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[Relationship between left and right ventricular function in experimental acute focal ischemia].

Experiments were conducted on rats to record the parameters characterizing the real and maximally accessible function of the left and right ventricles in acute focal ischemia of the myocardium of these parts 5, 20, 40, and 60 minutes after ligation of the corresponding coronary artery. It was established that disorders of synchronism in heart activity are greater in injury to the right than in those to the left ventricle.

Animals↗

Effects of levosimendan on right ventricular function in patients with advanced heart failure.

Right ventricular (RV) dysfunction frequently complicates advanced left ventricular heart failure and contributes to an unfavorable prognosis. Levosimendan is a novel inodilator that beneficially affects hemodynamics and left ventricular systolic and diastolic function in patients with advanced heart failure. However, its effects on RV function have not yet been properly assessed in these patients. In this randomized trial, the impact of levosimendan or placebo on various echocardiographic parameters of RV systolic and diastolic function was investigated in 54 patients with advanced heart failure due to left ventricular systolic dysfunction. Tissue Doppler imaging maximal systolic tricuspid annular velocity (S wave) increased significantly only in the levosimendan group (8.2 +/- 3.2 vs 9.0 +/- 3.0 cm/s, p <0.03). Tissue Doppler imaging RV early diastolic velocity (E wave) and the ratio of early to late diastolic velocities (E/A) also increased significantly after levosimendan administration (p <0.01 and p <0.05, respectively). Systolic pulmonary arterial pressure decreased significantly (54 +/- 11 vs 43 +/- 11 mm Hg, p <0.01) in the levosimendan-treated patients. Levosimendan beneficially modulated neurohormonal and inflammatory status by decreasing B-type natriuretic peptide levels (p <0.05) and by altering the ratio of interleukin-6 to interleukin-10 in favor of the latter (p <0.05). In conclusion, levosimendan could offer further therapeutic advantages in patients with advanced heart failure by improving systolic and diastolic RV function.

Blood Pressure↗

[Right ventricular function in ARDS and mechanical respiration].

The right ventricle is the stepchild of intensive care medicine. In diseases of the lung mainly when the relationship between ventilation and perfusion is disturbed, assisted respiration with positive end-expiratory pressure (PEEP) is essential to improve oxygenation. The serious damage to the lung parenchyma as seen in adult (acute) respiratory distress syndrome (ARDS) and pneumonia has considerable consequences for cardiac function. Whereas left ventricular function remains almost completely unaffected well into late stages of the disease, the right ventricle is subjected early to stress from the underlying disease and mechanical ventilation. The effects of therapeutic measures aimed at maintaining oxygenation and ventilation partially have negative consequences for right ventricular function and encourage the development of acute cor pulmonale. They can be the cause of right-sided heart failure.

Heart Failure↗

Right ventricular function in the donor heart.

OBJECTIVES: Early morbidity and mortality post cardiac transplantation is frequently caused by right ventricular failure; this is usually attributed to an elevated pulmonary vascular resistance in the recipient. Brain death in the donor is recognised as causing left ventricular dysfunction, but its effects on the right ventricle have not previously been studied. The aim of this study was to investigate right ventricular function following brain death, using a canine model. METHODS: The hearts of 33 dogs were instrumented with micromanometers, flow probes and dimension transducers to measure minor/major axes, and right and left ventricular free wall to septal distances. Left ventricular volume was calculated according to the prolate ellipsoid model and right ventricular volume was calculated according to the shell subtraction method. Systolic function for left and right ventricles was analysed by plotting ventricular stroke work vs. end-diastolic volume during a caval occlusion (preload-independent recruitable stroke work PRSW). Brain death was instigated by inflation of a subdurally placed intracranial balloon; subsequently blood pressure was maintained with intravenous fluid whilst no inotropic medications were given. Data were collected at baseline, and at 2 and 4 h thereafter. A two-tailed paired Student's t-test was applied to compare post-brain death data with baseline measurements. RESULTS: All animals had an initial hyperdynamic response post brain death ensued by the development of diabetes insipidus. Brain stem death was validated by neuropathological examination at the termination of the experiments. Right and left ventricular systolic function had deteriorated significantly 2 h post brain death by 34.4% (+/- 5.1%, P < 0.001) and 20.4% (+/- 3.4%, P < 0.001), respectively, from baseline PRSW [RV = 23.6 erg.10(3) (+/- 1.5), LV = 76.2 erg.10(3) (+/- 3.5)]. This deterioration remained at 4 h post brain death (29.4% (+/- 4.9%, P < 0.001) and 21.2% (+/- 4.3%, P < 0.001), respectively). (The results are expressed as mean and S.E.M.). CONCLUSIONS: Brain death causes a significant decrease in left and right ventricular function. The injury to the right ventricle is more prominent than the left ventricle, and at 2 h post brain death it is significantly greater. Failure of the right ventricle post transplantation in clinical practice may be related to this brain death induced injury. Further studies are required to investigate the mechanisms of this injury.

Animals↗

Right ventricular function at rest and during submaximal exercise assessed by 81Krm equilibrium ventriculography in normal subjects.

81Krm equilibrium ventriculography was used to study right ventricular function in 37 healthy male volunteers. 'Anatomical' lung subtraction using 99Tcm lung perfusion scintigraphy was compared with conventional background correction in the calculation of resting right ventricular ejection fraction (RVEF). Resting RVEF was significantly greater following 'anatomical' lung subtraction than that using background correction (0.59 +/- 0.06 versus 0.55 +/- 0.05). The exercise response of the normal right ventricle was defined in 23 subjects during exercise. Right ventricular ejection fraction showed a progressive increase during graded submaximal exercise (0.55 +/- 0.05 at rest, 0.60 +/- 0.05 at 50 W and 0.66 +/- 0.05 at 100 W). Right heart 81Krm equilibrium ventriculography is well suited to the evaluation of right ventricular function at rest and during exercise. The absolute value of RVEF will however be dependent upon the method of image analysis.

Adult↗

Improved right ventricular function and reduced pulmonary vascular resistance during prazosin therapy of congestive heart failure.

Although the effect of systemic vasodilator therapy on left ventricular function in congestive heart failure has been extensively evaluated, little is known about its effect on pulmonary vascular resistance and right ventricular function. Since pulmonary vascular resistance is mediated in part by alpha-adrenergic receptors, we studied the effects of the alpha-adrenergic antagonist prazosin on right ventricular function as determined by a radionuclide ventriculographic technique which assessed right and left ventricular ejection fractions simultaneously. In 11 patients treated for two months with prazosin, right ventricular ejection fraction increased from 0.28 +/- 0.04 to 0.44 +/- 0.07 (p less than 0.01). In 10 patients who received a single dose of prazosin 48 hours after withdrawal of prior prazosin therapy, right ventricular ejection fraction increased from 0.29 to 0.05 to 0.38 +/- 0.06 (p less than 0.02). In nine patients who received a single dose of prazosin during right sided heart catheterization, pulmonary vascular resistance decreased from 358 +/- 70 to 236 +/- 60 dyne-sec-cm -5 (p less than 0.01). These studies suggest that prazosin has beneficial effects on right ventricular function both immediately and long-term in patients with severe congestive heart failure. Although the mechanism of this effect is not known, possibilities include a direct effect of prazosin on the pulmonary vasculature, a secondary reduction in right ventricular afterload due to improved left ventricular performance and a withdrawal of reflex-mediated pulmonary vasoconstriction due to improved left ventricular performance.

Adrenergic alpha-Antagonists↗

Two-dimensional echocardiographic assessment of right ventricular function as a predictor of outcome in hypoplastic left heart syndrome.

This study was undertaken to assess the importance of right ventricular function at the time of initial presentation on early and intermediate outcome in patients with hypoplastic left heart syndrome (HLHS). Several studies have attempted to define physiologic risk factors for poor early outcome following the Norwood palliation for HLHS. No clinical or hemodynamic factors including right ventricular function have been found to reliably predict Norwood I operative survival. The relation between initial ventricular function and later survival has not been investigated. To assess the importance of right ventricular (RV) function at the time of initial presentation on outcome in patients with HLHS, systolic function was determined by qualitative and quantitative methods in 60 consecutive patients before surgical intervention. The effects on stage I operative survival, survival to stage II, and overall survival were analyzed. Initial RV function did not impact on stage I survival. However, analysis of later outcome of the stage I survivors showed that those with prestage I RV dysfunction had significantly greater mortality before stage II. Actuarial survival 18 months after Norwood surgery was 93% for patients with initially normal RV function compared with 47% for those with abnormal function (p = <0.005). The relative risk for later mortality was approximately 11 times greater for patients with initial RV dysfunction. Thus, RV dysfunction identifiable soon after initial presentation does not impact on early survival after Norwood I operation for HLHS. Intermediate and overall survival, however, is significantly decreased in patients with initially diminished RV function.

Cardiac Surgical Procedures↗

Right ventricular function in COPD patients during weaning from mechanical ventilation.

We studied the right ventricular function during a successful weaning period in 7 COPD patients without LV disease who had been mechanically ventilated for several days after an acute exacerbation of their disease. A Swan-Ganz ejection fraction thermodilution catheter performed measurements of right ventricular ejection fraction (RVEF) and right ventricular end-diastolic volume index (RVEDVI) before and fifteen minutes after disconnection from the ventilator at the maintenance FiO2. Although pulmonary artery pressure (PAP) rose from 25 +/- 4 to 28.5 +/- 4.5 mmHg after disconnection from the ventilator, RVEF (0.36 +/- 0.56 to 0.35 +/- 0.12) and RVEDVI (117 +/- 51 to 126 +/- 52 ml/m2) remained similar in both conditions. We concluded that right ventricular systolic function assessed with modified pulmonary artery catheter was maintained during the weaning phase in such weanable patients. This method could easily detect any fall of RVEF or diastolic RV enlargement able to impair the weaning in some patients.

Heart↗

[Characteristics of cardiac hemodynamics and right ventricular function in patients with various types of cardiomyopathy and ischemic heart disease].

The study was undertaken to examine morphofunctional parameters of the right ventricle in relation to cardiohemodynamics of the left heart in 96 patients with hypertrophic and congestive cardiomyopathies, including those with coronary heart disease. Both in congestive and hypertrophic cardiomyopathies, the magnitude and nature of changes in right ventricular function follow left ventricular lesion. In cardiomyopathy unlike coronary heart disease, right ventricular function tends to decrease and shows markedly altered links with the left heart.

Cardiomyopathy, Dilated↗

[Right ventricular function evaluated by thermodilution method in patients with chronic pulmonary diseases].

The right ventricular ejection fraction (RVEF) is an objective evaluation of the right ventricular systolic function. Recently a rapid-response thermister pulmonary artery catheter which measures RVEF and stroke volume (SV) was introduced. With this new method, RVEF and the right ventricular volumes (RVV) were measured in patients with chronic pulmonary diseases (CPD) and normal subjects. In addition, to evaluate the validity of this method, the data was compared with Kr81m perfusion method. The RVEF and the RVV of CPD patients were also compared with pulmonary hemodynamic data. There was a good correlation between the RVEFs obtained by the Kr81m perfusion method and the TD method. (r = 0.71, p less than 0.001). There was a tendency towards a low RVEF in patient with CPD with pulmonary hypertension (PAm greater than 20 mmHg) or high pulmonary vascular resistance (PAR greater than 160 dyne/sec/cm-5) and the RVV increased in the same group. These results suggested that the right ventricle was unable to respond to the increase of afterload in the CPD group and the evaluation of RVEF and RVV in patients with CPD using the new TD method was valuable for assessing the right ventricular function.

Adult↗

Effects of positive end-expiratory pressure on right ventricular function in COPD patients during acute ventilatory failure.

OBJECTIVE: To examine the effects of external positive end-expiratory pressure (PEEP) on right ventricular function in chronic obstructive pulmonary disease (COPD) patients with intrinsic PEEP (PEEPi). DESIGN: Prospective study. SETTING: General intensive care unit in a university teaching hospital. PATIENTS: Seven mechanically ventilated flow-limited COPD patients (PEEPi = 9.7 +/- 1.3 cmH2O, mean +/- SD) with acute respiratory failure. INTERVENTION: Hemodynamic and respiratory mechanic data were collected at four different levels of PEEP (0-5-10-15 cmH2O). MEASUREMENTS AND RESULTS: Hemodynamic parameters were obtained by a Swan-Ganz catheter with a fast response thermistor. Cardiac index (CI) and end-expiratory lung volume (EELV) reductions started simultaneously when the applied PEEP was approximately 90% of PEEPi measured on 0 cmH2O (ZEEP). Changes in transmural intrathoracic pressure (PEEPi,cw) started only at a PEEP value much higher (120%) than PEEPi. The reduction in CI was related to a decrease in the right end-diastolic ventricular volume index (RVEDVI) (r = 0.61; p < 0.001). No correlation between CI and transmural right atrial pressure was observed. The RVEDVI was inversely correlated with PEEP-induced changes in EELV (r = -55; p < 0.001), but no with PEEPi,cw (r = -0.08; NS). The relationship between RVEDVI and right ventricular stroke work index, considered an index of contractility, was significant in three patients, i.e., PEEP did not change contractility. In the other patients, an increase in contractility seemed to occur. CONCLUSIONS: In COPD patients an external PEEP exceeding 90% of PEEPi causes lung hyperinflation and reduces the CI due to a preload effect. The reduction in RVEDVI seems related to changes in EELV, rather than to changes in transmural pressures, suggesting a lung/heart volume interaction in the cardiac fossa. Thus, in COPD patients, application of an external PEEP level lower than PEEPi may affect right ventricular function.

Acute Disease↗

Valvular pulmonary stenosis. Natural history and right ventricular function in infants and children.

The purpose of this study was the analysis of natural history and right ventricular function of infants and children with valvular pulmonary stenosis. Available for assessment were the pressures in the right ventricle and pulmonary artery in 5 infants and 13 children obtained at two cardiac catheterizations, performed at intervals of 2 to 12 years (mean: 6.5 years) apart, as well as quantitative angiocardiographic data in another group of 38 children. There was no change in the pressure gradient between the right ventricle and pulmonary artery (PG) between the two catheterizations for those with an initial PG of less than 50 mmHg; but a mean increase of 8.6 mmHg year-1 occurred in those with an initial PG of more than 50 mmHg. There were good correlations between increase of PG and the first (r = 0.704) and the second (r = 0.904) catheterizations. End diastolic and stroke volume were normal while end-systolic volume was smaller (P less than 0.01) and ejection fraction greater (P less than 0.01) than normal. The natural history of children with a PG of more than 50 mmHg seems to be different from that with a PG of less than 50 mmHg. In the former group the increase of PG is rapid while PG in the latter does not change over many years. Right ventricular function is usually not impaired in patients with moderate and severe valvular pulmonary stenosis in the pediatric age group.

Angiocardiography↗

Use of transesophageal echocardiography for postoperative evaluation of right ventricular function.

BACKGROUND: No method has been available to assess the right ventricular (RV) pressure-volume relation in the operating room or intensive care unit. Left ventricular cross-sectional area measured by echocardiography using the technology of automated border detection has been used to construct left ventricular pressure-area (P-A) loops. In the human right ventricle, however, this approach has not been validated. METHODS: We recorded RV P-A loops in 14 patients in the intensive care unit using transesophageal echocardiography. Multiple RV P-A loops were obtained by reducing preload with intravenous nitroglycerin, thereby elucidating the end-systolic P-A relation. RESULTS: With an incremental dose of dobutamine, the slope of the RV end-systolic P-A relation increased (from 4.56+/-2.42 to 7.34+/-3.62 mm Hg/cm2, p<0.01), with no change in the x-axis intercept, which implied increased contractility. Furthermore, in the operating room we validated the use of RV cross-sectional area as a surrogate for RV volume by demonstrating the close correlation between the stroke area (maximal RV area minus minimal RV area) and stroke volume (r = 0.962; p<0.0001). CONCLUSIONS: Transesophageal echocardiography with automated border detection is a promising tool for elucidating RV function through the analysis of RV P-A loops.

Adult↗

Right ventricular function during revision total hip arthroplasty.

Total hip arthroplasty (THA) is associated with pulmonary embolization of cement-bone marrow debris leading to cardiopulmonary complications including cardiac arrest. These complications are more prevalent during revision THA. This report assessed right ventricular function using a right ventricular ejection fraction pulmonary artery catheter (RVEF) and transesophageal echocardiography (TEE) in 18 patients undergoing revision THA. During femoral prosthesis insertion, all patients exhibited hemodynamic changes, but most of these were small and clinically insignificant. Four patients demonstrated a decrease in RVEF > or = 10% and an increase in mean pulmonary artery pressure > or = 10 mm Hg, requiring physician intervention. Two of these patients exhibited signs of pulmonary embolization postoperatively. All patients studied by TEE had detectable intracardiac emboli during femoral arthroplasty. The acute decreases in RVEF and increases in mean pulmonary artery pressures during hip arthroplasty, suggest a role for the embolization of bone marrow debris in the development of the "bone cement implantation syndrome."

Adult↗

Evaluation of right ventricular function by assessment of cardiac efficiency: influence of induction of anaesthesia in coronary artery bypass grafting patients.

Considering the heart as a physical pump cardiac efficiency is calculated from the ratio of cardiac work performed to the maximum level of energy of the heart. The aim of the study was to compare cardiac efficiency with cardiac output and right ventricular ejection fraction. Nine patients scheduled for coronary artery bypass grafting were investigated. A femoral arterial and a right ventricular ejection fraction pulmonary artery catheter were placed in the awake state. Anaesthesia was induced with eltanolone and fentanyl. Cardiac output, pulmonary artery and central venous pressures, and right ventricular ejection fraction were measured in the awake state (baseline), 2 min after induction of anaesthesia and 1 and 5 min after intubation. Cardiac efficiency was calculated by dividing the stroke work by the maximum energy of the heart as calculated from the pressure volume diagram. An analysis of variance was carried out for cardiac efficiency, cardiac output and right ventricular ejection fraction. Cardiac efficiency was significantly (p < 0.05) reduced 1 min after intubation from 28 +/- 11 to 14 +/- 5%. In contrast the right ventricular ejection fraction (from 48 +/- 10 to 35 +/- 13%) and cardiac output (from 6.5 +/- 1.5 to 5.3 +/- 1.2 L/min) did not change significantly during the induction of anaesthesia. Cardiac efficiency was found to be a more sensitive parameter to describe changes in the right ventricular function than the ejection fraction and cardiac output during induction of anaesthesia with eltanolone and fentanyl which was used as a model to vary cardiac performance and afterload.

Aged↗

Transcatheter closure of atrial septal defect preserves right ventricular function.

OBJECTIVES: To determine the effects of atrial septal defects (ASD) and their closure on systolic and diastolic right and left ventricular function; and by comparing surgical closure with transcatheter device closure, to establish differences attributable to cardiopulmonary bypass. DESIGN: Cross sectionally guided M mode echocardiographic ventricular long axis function was measured prospectively before and within one week after ASD closure by device in 17 patients and by surgery in 12 patients, and compared with 18 normal subjects. RESULTS: All indices of right ventricular function were impaired after surgery: mean total excursion, -1.89 cm (95% confidence interval (CI), -2.18 to -1.59); peak shortening rate, -9.09 cm/s (-10.82 to -7.35); peak lengthening rate, -9.26 cm/s (-11.09 to -7.43). Total excursion and peak lengthening rate were preserved after device closure, at -0.12 cm (-0.28 to 0.05) and 0.01 cm/s (-2.29 to 2.31), respectively. Left ventricular free wall function was unchanged after closure by either method, while all septal measurements were reduced after closure by either method (changes ranging from -3.51 to -0.32; 95% CI ranging from -4.90 to -0.13). CONCLUSIONS: Left ventricular free wall function is unaffected by ASD closure, whereas septal function is impaired, irrespective of the method of closure. Right ventricular function, both systolic and diastolic, is impaired by cardiopulmonary bypass but preserved after device closure. These findings support the transcatheter approach to ASD closure in anatomically suitable defects.

Balloon Occlusion↗

Right ventricular function in adults with repaired tetralogy of Fallot assessed with cardiovascular magnetic resonance imaging: detrimental role of right ventricular outflow aneurysms or akinesia and adverse right-to-left ventricular interaction.

OBJECTIVES: We examined the relationship among biventricular hemodynamics, pulmonary regurgitant fraction (PRF), right ventricular outflow tract (RVOT) aneurysm or akinesia, and baseline and surgical characteristics in adults with repaired tetralogy of Fallot (rTOF). BACKGROUND: The precise relationship of pulmonary regurgitation with biventricular hemodynamics has been hampered by limitations of right ventricular (RV) imaging. METHODS: We assessed 85 consecutive adults with rTOF and 26 matched healthy controls using cardiovascular magnetic resonance imaging. RESULTS: Patients had higher right ventricular end-diastolic volume index (RVEDVi) (p < 0.001), right ventricular end-systolic volume index (RVESVi) (p < 0.001), right ventricular mass index (RVMi) (p < 0.001), and lower right ventricular ejection fraction (RVEF) (p < 0.001) and left ventricular ejection fraction (LVEF) (p = 0.002) compared to controls. The PRF (range 0% to 55%) independently predicted RVEDVi (p < 0.01) and the latter predicted RVESVi (p < 0.01) and RVMi (p < 0.01). The RVOT aneurysm/akinesia was present in 48/85 (56.9%) of patients and predicted RV volumes (RVEDVi, p = 0.01, and RVESVi, p = 0.03). There was a negative effect of RVOT aneurysm/akinesia and RVMi on RVEF (p < 0.01 and p = 0.02, respectively). There was only a tendency among patients with transannular or RVOT patching toward RVOT aneurysm/akinesia (p = 0.09). The LVEF correlated with RVEF (r = 0.67, p < 0.001). CONCLUSIONS: Pulmonary regurgitation and RVOT aneurysm/akinesia were independently associated with RV dilation and the latter with RV hypertrophy late after rTOF. The RVOT aneurysm/akinesia was common but related only in part to RVOT or transannular patching. Both RV hypertrophy and RVOT aneurysm/akinesia were associated with lower RVEF. Left ventricular systolic dysfunction correlated with RV dysfunction, suggesting an unfavorable ventricular-ventricular interaction. Measures to maintain or restore pulmonary valve function and avoid RVOT aneurysm/akinesia are mandatory for preserving biventricular function late after rTOF.

Adolescent↗

Measurement of tricuspid annular diastolic velocities by Doppler tissue imaging to assess right ventricular function in patients with congenital heart disease.

We assessed the clinical utility of using diastolic tricuspid annular velocities obtained by Doppler tissue imaging as a noninvasive index of right ventricular function in patients with congenital heart disease. Doppler tissue imaging at the tricuspid annulus and pulsed Doppler echocardiography of the right ventricular inflow were performed in 71 children with congenital heart disease, with and without elevated right ventricular pressure. Cardiac catheterization was performed in all patients with congenital heart disease, and the hemodynamic determinants of the tricuspid annular and inflow velocities were determined. In patients with congenital heart disease, the ratio of the late-to-early diastolic tricuspid annular velocity (Aa/Ea) showed a highly significant correlation with right ventricle pressure/left ventricle pressure (r = 0.79, p < 0.0001), right ventricular end diastolic pressure (r = 0.46, p < 0.0001), and the first derivatives of the change in right ventricle pressure during diastole (r = 0.72, p < 0.0001). However, the late-to-early diastolic tricuspid inflow velocity (A/E) did not correlate with any invasively measured index of right ventricular function. Aa/Ea, derived from tricuspid annular velocities as measured by Doppler tissue imaging, is a valuable, noninvasive tool for detecting an elevated right ventricular pressure in patients with congenital heart disease.

Blood Flow Velocity↗