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[Special anesthesia care in heart transplantation. The management of right ventricular failure].

Right ventricular dysfunction is a common clinical event after heart transplantation. The major cause is the failure of right ventricle (RV) to adapt to the pulmonary hypertension (PH) secondary to chronic heart failure. Nevertheless, this dysfunction is usually transient owing to the reversibility of PH, the nature of which is mainly passive. Therefore, it is particularly important to perform a preoperative hemodynamic study to identify those cases in which PH is a permanent component, a situation that excessively increases the risk of postoperative RV failure. Once this occurs, the treatment is complex. The available therapeutic measures include the use of vasodilators such as prostaglandin E1 and nitric oxide.

Anesthesia↗

Transposition of the great arteries: long-term outcome and current management.

There is a large group of young adults who survived atrial baffle repair of transposition of the great arteries. Most survivors are asymptomatic, although nearly all have decreased exercise capacity. Loss of sinus rhythm and atrial arrhythmias are common and increase with age. There is concern about the ability of the right ventricle to function long term as a systemic pump, and recent publications have highlighted right ventricular dysfunction in this patient population. Sudden death and congestive heart failure are the main causes of death, and outcomes beyond 30 years are unknown. Pulmonary artery banding, late arterial switch, and cardiac transplantation are employed when intractable arrhythmias or right ventricular failure threaten survival or quality of life.

Adult↗

De Vega's tricuspid annuloplasty for Ebstein's anomaly.

A case of Ebstein's anomaly as demonstrated by echocardiography and electrophysiological studies is discussed. In view of deterioration in tricuspid regurgitation and right ventricular dysfunction, successful surgical repair employing De Vega's tricuspid annuloplasty along with plication of the atrialised portion of the right ventricle is described. Intraoperative transesophageal echocardiography following the procedure revealed satisfactory repair and a significant decrease in tricuspid regurgitation. This simple technique appears to be effective in patients having anterior leaflet sufficiently large area and motion. Adequate long-term follow-up in a large series of patients is essential to confirm that it is also beneficial and durable.

Adolescent↗

Global and regional right ventricular function after acute myocardial infarction: dependence upon site of left ventricular infarction.

The relation of global and regional right and left ventricular function during the acute phase after a first myocardial infarction was assessed by first pass radionuclide angiography in 20 patients (10 after anterior and 10 after inferior myocardial infarction). The right ventricular ejection fraction did not differ significantly between the groups, but left ventricular ejection fraction was significantly depressed after anterior myocardial infarction. There was evidence of right ventricular dilatation and impaired transit in the group with inferior infarction. Five patients with anterior infarction and six with inferior infarction had abnormal right ventricular ejection fractions. Right ventricular wall motion abnormalities affected the septal wall in the group with anterior infarction and the free wall in the group with inferior infarction. The relation between right and left ventricular ejection fractions was markedly different in the two groups. In the group with anterior infarction there was a significant linear relation between right and left ventricular ejection fraction, whereas in the group with inferior infarction there was not. Thus right ventricular dysfunction commonly occurs after both anterior and inferior myocardial infarction. Right and left ventricular impairment are related after anterior myocardial infarction, but are independent after inferior myocardial infarction. Finally, the different effects of anterior and inferior myocardial infarction on right ventricular function may be explained by differences in septal and free wall involvement.

Adult↗

Pulmonary and cardiac function in advanced fibrodysplasia ossificans progressiva.

Fibrodysplasia ossificans progressiva is a rare genetic disease characterized by heterotopic ossification in soft tissues. Severe disability results from progressive immobilization of the limbs, jaw, and chest wall. To determine whether cardiac function is altered in this disease, 25 patients ranging in age from 5 to 55 years (disease duration 1-51 years) were studied. History, physical examination, pulmonary functions, electrocardiography, and echocardiography were performed on each patient. Physical examination of the lungs and heart was unrevealing; no right sided ventricular gallops were heard, and no patient was found to have neck vein distention or peripheral edema. The patients had extremely limited chest expansion (1.9 +/- 0.8 inches), suggesting dependence on diaphragmatic breathing. Lung volumes were severely reduced (mean forced vital capacity 44% +/- 14% of predicted), but flow rates were relatively normal. All patients had normal capillary oxygen saturation. Echocardiography was technically difficult, but no abnormalities of left or right ventricular function were seen. Ten (40%) patients had electrocardiographic evidence of right ventricular dysfunction. Compared with patients without such evidence, these patients were older, had significantly longer disease duration, higher hemoglobin, and more impaired pulmonary function. The results of this study suggest that the presence of severely restrictive chest wall disease is associated with a high incidence of right ventricular abnormalities on electrocardiogram. Whether cor pulmonale will eventually occur remains to be determined.

Adolescent↗

Changes in jugular venous flow velocity after coronary artery bypass grafting.

The factors underlying postoperative jugular venous flow velocity and pulse contour changes were studied in 25 patients undergoing coronary artery bypass grafting. Before operation, all patients had normal right-sided cardiac hemodynamics, normal jugular pulse contours and normal jugular venous flow velocity patterns, i.e., systolic flow (SF) velocity greater than diastolic flow (DF) velocity. After operation, jugular venous flow velocity was abnormal in 24 patients (SF = DF in 14 and SF less than DF in 10). Neither the right-sided cardiac pressures after the operation nor any of the perioperative factors examined had any bearing on these flow alterations. Postoperative right ventricular ejection fraction was normal in all 5 patients with SF greater than DF and SF = DF flow patterns (mean +/- standard error of the mean 48 +/- 3%). It was significantly depressed in all 6 patients with SF less than DF flow pattern (34 +/- 1%, 2p less than 0.001). These findings suggest that the right atrium behaves as a conduit rather than a capacitance chamber. However, the postoperative abnormal flow pattern of SF less than DF as opposed to SF = DF indicates the additional presence of right ventricular dysfunction. The implications of these observations for the clinical assessment of right ventricular function in the postoperative patients are discussed.

Adult↗

Effects of levosimendan on right ventricular function and ventriculovascular coupling in open chest pigs.

OBJECTIVE: Levosimendan is a promising calcium sensitizer that potentially could be useful in settings of pulmonary vasoconstriction and right ventricular dysfunction. There is a shortage of information concerning its effects on right ventricular function and ventriculovascular coupling. The aim of the present study was to characterize the effects of levosimendan on right ventricular and pulmonary vascular function by means of pressure-volume and pulsatile flow analysis. DESIGN: Prospective laboratory investigation. SETTING: University hospital laboratory. SUBJECTS: Eight landrace pigs (mean weight, 37 kg). INTERVENTIONS: Following instrumentation with biventricular conductance catheters, pulmonary and right coronary artery flow probes, a high-fidelity pulmonary pressure catheter, and a right coronary venous catheter, hemodynamic measurements were performed in baseline conditions and during levosimendan infusion at three increasing plasma concentrations (mean values, 27.5, 67.6, and 142.5 ng/mL). MEASUREMENTS AND MAIN RESULTS: Levosimendan increased heart rate and cardiac output, reduced systemic vascular resistance, and had a positive inotropic effect on the left ventricle and increased left ventricular mechanical efficiency. Moreover, levosimendan increased right ventricular contractility and hydraulic power. However, total pulmonary vascular resistance and characteristic impedance did not change throughout the protocol, and right ventricular mechanical efficiency decreased slightly at the highest concentration of levosimendan. CONCLUSIONS: At clinical concentrations in the present model, levosimendan increases right ventricular contractility and performance without significantly influencing pulmonary vascular tone. Further studies are required in a model of pulmonary vasoconstriction to disclose possible pulmonary vasodilator effects of levosimendan.

Animals↗

The acute effects of intravenous isosorbide dinitrate during cardiac surgery.

The acute effects of intravenous isosorbide dinitrate during open heart surgery were studied in 15 adult patients. Consistent and significant (p less than 0.001) reductions in pulmonary vascular resistance (25% before, 23% after, cardiopulmonary bypass) and mean pulmonary artery pressure (14% before, 13% after, cardiopulmonary bypass) were observed in the absence of significant changes in cardiac index, mean systemic arterial pressures or right or left atrial filling pressures. These findings indicate that after cardiopulmonary bypass, when right ventricular dysfunction with raised pulmonary vascular resistance may occur, selective reduction of right ventricular afterload with isosorbide dinitrate may prove beneficial.

Blood Pressure↗

Comparison of right ventricular functions by tissue Doppler imaging in patients with obstructive sleep apnea syndrome with or without hypertension.

OBJECTIVE: To evaluate the right ventricular function in patients with obstructive sleep apnea syndrome (OSAS) independent from systemic hypertension (HT) and to determine the association between OSAS severity and right ventricular dysfunction. METHODS: The study population included 77 consecutive subjects; 20 of these patients had OSAS, 20 of them had HT, but did not have OSAS, 16 patients, who constituted the study group, had both disorders, and 21 subjects without any of these two disorders represented the control group. Right ventricular function was assessed by echocardiography: standard two-dimensional, M-Mode, and conventional Doppler as well as tissue Doppler imaging. None of the patients had a previous history of cardiac disease. The diagnosis of OSAS was based on an apnea- hipopnea index of 5 or higher in polysomnography. RESULTS: Tricuspid inflow velocities and tissue Doppler derived tricuspid annular diastolic velocities were significantly different in the patient groups (OSAS, HT, OSAS + HT) compared to the control group. Tricuspid annular plane systolic excursion (TAPSE) (18.3 +/- 3.2, 18.4 +/- 2.5, 20.1 +/- 2.1, and 20.7 +/- 2.5 mm, respectively, P = 0.024) and peak systolic myocardial velocity at tricuspid lateral annulus (S-vel) (12.2 +/- 1.5, 10.9 +/- 0.9, 11.2 +/- 1.1, and 13.1 +/- 2.1 cm/s, respectively, P < 0.001) were significantly lower in patient groups compared to those of the study group. Tissue Doppler derived myocardial performance index (MPI) of the right ventricle was significantly impaired in the patient groups compared to the control group (0.34 +/- 0.06, 0.44 +/- 0.06, 0.45 +/- 0.07, and 0.41 +/- 0.06, respectively, P < 0.001). With regard to these right ventricular functional parameters, there was no significant difference between OSAS and the other patient groups (HT and OSAS + HT). There were significant correlations both between OSAS severity and the right ventricular functions, and between diastolic and systolic parameters of the right ventricle (r = -0.45, P < 0.05). CONCLUSION: Both right ventricular systolic and diastolic functions are impaired in patients having OSAS with or without HT. Right ventricular MPI was found to be the parameter most closely related with OSAS severity and the right ventricular subclinical dysfunction.

Adult↗

Noncompacted myocardium in Ebstein's anomaly: initial description in three patients.

Exercise intolerance in Ebstein's anomaly is usually attributed to desaturation secondary to right-to-left shunting as a result of a small or distorted left ventricle (LV), significant tricuspid valve regurgitation, right ventricular dysfunction, or a combination of these. We observed one boy (age 15 years) and two women (ages 20 and 29 years) with severe Ebstein's anomaly and strikingly abnormal LV myocardium resembling the features described for LV noncompaction. LV size and systolic function were normal in the two women; the boy had a dilated LV with severely diminished ejection fraction. The LV myocardium was found to be unusually coarse and hypertrabeculated, with small intertrabecular recesses and an irregular endocardial surface. The findings in these 3 patients represent the whole spectrum of mild to severe LV noncompaction. Diastolic dysfunction was present in 2 of the 3 patients. Exercise tolerance was diminished in all. There was no mitral or aortic valve disease. The 15-year-old boy underwent heart transplantation 6 months later for biventricular failure. Thus, Ebstein's anomaly does not seem to be a pathology confined to the right ventricle, but may rarely lead to LV noncompacted myocardium. This LV pathology may be an additional explanation for exercise intolerance or signs of left heart failure in patients with Ebstein's anomaly.

Adolescent↗

Heart-type fatty acid-binding protein permits early risk stratification of pulmonary embolism.

AIMS: We investigated the value of a novel early biomarker, heart-type fatty acid-binding protein (H-FABP), in risk stratification of patients with acute pulmonary embolism (PE). METHODS AND RESULTS: We prospectively included 107 consecutive patients with confirmed PE. The endpoints were (i) PE-related death or major complications and (ii) overall 30-day mortality. Overall, 29 patients (27%) had abnormal (>6 ng/mL) H-FABP levels at presentation. Of those, 12 (41%) had a complicated course, whereas all patients with normal baseline H-FABP had a favourable 30-day outcome (OR, 71.45; P<0.0001). At multivariable analysis, H-FABP (P<0.0001), but not cardiac troponin T (P=0.13) or N-terminal pro-brain natriuretic peptide (P=0.36), predicted an adverse outcome. Evaluation of a strategy combining biomarker testing with echocardiography revealed that patients with a negative H-FABP test had an excellent prognosis regardless of echocardiographic findings. In contrast, patients with a positive H-FABP test had a complication rate of 23.1% even in the presence of a normal echocardiogram, and this rose to 57.1% if echocardiography also demonstrated right ventricular dysfunction (OR vs. a negative H-FABP test, 5.6 and 81.4, respectively). CONCLUSION: H-FABP is a promising early indicator of right ventricular injury and dysfunction in acute PE. It may help optimize risk stratification algorithms and treatment strategies.

Biomarkers↗

[Pulmonary hypertension and lung transplantation].

BACKGROUND: With the development of effective drug treatment in the last 2 decades, lung transplantation has become the final option in the management of pulmonary arterial hypertension (PAH). Its main advantage is the curative aspect with recovery of cardiopulmonary capacity. Scarcity of donor organs and chronic graft rejection, however, remain serious limitations to short- and long-term success, and emphasize the need for judicial patient selection. Timely presentation of the patient to the transplant center is of critical importance. INDICATION: Guidelines have been presented by the International Society for Heart and Lung Transplantation (ISHLT), the American Thoracic Society (ATS) and the American Society of Transplant Physicians (ASTP) in the year 1998. Selection criteria are clinical status (NYHA [New York Heart Association] > or = III and progressing, right heart insufficiency symptoms), hemodynamic data (mean pulmonary arterial pressure > 55 mmHg, systolic arterial pressure < 120 mmHg, cardiac index < 2 l/min/m2, central venous pressure > 15 mmHg, right heart function on echocardiography), and functional parameters (peak oxygen uptake < 10-12 ml/kg/min, 6-min walk test [MWT] < 332 m). Functional parameters have been shown to correlate with a 1-year mortality of 40% with a 6-MWT < 332 m, of 50% with a peak oxygen uptake < 10.4 ml/kg/min, and of 70% with a systolic arterial pressure < 120 mmHg. Combinations of the above lead to a 1-year survival of 23%. Mean survival of patients with primary pulmonary hypertension (PPH) is 2.8 years and is reduced to 6 months, when NYHA IV is reached (National Institutes of Health-PPH Registry 2002). These data underline the potential survival benefit from transplantation for patients with advanced lung failure due to PAH. TRANSPLANTATION: Single lung, bilateral lung and heart-lung transplantation are the transplantation procedures available. Even though heart-lung transplantation was the first procedure to be performed in 1981, bilateral lung transplantation is the procedure most commonly performed at present. Choice of transplantation procedure should be made after thorough evaluation, taking the potential reversibility of right ventricular dysfunction after the operation into account (Figure 1). Hemodynamic instability from right and/or left ventricular failure, however, may complicate early postoperative management. Heart and lung transplantation should only be considered, if structural heart damage is present. Lung function improves immediately postoperatively and increases in the following 6 months. Most patients have normal function studies 1 year after transplantation. STATISTICS: The Registry of the ISHLT (01/1982-06/2003) reports PAH as primary diagnosis in 4.2% of all lung transplantations (457/10,959) and 24.3% (550/2,263) of all heart-lung transplantations. This corresponds to 1.1% of all single (66/5,793) and 7.6% of all bilateral lung transplantations (391/5,166). Single lung transplantation is associated with shorter ischemia, cardiopulmonary bypass and operation time. The procedure, however, is accompanied by ventilation/perfusion mismatch, a higher likelihood of reperfusion injury and less functional reserve in case of progressive chronic rejection. The advantages of bilateral lung transplantation are under discussion, particularly as 5-year survival seems to be higher in some centers. Heart and lung transplantation is reported to have similar results as bilateral lung transplantation (Table 1), showing survival advantages only in patients with Eisenmenger's syndrome or ventricular septal defect. Bilateral lung transplantation, therefore, is the procedure of choice at the Essen Transplant Center, provided donor organs are available. CONCLUSION: Thoracic transplantation has become a feasible therapeutic option in terminal PAH patients. Judicious patient selection, choice and timing of procedure are critical to a successful outcome.

Heart Transplantation↗

Effects of amrinone on the right side of the heart.

Unlike the left ventricle, the right ventricle is a thin-walled, low-pressure, volume-displacement pump that ensures adequacy of left ventricular filling and maintains a low pressure in the venous system. In healthy human subjects, there is no burden for right ventricular systolic emptying, because normal pulmonary vessels have a low impedance and show a passive recruitment when cardiac output increases. However, under a pathological condition like right-sided heart failure, the right ventricle may exert profound influences on the circulatory state. Right-sided heart failure most often results from primary or secondary pulmonary arterial hypertension. Pharmacologic vasodilation of the hypertensive pulmonary vascular bed is an ideal therapy for right-sided heart failure. The bipyridine derivative amrinone has positive inotropic and direct vasodilator properties, and therefore seems suitable for the therapy of right ventricular dysfunction accompanied by pulmonary arterial hypertension. In one study, 12 patients with right ventricular failure due to mitral valve stenosis were evaluated, and it was found that amrinone increased cardiac output by 25% and decreased pulmonary artery pressure by 30% to 50%. In a second study, the hemodynamic properties of amrinone versus sodium nitroprusside were compared in patients with aortic or mitral valve failure (n = 17), when both agents lowered systemic vascular resistance equally. Pulmonary vascular resistance decreased significantly (25%) only in the amrinone group.

Amrinone↗

Use of a novel ultrafiltration device as a treatment strategy for diuretic resistant, refractory heart failure: initial clinical experience in a single center.

BACKGROUND: The System 100 UF device allows ultrafiltration (UF) via peripheral access and is approved for use in heart failure (HF), although clinical trials defining optimal target population and clinical utility are lacking. We report our initial experience with clinical use of this system in very advanced, diuretic resistant HF patients. METHODS AND RESULTS: Eleven HF patients (mean age 70 years) underwent 1 to 5 UF treatments each (total 32 UF). The goal was to remove 4 liters of fluid per 8-hour UF. Baseline creatinine averaged 2.2 mg/dL (range .9-3.2) while estimated glomerular filtration rates (GFRs) averaged 38 mL/min (range 20-87). Nine patients (82%) had moderate (GFR 30-59; n = 3) or severe (GFR <30; n = 6) renal dysfunction. Nine patients (82%) had documented right ventricular dysfunction, 6 with severe tricuspid regurgitation. Average daily intravenous furosemide dose prior to UF was 258 mg (range 80-480). Patients had received nesiritide (n = 4), dopamine (n = 4), and zaroxylyn (n = 7) prior to UF. Of the 32 UF treatments, 13 (41%) removed >3500 mL, 11 (34%) removed 2500-3500 mL, and 8 (25%) removed <2500 mL. Only one UF treatment (3%) was aborted due to hypotension. There were no significant complications related to UF. Five patients (45%) experienced an increase in creatinine of >.3 mg/dl. Five patients required dialysis for persistent diuretic resistant volume overload or uremic symptoms. Six-month mortality was 55%. CONCLUSIONS: Peripheral UF safely but variably removed fluid. In this very high-risk, advanced HF population, 45% of patients developed worsening renal function during UF therapy. Controlled studies are needed to determine the impact of UF on renal function and outcomes in high-risk populations such as this.

Aged↗

Right ventricular ejection fraction in the preoperative risk evaluation of candidates for pulmonary resection.

The major determinants of postoperative morbidity and mortality after lung resection are the physiologic and functional statuses of the pulmonary and cardiac systems. In our previous study, serial measurements of right ventricular performance after pulmonary resection demonstrated significant right ventricular dysfunction in the postoperative period. This study evaluates the preoperative measurement of right ventricular ejection fraction as a predictor of postoperative complications. In addition to conventional cardiopulmonary functional tests, right ventricular function was assessed with a thermodilution technique at rest and during exercise in 18 patients before and 3 weeks after lobectomy or pneumonectomy. The patients were grouped according to severity of right ventricular functional defect: right ventricular ejection fraction of at least 45% (group Ia, n = 8), right ventricular ejection fraction less than 45% (group Ib, n = 10), exercise-induced increases in right ventricular ejection fraction (group IIa, n = 8), and exercise-induced decreases in right ventricular ejection fraction (group IIb, n = 10). Postoperative cardiopulmonary morbidity was recorded for two patients (25%) in group Ia, three patients (30%) in group Ib, no patients (0%) in group IIa, and five patients (50%) in group IIb. Postoperative hospital stay was 28.9 +/- 8.5 days in group Ia, 29.9 +/- 20.2 days in group Ib, 19.4 +/- 8.0 days in group IIa, and 37.5 +/- 15.9 days in group IIb (p < 0.05, group IIa vs group IIb). Although resection-induced changes in forced expiratory volume in 1 second did not differ significantly between group Ia and group Ib, these values appeared to be increased in groups IIa (not statistically significant) and IIb (significantly, p < 0.05). The measured postoperative values of forced expiratory volume in 1 second and vital capacity were significantly higher than the predicted postoperative values (p < 0.05) in group IIa, but not in groups Ia, Ib, and IIb. We conclude that evaluation of right ventricular performance is useful in determining which patients are at increased risk for medical complications after lung resection. Exercise-induced change in right ventricular ejection fraction may be a better indicator of high risk among candidates for pulmonary resection than the absolute value of this parameter.

Aged↗

Onset of right-to-left shunting through a foramen ovale in a 70-year-old woman: successful surgical treatment.

A 70-year-old woman presented with disabling breathlessness. She was found to have severe arterial hypoxaemia due to isolated right-to-left shunting through a patent foramen ovale. In the absence of pulmonary hypertension or evidence of right ventricular dysfunction this is attributed to reduced right atrial compliance. The phasic nature of the shunt, which occurred only during atrial filling, supports this view. Surgical closure of the foramen abolished the hypoxaemia and her symptoms.

Aged↗

Arrhythmogenic right ventricular dysplasia.

Arrhythmogenic right ventricular dysplasia is a relatively newly described clinical entity that is more and more frequently recognized. It may explain an increasing number of unexpected, sudden deaths in young adults that are or are not preceded by cardiac symptoms. A genetic transmission of the disease has been suggested by the study of familial cases. A location on chromosome 14 appears to be responsible for this disease. In some patients, a superimposed inflammatory process mixed with the pattern of arrhythmogenic right ventricular dysplasia may explain the progressive deterioration of left ventricular function. The systematic study of electrocardiograms demonstrates prolongation of the QRS complex and repolarization abnormalities in the right precordial leads due to a parietal block. Multiple therapeutic approaches are now available. The first line of therapy remains antiarrhythmic drugs, which are effective in most cases. Ablative techniques, implantable defibrillators, and heart transplantation have been used in the most severe examples of the disease.

Adult↗

Right ventricular function in healed myocardial infarction in man. A cineangiographic assessment.

To evaluate the frequency of right ventricular dysfunction following recovery from myocardial infarction (MI) and the relationship of segmental right ventricular (RV) wall motion abnormalities to left ventricular (LV) function or location of coronary arterial stenosis, biplane right and left ventricular cineangiograms were obtained in 100 consecutive patients (4 +/- 3 months post MI). Thirty (group A) had anterior MI and significant stenosis or obstruction of left anterior descending artery (LAD). The remaining 70 patients had inferior MI. They were divided into three groups according to the site of the main coronary stenosis or obstruction and corresponding LV akinesia: right coronary artery (RCA) proximal to the acute marginal artery (RMA), (group B: 32 patients), RCA distal to the RMA (group C: 18 patients), left circumflex artery (LCF), (group D: 18 patients). RV and LV end-diastolic volume index (EDV), end-systolic volume index (ESV), stroke volume (SV) and ejection fraction (EF) have been determined. RV segmental wall motion was assessed in RAO and LAO projection by determining the percentage of systolic shortening (+ delta R) along 11 hemiaxes. Mean axial shortening (delta R) of the RV inferior and free walls were considered. When compared with that in 10 normal subjects, RV end-diastolic volume (RVEDV), RV end-systolic volume (RVESV) were increased and RV ejection fraction (RVEF) was lower in patients with anterior or inferior MI. Inferior delta R exhibited comparable sequential changes in the three groups of inferior MI and similar LVEF alteration.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗