normal control subjects were compared with a group of 12 patients with coronary artery disease (CAD) to determine differences in the rate and timing of ventricular filling. The CAD patients had lower rates of fast filling expansion than the control subjects. The proportion of LV diastolic expansion during fast filling was lower. During atrial systole the increased rate of LV expansion was not significantly higher in the CAD patients, but the proportion of diastolic expansion occurring with atrial systole was increased. These changes may reflect a decrease in the rate and magnitude of early diastolic filling in the noncompliant ventricle and an increased reliance on active atrial transport. Thus, CAD alters the rate and pattern of LV filling. Changes in LV diameter as measured by M-mode echocardiography may be useful in detecting altered patterns of LV diastolic filling and identifying patients with CAD.

Adult↗

Mechanisms underlying ischemic diastolic dysfunction: relation between rigor, calcium homeostasis, and relaxation rate.

Increased diastolic chamber stiffness (upward arrow DCS) during ischemia may result from increased diastolic calcium, rigor, or reduced velocity of relaxation. We tested these potential mechanisms during severe ischemia in isolated red blood cell-perfused isovolumic rabbit hearts. Ischemia (coronary flow reduced 83%) reduced left ventricular (LV) contractility by 70%, which then remained stable. DCS progressively increased. When LV end-diastolic pressure had increased 5 mmHg, myofilament calcium responsiveness was altered with 50 mmol/l NH(4)Cl or 10 mmol/l butanedione monoxime. These affected contractility (i.e., a calcium-mediated force) but not upward arrow DCS. Second, quick length changes reversed upward arrow DCS, supporting a rigor mechanism. Third, ischemia increased the time constant of isovolumic pressure decline from 47 +/- 3 to 58 +/- 3 ms (P < 0.02) but concomitantly abbreviated the contraction-relaxation cycle, i.e., pressure dissipation occurred earlier without diastolic tetanization. Finally, to assess any link between rate of relaxation and upward arrow DCS, hearts were exposed to 10 mmol/l calcium. Calcium doubled contractility and accelerated relaxation velocity, but without affecting upward arrow DCS. Thus upward arrow DCS developed during ischemia despite severely reduced contractility via a rigor (and not calcium mediated) mechanism. Calcium resequestration capacity was preserved, and reduced relaxation velocity was not linked to upward arrow DCS.

Ammonium Chloride↗

Patients with a hypertensive response to exercise have impaired systolic function without diastolic dysfunction or left ventricular hypertrophy.

OBJECTIVES: We sought to determine if a hypertensive response to exercise (HRE) is associated with myocardial changes consistent with early hypertensive heart disease. BACKGROUND: An HRE predicts the development of chronic hypertension (HT) and may reflect a preclinical stage of HT. METHODS: Patients with a normal left ventricular (LV) ejection fraction and a negative stress test were recruited into three matched groups: 41 patients (age 56 +/- 10 years) with HRE (>210/105 mm Hg in men; >190/105 in women), comprising 22 patients with (HT+) and 19 without resting hypertension (HT-); and 17 matched control subjects without HRE. Long-axis function was determined by measurement of the strain rate (SR), peak systolic strain, and cyclic variation (CV) of integrated backscatter in three apical views. RESULTS: An HRE was not associated with significant differences in LV mass index. Exercise performance and diastolic function were reduced in HRE(HT+) patients, but similar in HRE(HT-) patients and controls. Systolic dysfunction (peak systolic strain, SR, and CV) was significantly reduced in HRE patients (p < 0.001 for all). These reductions were equally apparent in patients with and without a history of resting HT (p = NS) and were independent of LV mass index and blood pressure (p < 0.01). CONCLUSIONS: An HRE is associated with subtle systolic dysfunction, even in the absence of resting HT. These changes occur before the development of LV hypertrophy or detectable diastolic dysfunction and likely represent early hypertensive heart disease.

Exercise↗

Maternal diastolic dysfunction and left ventricular geometry in gestational hypertension.

The objective of this study was to evaluate diastolic parameters and left ventricular geometry in gestational hypertension. Twenty-one consecutive pregnant women with gestational hypertension and 21 normotensive women matched for age and gestational age were enrolled in the third trimester of gestation. Echocardiographic and uterine color Doppler evaluations were performed. Systolic, diastolic, and mean blood pressure, total vascular resistance (TVR), and uterine resistance index were higher in hypertensive women than in control subjects (P<0.01). Left atrial function and cardiac output were significantly lower in gestational hypertension (P<0.01). Patients with gestational hypertension had longer left ventricular isovolumetric relaxation time (IVRT) (P<0.0001); lower velocity-time integral of the A wave (P<0.05) and of the diastolic pulmonary vein flow (P<0.05); and higher velocity-time integral of the reverse pulmonary vein flow (P<0.05). Systolic fraction of the pulmonary vein flow was higher in women with gestational hypertension than in control subjects (P<0.01); the difference in duration of pulmonary vein flow and A wave was closer to 0 in gestational hypertension (P<0.0001). Altered left ventricular geometry was found in 100% of hypertensive patients and in 19.05% of normotensive patients (P<0.001). IVRT, left ventricular end-systolic volume, atrial function, and uterine resistance index were directly related to TVR (P<0.01); deceleration time of the E wave showed a quadratic correlation with TVR (P<0.01). Gestational hypertension is characterized by an altered cardiac geometric pattern of concentric hypertrophy. The altered geometric pattern assessed during gestational hypertension is associated, in our study, with depressed systolic function, high TVR, altered diastolic function, and left atrial dysfunction. Deceleration time of the E wave, IVRT, and left atrial fractional area change, found in concomitance with the highest TVR, may be useful in the evaluation of cardiac function and hemodynamics present in pregnancy-induced hypertension.

Adult↗

Doppler tissue imaging for assessing left ventricular diastolic dysfunction in heart transplant rejection.

OBJECTIVE: To test the hypothesis that diastolic mitral annular motion velocity, as determined by Doppler tissue imaging and left ventricular diastolic flow propagation velocity, is related to the histological degree of heart transplant rejection according to the International Society of Heart and Lung Transplantation (ISHLT). METHODS: In 41 heart transplant recipients undergoing 151 myocardial biopsies, the following Doppler echocardiographic measurements were performed within one hour of biopsy: transmitral and pulmonary vein flow indices; mitral annular motion velocity indices; left ventricular diastolic flow propagation velocity. RESULTS: Late diastolic mitral annular motion velocity (A(DTI)) and mitral annular systolic contraction velocity (SC(DTI)) were higher in patients with ISHLT < IIIA than in those with ISHLT >/= IIIA (A(DTI), 8.8 cm/s v 7.7 cm/s (p = 0.03); SC(DTI), 19.3 cm/s v 9.3 cm/s (p < 0.05)). Sensitivity and specificity of A(DTI) < 8.7 cm/s (the best cut off value) in predicting significant heart transplant rejection were 82% and 53%, respectively. Early diastolic mitral annular motion velocity (E(DTI)) and flow propagation velocity were not related to the histological degree of heart transplant rejection. CONCLUSIONS: Doppler tissue imaging of the mitral annulus is useful in diagnosing heart transplant rejection because a high late diastolic mitral annular motion velocity can reliably exclude severe rejection. However, a reduced late diastolic mitral annular motion velocity cannot predict severe rejection reliably because it is not specific enough.

Blood Flow Velocity↗

Reduced systemic arterial compliance is associated with left ventricular hypertrophy and diastolic dysfunction in older people.

OBJECTIVES: To study the relationship between left ventricular diastolic function and systemic arterial compliance in the older population. DESIGN: Cross-sectional survey. PARTICIPANTS: A total of 67 older volunteer participants (aged 67 +/- 5.4 years). MEASUREMENTS: Systemic arterial compliance (SAC) was measured using applanation tonometry and aortic velocimetry, and diastolic function was assessed using Doppler filling. Left ventricular mass was determined echocardiographically. RESULTS: There were significant univariate correlations between diastolic filling, as measured by E/A ratio, systemic arterial compliance (0.34, P < .01), and left ventricular mass (-0.41, P < .001). In multiple regression analysis, using diastolic filling as the dependent variable and heart rate, age, left ventricular mass corrected for body surface area, systolic and diastolic blood pressures, and arterial compliance as independent variables, the major determinants of diastolic filling were heart rate, left ventricular mass, and diastolic blood pressure. Arterial compliance did not make a significant independent contribution. CONCLUSION: This study demonstrates a positive relationship between diastolic filling and arterial compliance in the older population. However, in multiple regression analysis, heart rate, diastolic blood pressure, and left ventricular mass were the independent predictors of diastolic filling (E/A), whereas arterial compliance was not. These findings imply that therapeutic modulation of aortic stiffness would not, of itself, contribute to improvement in diastolic function.

Arteries↗

MRI and echocardiographic assessment of the diastolic dysfunction of normal aging: altered LV pressure decline or load?

Changes in diastolic indexes during normal aging, including reduced early filling velocity (E), lengthened E deceleration time (DT), augmented late filling (A), and prolonged isovolumic relaxation time (IVRT), have been attributed to slower left ventricular (LV) pressure (LVP) decay. Indeed, this constellation of findings is often referred to as the "abnormal relaxation" pattern. However, LV filling is determined by the atrioventricular pressure gradient, which depends on both LVP decline and left atrial (LA) pressure (LAP). To assess the relative influence of LVP decline and LAP, we studied 122 normal subjects aged 21-92 yr by Doppler echocardiography and MRI. LVP decline was assessed by color M-mode (V(p)) and the LV untwisting rate. Early diastolic LAP was evaluated using pulmonary vein flow systolic fraction, pulmonary vein flow diastolic DT, color M-mode (E/V(p)), and tissue Doppler (E/E(m)). Linear regression showed the expected reduction of E, increase in A, and prolongation of IVRT and DT with advancing age. There was no relation of age to parameters reflecting the rate of LVP decline. However, older age was associated with reduced E/V(p) (P = 0.008) and increased pulmonary vein systolic fraction (P < 0.001), pulmonary vein DT (P = 0.0026), and E/E(m) (P < 0.0001), all suggesting reduced early LAP. Therefore, reduced early filling in older adults may be more closely related to a reduced early diastolic LAP than to slower LVP decline. This effect also explains the prolonged IVRT. We postulate that changes in LA active or passive properties may contribute to development of the abnormal relaxation pattern during the aging process.

Adult↗

Assessment of diastolic dysfunction. Invasive modalities.

In this article, the author sought to review the two primary components of diastolic function that are most directly and accurately determined using invasive methodologies. For chamber relaxation this is optimally achieved using a micromanometer catheter, whereas for chamber compliance (or its inverse stiffness) this is best achieved by combining this catheter with a measure of instantaneous volume from a conductance catheter, using data from multiple cycles. Even with the ideal data set, the analysis of both properties involves physiologic and often mathematical assumptions, and the extent to which the data do not match these assumptions, the derived indexes may be misleading. Care in the data collection, and awareness of the various factors and pitfalls involved with their analysis can undoubtedly improve the interpretations. As advances in noninvasive methods continue to evolve, reliance on invasive methodologies will continue to fade into the background. At present, however, they remain the gold standard for the two primary diastolic properties described, and have clearly played a central role in the evolution of our understanding of cardiac diastolic disease and its treatment.

Cardiac Catheterization↗