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Right ventricular dysfunction following severe scorpion envenomation.

OBJECTIVE: Evaluation of right ventricular (RV) performance in patients presenting with pulmonary edema following scorpion envenomation. DESIGN: Cohort study. SETTING: Medical intensive care unit of a teaching hospital. PATIENTS: Eight consecutive adult patients stung by yellow scorpion Androctonus australis and presenting with pulmonary edema at hospital admission. INTERVENTIONS: In all patients, standard hemodynamic parameters and RV volumes were measured using a pulmonary artery catheter equipped with a rapid responding thermistor enabling measurement of RV ejection fraction (RVEF). MEASUREMENTS: Hemodynamic evaluation was performed at the time of hospital admission prior to any therapeutic intervention and just before the removal of the pulmonary catheter (2.3 +/- 0.5 days after admission) in the surviving patients (n = 7). RESULTS: All patients had a decreased RVEF (24 +/- 7%) and cardiac index (2.44 +/- 0.5 L/min/m2) and increased pulmonary artery occlusion pressure (23 +/- 6 mm Hg). Right ventricular end-systolic pressure/volume ratio was decreased (.56 +/- .19 mm Hg/mL/m2), suggesting an altered RV contractility. Follow-up evaluation performed in survivors, without any inotropic support, showed hemodynamic changes reflecting a trend toward full recovery. Right ventricular ejection fraction and cardiac index improved markedly (from 24 +/- 7% to 39 +/- 10% and from 2.44 +/- 0.5 to 4 +/- .3 L/min/m2, respectively). Pulmonary artery occlusion pressure, peak systolic pulmonary artery pressure, and mean pulmonary artery pressure decreased significantly from baseline values (12 +/- 3 mm Hg, 29 +/- 5 mm Hg, and 20 +/- 4 mm Hg, respectively). Right ventricular end systolic pressure/volume ratio remained almost constant, suggesting that afterload enhancement accounted predominantly for RVEF improvement. CONCLUSION: These data show that RV function impairment is associated with left ventricular dysfunction, suggesting similarities between left ventricular and RV alterations following severe scorpion envenomation providing further arguments to the hypothesis of scorpionic myocarditis.

Adult↗

Late arrhythmia in adults with the mustard procedure for transposition of great arteries: a surrogate marker for right ventricular dysfunction?

OBJECTIVE: To examine the relation between ventricular dysfunction and late clinical arrhythmia in adults who underwent the Mustard procedure for transposition of the great arteries. DESIGN: Observational study based on periodic outpatient assessment of biventricular function. SETTING: Tertiary referral centre. INTERVENTIONS: Analysis of data from 12 lead ECGs, echocardiography, exercise radionuclide ventriculography, and magnetic resonance imaging. MAIN OUTCOME MEASURES: Clinical outcome and late onset clinical arrhythmia during follow up. ECG and ventricular function indices obtained before arrhythmia onset were used for analysis. RESULTS: 51 patients (mean (SD) age 25.7 (5.0) years) fulfilled entry criteria at a mean of 23.4 (4.0) years after the Mustard procedure. Late arrhythmia occurred in 11 (22%): sustained atrial flutter/fibrillation in 10, ventricular tachycardia in one. Compared with patients who remained arrhythmia free, patients with arrhythmia had longer QRS (129 (26) v 112 (16) ms, p = 0.01), greater QT dispersion (107 (28) v 51 (24) ms, p < 0.001), and increased ratio of right to left ventricular end diastolic diameter (2.4 (0.9) v 1.7 (0.7), p = 0.02), but no difference in wall thickness. Systemic ejection fraction was also reduced in the arrhythmia subgroup (at rest: 34.1 (13)% v 47 (16)%, p = 0.04; during exercise: 37.8 (12)% v 52 (17)%, p = 0.03). QRS duration correlated with right ventricular end diastolic diameter (r = 0.59, p < 0.001), suggesting a possible mechano-electric relation after the Mustard procedure. QT dispersion was the only predictor of clinical arrhythmia in multivariate analysis. CONCLUSIONS: Impaired ventricular function in adults with the Mustard procedure for transposition of the great arteries relates to clinical arrhythmia. Late atrial flutter/fibrillation may be a surrogate marker for ventricular dysfunction, and these patients may also be at risk of ventricular tachycardia.

Adult↗

Right ventricular dysfunction in multiple trauma victims.

We studied 17 victims of multiple trauma and found that right ventricular function can be reliably monitored at the bedside using the thermodilution method. In addition, we noted that right ventricular dysfunction occurred early in victims of major trauma without affecting the left ventricular function. If right ventricular function does not improve, the patient is likely to die. Further studies are needed to determine if early intervention aimed at improving right ventricular function can improve survival.

Adolescent↗

Usefulness of bedside testing for brain natriuretic peptide to identify right ventricular dysfunction and outcome in normotensive patients with acute pulmonary embolism.

Echocardiographic right ventricular (RV) dysfunction is a well-established prognostic indicator in patients with acute pulmonary embolism. However, the possibility of implementing a rapid and effective triage with biohumoral markers such as brain natriuretic peptide (BNP) may be of value. Sixty-one patients with a first documented episode of acute pulmonary embolism without shock and previous left ventricular dysfunction were prospectively studied. All patients underwent echocardiography and rapid BNP testing on admission. Patients were followed up for in-hospital death, progression to shock, and nonfatal pulmonary embolism recurrence. Overall, 35 patients (57%) had echocardiographic evidence of RV dysfunction on admission, and its prevalence increased progressively with increasing levels of BNP. A BNP level <85 pg/ml was highly accurate in excluding RV dysfunction. No patient in the lower tertile of BNP values (1.1 to 85.0 pg/ml) had RV dysfunction, compared with 75% in the middle tertile (88.7 to 487.0 pg/ml) and 100% in the upper tertile (527 to 1,300 pg/ml). Overall, 11 patients (18%), belonging to the upper tertile, progressed to shock during admission, 4 of whom died. The association of RV dysfunction with a BNP level in the upper tertile (>or=527 pg/ml) showed incremental prognostic value over RV dysfunction alone (in-hospital death and progression to shock were 55% and 31%, respectively). In the present study, BNP represented a powerful predictor of in-hospital clinical deterioration, with substantial incremental prognostic value over echocardiography alone.

Acute Disease↗

Right ventricular dysfunction in adult severe cystic fibrosis.

STUDY OBJECTIVES: This study sought to assess the extent of impairment of cardiac function in adult patients with end-stage cystic fibrosis (CF) and to examine the relationship between cardiovascular abnormalities and the degree of hypoxemia and hypercapnia. DESIGN AND SETTING: A retrospective study in a tertiary cardiac and CF center. PARTICIPANTS AND INTERVENTIONS: A total of 103 adult patients with end-stage CF awaiting lung or heart and lung transplantation (mean age [+/- SD], 26+/-7 years; 54 men) underwent Doppler echocardiography and arterial blood gas analysis (mean PaO(2), 54+/-10 mm Hg; mean PaCO(2), 47+/-8 mm Hg). The findings were compared to those of 17 healthy control subjects (mean age, 24+/-7 years; 13 men) who had no history of cardiac or pulmonary disease. MEASUREMENTS AND RESULTS: All patients were in sinus rhythm with a mean tachycardia of 112+/-18 beats/min (control subjects, 76+/-16; p<0.0001) and had a cardiac output of 5.3 L/min (control subjects, 4.3 L/min; p<0.04). In the patient group, the left ventricular (LV) dimensions, systolic and diastolic function, and wall thickness were all within normal limits. The mean amplitude of long-axis excursion in patients was normal at the LV site, but that of the right ventricular (RV) free wall was significantly reduced as compared with control subjects (1.6+/-0.4 vs. 2.2+/-0.4 cm, respectively; p<0.001), which was found to correlate with the degree of hypoxemia (r = 0.63; p<0.02) and hypercapnia (r = -0.68; p<0.01). RV diastolic function, which was represented by the relative isovolumic relaxation time to cardiac cycle length, was longer in patients than in control subjects (8.7+/-4.8% vs. 5.0+/-3.0%, respectively; p<0.03). The pulmonary flow acceleration time (90+/-22 vs 121+/-34 ms, respectively; p<0.01) and the systolic stroke distance (7.0+/-2.2 vs. 10.5+/-1.9 cm/s(2); p<0.001) were both lower than normal. CONCLUSIONS: This study confirms the presence of significant RV systolic and diastolic dysfunction in the setting of consistent tachycardia and increased cardiac output in adult CF patients with severe disease. No specific LV abnormalities were detected in these patients.

Adolescent↗

[Right ventricular dysfunction in demand-induced ischemia in patients with isolated right coronary artery disease: a radioisotope study].

In ischemic heart disease, the left ventricle has been considered the main target of an imbalance between myocardial oxygen supply and demand. Accordingly, the approach to ischemia has been directed at the evaluation of the left ventricle. The aim of this study was to assess the relative involvement of the left and right ventricle in patients with isolated right coronary artery stenosis. We studied 20 patients with a clinical history of effort angina (15 male, 5 female, mean age 54.1 +/- 6.2) using radionuclide angiography and atrial pacing. Findings were compared with those of 6 normal subjects that were paced at the maximal heart rate of 150 beats/min. Atrial pacing was interrupted because of diagnostic ST segment depression in 8 patients, Wenckebach type atrioventricular block in 1, chest pain without electrocardiographic changes in 4 and the achievement of the maximal prefixed heart rate of 150 beats/minute in 7. With respect to control conditions, during atrial pacing right ventricular ejection fraction declined from 46.8 +/- 6.8% to 37.4 +/- 8.1% (p less than 0.001), while no significant change was observed in left ventricular ejection fraction values (55.2 +/- 4.5% and 51.1 +/- 10.2% respectively). During atrial pacing, left ventricular peak filling rate increased from 1.77 +/- 0.53 to 4.71 +/- 1.8 end-diastolic volumes/second (p less than 0.0001). Qualitative analysis of regional wall motion showed a right ventricular dysfunction in 19/20 patients; this was prevalent in 9 and involving also the left ventricle in 10; an isolated impairment of the left ventricle was observed in 1 patient.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

MRI complements standard assessment of right ventricular function after lung transplantation.

BACKGROUND: Changes in right ventricular mass and ejection fraction after single-lung transplantation for pulmonary hypertension are poorly understood. METHODS: To complement functional data provided by echocardiography, radionuclide ventriculography, and right heart catheterization, magnetic resonance imaging was used to assess right ventricular function in 5 single-lung transplant recipients with preoperative pulmonary hypertension and right ventricular dysfunction (right ventricular ejection fraction, 0.21 +/- 0.09). The right and left ventricular mass, ejection fraction, and mass ratio (left ventricular mass/right ventricular mass) were calculated from the magnetic resonance images. RESULTS: The mean pulmonary artery pressure fell from 72 +/- 18 to 21 +/- 8 mm Hg after transplantation. At 3 months after transplantation both the left ventricular and right ventricular ejection fractions approached normal values, as shown by both radionuclide ventriculography and magnetic resonance imaging, but the right ventricular mass remained abnormally high with slightly low mass ratios. By 1 year both the left ventricular and right ventricular masses had regressed to normal with near-normal mass ratios. CONCLUSIONS: Right ventricular performance returns to nearly normal early after transplantation, but the right ventricular mass regresses over a more prolonged time. Cine magnetic resonance imaging provides a noninvasive means of assessing changes in right ventricular function and mass after lung transplantation.

Adult↗

Inhaled nitric oxide improves exercise capacity in patients with severe heart failure and right ventricular dysfunction.

Fourteen cardiac transplant candidates were studied with cardiopulmonary exercise testing at baseline and while breathing nitric oxide (40 ppm). Oxygen consumption at the anaerobic threshold was improved by breathing nitric oxide in patients with pulmonary hypertension and in patients with an elevated left ventricular end-diastolic volume index.

Administration, Inhalation↗

[Practice Guidelines of the Spanish Society of Cardiology in the postoperative course of congenital heart diseases].

Improvements in myocardial protection, surgical techniques, and perioperative care have made it possible to achieve better prognosis in most congenital heart defects. This requires a coordinated, multidisciplinary approach to patient care, based on the preservation of adequate oxygen delivery to vital organs. It is important to have an understanding of normal postoperative status after cardiac surgery so that abnormal postoperative convalescence can be identified and treated.The causes of abnormal convalescence may be grouped into three categories: a) the pathophysiology of the defect before surgery and the acute changes in physiology that result from surgery; b) the effects of hypothermic cardiopulmonary bypass and deep hypothermic circulatory arrest on organ function, and c) the presence of residual anatomic defects. These conditions may result in prolonged convalescence as well as increased morbidity and mortality. Three primary hemodynamic pathophysiologic disturbances may occur during the postoperative period and lead to abnormal convalescence: left ventricular dysfunction, right ventricular dysfunction and pulmonary hypertension. Though sometimes not directly related to either the cardiac defect or surgery, specific problems involving different organs may alter the normal postoperative period. Neurologic, pneumologic, renal, gastrointestinal and infective complications are discussed separately.

Adult↗