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Diastolic aortic pressure rise during percutaneous transluminal coronary angioplasty: an index of left ventricular systolic dysfunction.

OBJECTIVES: To investigate the relation between diastolic aortic pressure response and left ventricular systolic dysfunction during percutaneous transluminal coronary angioplasty. BACKGROUND: The abnormal diastolic blood pressure rise during exercise in patients with coronary artery disease probably reflects left ventricular systolic dysfunction rather than the number of stenosed coronary arteries. METHODS: Aortic blood pressures and left ventricular systolic function indices were estimated in 26 patients with single proximal stenosis of the left anterior descending coronary artery both before and during angioplasty. RESULTS: During coronary angioplasty all patients presented an increase in diastolic aortic pressure (P << 0.001), 8-12s before intracoronary electrocardiographic changes. During acute ischaemia there was a decrease in left ventricular ejection fraction (P << 0.001) and stroke volume (P << 0.001) and an increase in end systolic volume (P << 0.001) and left ventricular end diastolic pressure (P << 0.001). No statistically significant changes were observed in systolic blood pressure or heart rate. The aortic diastolic pressure increase was correlated with the decrease in ejection fraction (r = -0.95, P << 0.001) and with the increases in end systolic volume (r = 0.86, P << 0.001) and left ventricular end diastolic pressure (r = 0.85, P << 0.001). CONCLUSIONS: The rise in diastolic aortic pressure during percutaneous transluminal coronary angioplasty occurs earlier than intracoronary electrocardiographic changes and is related to ischaemic left ventricular systolic dysfunction.

Angioplasty, Balloon, Coronary

Prolongation of isovolumetric relaxation time as assessed by Doppler echocardiography predicts doxorubicin-induced systolic dysfunction in humans.

A reasonably sensitive and specific noninvasive test for doxorubicin cardiotoxicity is needed. In addition, few data exist on the short- and long-term effects of doxorubicin on diastolic filling. To determine if pulsed Doppler indexes of diastolic filling could predict doxorubicin-induced systolic dysfunction, 26 patients (mean age 48 +/- 12 years) were prospectively studied before receiving chemotherapy (control) and 3 weeks after obtaining cumulative doses of doxorubicin. In nine patients developing doxorubicin-induced systolic dysfunction (that is, a decrease in ejection fraction by greater than or equal to 10 ejection fraction units to less than 55%), the isovolumetric relaxation time was prolonged (from 66 +/- 18 to 84 +/- 24 ms, p less than 0.05) after a cumulative doxorubicin dose of 100 to 120 mg/m2. This prolongation preceded a significant decrease in ejection fraction. Other Doppler indexes of filling were impaired after doxorubicin therapy but occurred simultaneously with the decrease in ejection fraction. A greater than 37% increase in isovolumetric relaxation time was 78% (7 of 9) sensitive and 88% (15 of 17) specific for predicting the ultimate development of doxorubicin-induced systolic dysfunction. In 15 patients studied 1 h after the first treatment, doxorubicin enhanced Doppler indexes of filling and shortened isovolumetric relaxation time. In 22 patients, indexes of filling remained impaired and isovolumetric relaxation time was prolonged 3 months after the last doxorubicin dose. In conclusion, doxorubicin-induced systolic dysfunction is reliably predicted by prolongation of Doppler-derived isovolumetric relaxation time. Early after administration, doxorubicin enhances filling and isovolumetric relaxation time. The adverse effects of doxorubicin on both variables persist at least 3 months after cessation of treatment.

Adult

[Estimate of lung capillary pressure and identification of the "pseudonormal" transmitral flow pattern in patients with severe systolic dysfunction of the left ventricle].

OBJECTIVES: Aim of this study was to investigate whether Doppler-derived transmitral flow velocity variables would allow a reliable estimate of pulmonary capillary wedge pressure in patients with left ventricular systolic dysfunction and normal mitral flow velocity pattern, and would then predict the presence of a "pseudonormal" transmitral flow velocity profile. BACKGROUND: Abnormal relaxation and increased chamber stiffness have opposing effects on the left ventricular filling pattern. When both abnormalities are present at the same time, as often occurs in patients with systolic dysfunction, the mitral pattern may appear to be normal: in this case the ability of Doppler recording to assess diastolic function and predict left ventricular filling pressure may be significantly compromised. METHOD: Pulmonary capillary wedge pressure (PWP) and Doppler transmitral flow velocity profile were simultaneously recorded in 70 postinfarction patients with ejection fraction < or = 35% and mitral flow velocity pattern apparently normal (E/A ratio between 1 and 2). Doppler traces were analyzed using a microcomputer-based digitizing system, and the following variables were measured: peak flow velocity in early diastole (E) and during atrial contraction (A), peak E/A wave velocity ratio and the deceleration time (Dec T) of early diastolic flow. RESULTS: Mean E/A ratio was 1.3 +/- 0.2 and mean PWP was 17 +/- 7 mm Hg. Forty-two patients had a PWP < 20 mm Hg and the remaining 28 patients (40%) had PWP > or = 20 mm Hg. Peak E, peak A and E/A ratio were similar in the two groups, whereas Dec T was significantly (p < 0.001) lower in patients with > or = 20 mm Hg PWP (93 +/- 15 vs 146 +/- 19 msec). A very weak correlation was found between PWP and both E and A velocity (r = 0.14 and r = 0.09, respectively). Furthermore, no correlation was found between E/A ratio and PWP (r = 0.08). Conversely, a very close negative correlation was observed between Dec T of early filling and PWP (r = -0.96). Sensitivity and specificity of < or = 120 ms in Dec T in predicting > or = 20 mm Hg in PWP were 100% and 99%, respectively. CONCLUSIONS: These data point out the relevant role of Doppler-derived deceleration time of early diastole in predicting left ventricular filling pressure. In patients with left ventricular systolic dysfunction an apparently normal diastolic filling pattern is often associated with elevated PWP. Through the estimate of increased PWP, early deceleration time seems to provide an important means of differentiating a real normal from a pseudonormal or masked abnormal filling pattern caused by increased left ventricular filling pressure.

Adult

Progression of systolic dysfunction correlated with the ultrasonographically assessed myocardial tissue damage in patients with dilated cardiomyopathy.

An echocardiographic follow-up study was performed in 59 patients with dilated cardiomyopathy to characterize the relationship between left ventricular systolic dysfunction and the myocardial tissue character assessed by echocardiographic myocardial gray level distributions. All the selected patients were divided into two groups; those with (group A) and those without (group B) progressive systolic dysfunction. In group A, the ejection fraction decreased from 47 +/- 5 to 23 +/- 4% (p < 0.05) during the follow-up period. The histogram of the myocardial gray level distribution became wider, less peaked and more right-sided in those patients. The relative echo intensity of the myocardium increased from 1.29 +/- 0.19 to 1.60 +/- 0.18 (p < 0.01). In group B, however, neither the shape of the gray level distribution nor ejection fraction changed during the same follow-up period. The relative echo intensity did also not change. Our present results suggested that some of the patients with dilated cardiomyopathy showed progressive systolic dysfunction with extensive myocardial tissue damage.

Adult

Effectiveness of preload reserve as a determinant of clinical status in patients with left ventricular systolic dysfunction. The SOLVD Investigators.

The hemodynamic determinants of clinical status in patients with left ventricular (LV) systolic dysfunction have not been established. In the present study, preload reserve--LV distension during exercise--was related to clinical status, and the effect of acute angiotensin-converting enzyme inhibition was examined in 97 patients with ejection fraction less than or equal to 0.35 enrolled in the trial, Studies of Left Ventricular Dysfunction (SOLVD). Sixty-one asymptomatic patients (group I) were compared with 36 patients with symptomatic heart failure (group II). Radionuclide LV volumes were measured at rest and during maximal cycle exercise. Group II patients had higher resting heart rates, end-diastolic and end-systolic volumes, and lower ejection fractions (all p less than 0.005). During exercise, only patients in group I had increased stroke volume (from 35 +/- 8 to 39 +/- 11 ml/m2 [mean +/- SD; p less than 0.0005]) due to an increase in end-diastolic volume (from 119 +/- 29 to 126 +/- 29 ml/m2 [p less than 0.0005]), contributing to a greater increase in LV minute output (p less than 0.0001, group I vs group II). After administration of intravenous enalapril (1.25 mg), LV end-diastolic volume response to exercise was augmented in group II (rest, 140 +/- 42; exercise, 148 +/- 43 ml/m2; p less than 0.0005) and LV output response increased slightly (p less than 0.05). Thus, in patients with asymptomatic systolic dysfunction, recruitment of preload during exercise is responsible for maintaining a stroke volume contribution to the cardiac output response.(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Pressure

Prognostic implications of subclinical left ventricular dilatation and systolic dysfunction in men free of overt cardiovascular disease (the Framingham Heart Study).

To determine the prognostic significance of asymptomatic left ventricular (LV) dilatation and LV systolic dysfunction, 1,493 men who were free of symptomatic cardiovascular disease underwent M-mode echocardiography and were then followed for a mean of 4.15 years. At baseline examination, 170 men (11.4%) had an abnormally high end-diastolic LV internal dimension (> or = 56 mm) and 76 (5.1%) had an abnormally low fractional shortening (< or = 30%). During the follow-up period, 68 men experienced 92 cardiovascular disease events. After adjusting for age and traditional cardiovascular disease risk factors in proportional-hazards analyses, fractional shortening was a significant independent predictor of cardiovascular risk (relative risk [RR] = 1.42, 95% confidence interval [CI] 1.12 to 1.81, for decrease of fractional shortening by 4%). Increased risk was also associated with combinations of low fractional shortening and high end-diastolic internal dimension (RR = 3.77, 95% CI 1.59 to 8.93) and with low percent fractional shortening with LV hypertrophy (RR = 5.93, 95% CI 1.97 to 17.85). In conclusion, subclinical LV dilatation and LV systolic dysfunction, although uncommon in men free of overt cardiovascular disease, are associated with increased risk for new cardiovascular disease events.

Adult

Effect of NKH477, a new water-soluble forskolin derivative, on arterial-ventricular coupling and mechanical energy transduction in patients with left ventricular systolic dysfunction: comparison with dobutamine.

We examined the effects of a novel water-soluble forskolin derivative, NKH477 (0.5 microgram/kg/min), on arterial-ventricular (A-V) coupling and mechanical energy transduction from heart to circulatory bed in comparison with those of dobutamine (3 micrograms/kg/min) in 8 patients with left ventricular (LV) systolic dysfunction using a conductance catheter method. A-V coupling was assessed as the ratio of the effective arterial elastance (E(a)) to the slope of the end-systolic pressure-volume relation (ESPVR) (E(max), left ventricular contractility index), and the ratio of mechanical energy transduction was obtained as the fraction of PV area (PVA) comprised of stroke work (SW). E(max) (2.59 mm Hg/ml/m2), E(a)/E(max) (1.62), and SW/PVA (0.58) were impaired in control contractile state. NKH477 increased Emax to the same extent as dobutamine. E(a) decreased with NKH477 but not with dobutamine. As a consequence, the decrease in E(a)/E(max) with NKH477 was greater than that with dobutamine (52 vs. 47%, p < 0.05); the increase in SW/PVA with NKH477 was also greater than that with dobutamine (28 vs. 21%, p < 0.05). These findings suggest that NKH477 may be a superior alternative to dobutamine in A-V coupling and mechanical energy transduction in patients with LV systolic dysfunction.

Adult

Mechanisms for left ventricular systolic dysfunction in aortic regurgitation: importance for predicting the functional response to aortic valve replacement.

To test the hypothesis that the combined use of the time-varying elastance concept and conventional circumferential stress-shortening relations would elucidate differential mechanisms for left ventricular systolic dysfunction in severe, chronic aortic regurgitation and therefore predict the functional responses to aortic valve replacement, 31 control patients and 37 patients with aortic regurgitation were studied. The studies included micromanometer left ventricular pressure determinations, biplane contrast cineangiograms under control conditions and radionuclide angiograms under control conditions and during methoxamine or nitroprusside infusions with right atrial pacing. The patients with aortic regurgitation were classified into three groups: Group I had normal Emax and stress-shortening relations, Group II had abnormal Emax but normal stress-shortening relations and Group III had abnormal Emax and stress-shortening relations. The left ventricular end-diastolic and end-systolic volumes showed a progressive increase and the ejection fraction showed a progressive decrease from Group I to III; these values differed from those in the control patients (p less than 0.001). In Group I, there was a decrease in left ventricular volumes (p less than 0.05) but no significant change in ejection fraction (61 +/- 7% versus 63 +/- 4%) after aortic valve replacement. In contrast, in Group II, reduction in left ventricular volumes (p less than 0.01) was associated with an increase in ejection fraction from 50 +/- 8% to 64 +/- 11% (p less than 0.01). Finally, in Group III, reduction in left ventricular volumes (p less than 0.05) was associated with a further decrement in ejection fraction from 35 +/- 13% to 30 +/- 13%. Group I patients had compensated adequately for chronic volume overload. However, Group II had left ventricular dysfunction that was associated with an increase in the left ventricular volume/mass ratio compared with that in the control patients and Group I (p less than 0.05 for both), suggesting inadequate hypertrophy and assumption of spherical geometry. Finally, irreversible myocardial dysfunction had supervened in Group III. In conclusion, a combined analysis of left ventricular chamber performance using the time-varying elastance concept and myocardial performance using conventional circumferential stress-shortening relations provides complementary information that elucidates differential mechanisms for left ventricular systolic dysfunction and therefore predicts the functional response to aortic valve replacement.

Aortic Valve

Blockade of adenosine receptors during ischaemia increases systolic dysfunction but does not affect diastolic creep in stunned myocardium.

The impact of adenosine receptor blockade on left ventricular systolic function and diastolic creep in stunned myocardium was studied in 20 sodium pentobarbital anaesthetized cats. A control group (n = 10) was compared with a group (n = 10) where adenosine receptors were blocked by 8-phenyltheophylline (7.5 mg.kg-1 i.v.) prior to a 10 min occlusion of the left anterior descending coronary artery. Regional function was assessed by sonomicrometry of the left ventricular anterior wall. Tissue blood flow and haemodynamic measurements were obtained at pre-occlusion, during occlusion, and after 30 and 60 min of reperfusion. Tissue blood flow in the LAD region was low and homogeneous during coronary occlusion in both groups. Systolic function assessed by regional shortening and inotropic parameters was significantly more reduced in the 8-PT treated group (P < 0.05). Diastolic creep and compliance assessed by the end-diastolic pressure-length relationship did not differ between groups. Thus, endogenous adenosine protects against systolic dysfunction, but appears to have no impact on diastolic creep in stunned myocardium. Furthermore, our results show that the protective effect of endogenous adenosine is not caused by increased collateral blood flow into the ischaemic area during coronary artery occlusion or by increased blood flow in the reperfusion period.

Adenosine

Continuous ambulatory peritoneal dialysis for patients with severe left ventricular systolic dysfunction and end-stage renal disease.

To better define the survival and quality of life of patients with major left ventricular systolic dysfunction and end-stage renal disease treated by continuous ambulatory peritoneal dialysis (CAPD), we reviewed all cases who started CAPD between May 1984 and March 1993 who had an isotopic left ventricular ejection fraction (LVEF) < or = 35%. Seventeen patients (12 men and five women with a mean age of 51.6 +/- 14.9 years) met the inclusion criteria. Mean isotopic LVEF before initiation of CAPD was 24.8% +/- 8.2%. All patients were symptomatic from congestive heart failure. Thirteen patients were classified as New York Heart Association grade III or IV. Continuous ambulatory peritoneal dialysis was associated with a significant improvement of isotopic LVEF, of functional status, and of blood pressure control. In 10 patients with a second measurement on CAPD, LVEF increased from a mean value of 23.2% +/- 9.1% to a mean value of 30.3% +/- 8.1% (P < 0.01). This represents a 30% increase of LVEF. After 6 months on CAPD, 94% of patients were classified as New York Heart Association grade I or II. Actuarial survival rates were 94%, 80%, and 64% at 12, 18, and 24 months, respectively. The mean duration of CAPD was 24 +/- 17 months. These results suggest that current CAPD treatment is an elective modality of treatment in patients with concomitant heart and renal failure.

Adult

Left ventricular diastolic function in patients with left ventricular systolic dysfunction due to coronary artery disease and effect of nicardipine.

To assess the effect of nicardipine on left ventricular (LV) diastolic function independent of concurrent effects on loading conditions in patients with LV systolic dysfunction due to coronary artery disease, equihypotensive doses of intravenous nitroprusside and nicardipine were administered to 12 patients with congestive heart failure due to previous myocardial infarction (LV ejection fraction less than 0.40). LV micromanometer pressure and simultaneous radionuclide volume were obtained during a baseline period, during nitroprusside infusion, during a second baseline period and during nicardipine infusion. Mean systemic arterial pressure decreased an average of 21 mm Hg with nitroprusside and 19 mm Hg with nicardipine. A greater decrease in LV end-diastolic pressure was observed with nitroprusside (29 +/- 2 to 15 +/- 2 mm Hg, p less than 0.01) than with nicardipine (29 +/- 2 to 25 +/- 3 mm Hg, p less than 0.05). There was a decrease in the time constant of relaxation during nitroprusside but not during nicardipine infusion. There was enough overlap in LV volumes in the baseline and nitroprusside periods to compare diastolic pressure-volume relations over a common range of volumes in 4 patients, and enough overlap in the baseline and nicardipine periods in 11 patients. The relation was shifted downward in 3 of 4 patients taking nitroprusside and in 6 of 11 patients taking nicardipine. The relation between end-diastolic pressure and volume was not shifted with nicardipine.(ABSTRACT TRUNCATED AT 250 WORDS)

Atrial Function, Right

Degree of reversibility of left ventricular systolic dysfunction after aortic valve replacement for isolated aortic valve stenosis.

To determine whether a low preoperative left ventricular (LV) ejection fraction (EF) returns to normal late after aortic valve replacement for aortic stenosis, 42 patients with critical aortic stenosis (valve area 0.7 cm2 or less), LV systolic dysfunction (EF 0.45 or less), angiographically normal coronary arteries, and no other significant valvular disease were studied at 10 to 84 months (mean 41 +/- 21) postoperatively. All patients survived aortic valve replacement and were discharged clinically improved. There were 4 late deaths; these patients were older (79 +/- 6 vs 64 +/- 13 years, p = 0.007) and had lower preoperative mean valve gradients (51 +/- 6 vs 68 +/- 23 mm Hg, p = 0.003) than late survivors. Of 23 survivors who returned for follow-up radionuclide angiography and Doppler echocardiography, 21 were asymptomatic. EF returned to normal (0.50 or more) in 14 patients (group 1) and remained low in 9 patients (group 2). Doppler peak prosthetic valve gradient was 24 +/- 8 mm Hg in group 1 and 25 +/- 10 mm Hg in group 2 (difference not significant). Six of the 9 patients in group 2 underwent early postoperative radionuclide imaging, and LVEF was normal in 4 (0.65 +/- 0.14 early vs 0.41 +/- 0.06 late, p = 0.02). Of 77 preoperative and intraoperative variables analyzed, only paroxysmal nocturnal dyspnea (0 of 14 vs 4 of 9, p = 0.01) distinguished group 1 from group 2. Thus, LVEF does not always normalize after aortic valve replacement for AS, implying impaired myocardial contractility.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Detection of early systolic dysfunction in ischemia by sequential radionuclide imaging of ejection rates.

The effectiveness of sequential imaging of early regional left ventricular contraction in the detection of ischemic abnormalities was assessed in 47 patients (15 with previous infarction) with angiographically proven coronary artery disease, and 11 normal volunteers, undergoing first pass radionuclide angiography with a multielement gamma camera at rest and at peak exercise. Global left ventricular hemodynamic parameters, and functional images of regional ejection fraction and ejection rate were compared to 6 pairs of sequential rate images showing the decrease and the increase of regional left ventricular volume during a time-interval of 80-280 ms (at rest) and 50-175 ms (at stress) from end-diastole. Diagnostic accuracy of sequential images (67-91%) was higher than that of ejection rate image (71-72%), and of global hemodynamic parameters (33-60%), in the detection of coronary patients. Regional sensitivity of stress sequential increase and decrease image achieved 77% and 100%, respectively. During early systole sensitivity of stress sequential increase and decrease images approached 100% even at rest, subsequently decreasing because of normalizing contraction. Thus, the analysis of early systolic dysfunction provided by dynamic sequential functional images of ejection rates proved to be an effective diagnostic tool in the detection of myocardial ischemic dysfunction.

Adult

[Aortic stenosis with left ventricular systolic dysfunction: a severe disease but with good surgical prognosis].

From our series of 72 patients with severe valvular aortic stenosis, we identified 19 showing features of left ventricular systolic disfunction (ventriculographic ejection fraction less than 55% and/or fractional shortening less than 30% at M-mode echocardiography). In these patients, we found a significant inverse correlation between the fractional shortening and the systolic wall stress (r = 0.79, p less than 0.001). Clinically, 18 of the 19 patients were in NYHA class III (n = 11) or IV (n = 5), and two died before they could be operated upon. The remaining 17 had their aortic valve replaced (coronary artery bypass surgery was simultaneously performed in 2 patients). After a mean follow-up of 18 months, all patients are alive and show substantial symptomatic improvement (15 patients in class I and 2 patients in class II). Cardiothoracic index was reduced (61 +/- 5% preoperatively versus 52 +/- 5% postoperatively), and fractional shortening changed from 21 +/- 5% to 30 +/- 5%. The latter remains under normal limits in two thirds of the patients. Our results lend support to the idea that the systolic left ventricular dysfunction in aortic stenosis is due to the increased afterload, rather than to an intrinsic contractility defect. This explains the great functional improvement after the reduction of the systolic wall stress achieved by surgery.

Adult

The role of right ventricular systolic dysfunction and elevated intrapericardial pressure in the genesis of low output in experimental right ventricular infarction.

To elucidate the pathophysiology of severe right ventricular infarction (RVI), isolated RVI was produced in 15 dogs with the pericardium intact or open. After RVI in dogs with the pericardium intact, RV systolic pressure decreased by 27%, aortic pressure by 29% and cardiac output by 34%. RV transmural pressure, RV end-diastolic size and intrapericardial pressure increased, left ventricular transmural pressure and end-diastolic size decreased and the diastolic pressures equalized. Pericardiotomy after RVI resulted in increased ventricular transmural pressures and diastolic size, improved cardiac output and resolution of equalized diastolic pressures. RVI in dogs with the pericardium open resulted in similar changes, but of lesser magnitude and without equalization of diastolic pressures. These results indicate that reduced left ventricular preload due to impaired RV systolic function contributes to low cardiac output in RVI. Elevated intra-pericardial pressure further reduced left ventricular preload and produces equal diastolic pressures.

Animals

Residual exertional ischemia and unfavorable left ventricular remodeling in patients with systolic dysfunction after anterior myocardial infarction.

OBJECTIVES: This study investigated whether exercise-induced myocardial ischemia influences left ventricular remodeling after anterior myocardial infarction. BACKGROUND: The effects of acute and recurrent ischemia on ventricular function are well established. However, to our knowledge the role of exertional ischemia in the remodeling response after infarction has not been investigated. METHODS: Ninety-one patients with a first anterior Q wave myocardial infarction were studied at 5 weeks by rest echocardiography and exercise scintigraphy. The echocardiographic examination was repeated 6 months later. On the basis of the presence and extent of reversible perfusion defects on exercise scintigraphy, patients were assigned to groups with no exertional ischemia (group 1, n = 20 [22%], mild to moderate ischemia (group 2, n = 45 [49%]) and severe exertional ischemia (group 3, n = 26 [29%]). RESULTS: Initial left ventricular volumes were similar, and no differences were found among the three groups in the remodeling response over the 6-month period of the study. However, patients in groups 2 and 3 with an ejection fraction < or = 40% showed significant (p < 0.01) ventricular enlargement over time, which was similar between the two groups (end-diastolic volume [mean +/- SD] from 74 +/- 13 to 80 +/- 17 ml/m2 in group 2 and from 72 +/- 11 to 81 +/- 19 ml/m2 in group 3; regional dilation from 42 +/- 16% to 52 +/- 22% in group 2 and from 38 +/- 18% to 46 +/- 27% in group 3). In contrast, ventricular dimensions did not change in group 1 patients with an ejection fraction < or = 40% as well as in patients in all three groups with an ejection fraction > 40%. CONCLUSIONS: Exercise-induced myocardial ischemia may contribute to progressive ventricular enlargement in patients with poor left ventricular function after a large anterior myocardial infarction.

Analysis of Variance