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RV Dysfunction (rv + dysfunction)
Selected AbstractsPresence of Biventricular Dysfunction in Patients With Type II Diabetes MellitusCONGESTIVE HEART FAILURE, Issue 2 2007Mohammad-Reza Movahed MD Diabetes mellitus (DM) has been found to be associated with depressed left ventricular (LV) function. Right ventricular (RV) function in DM patients, however, has not been well studied. The goal of this study was to evaluate the occurrence of LV and RV dysfunction in patients with DM. A series of 157 patients underwent simultaneous measurement of LV ejection fraction (LVEF) and RV ejection fraction (RVEF). Four of 26 DM patients had RVEF <30% (15.4%) vs 4 of 126 controls (3.2%) (P=.01). Eleven of 27 (40.7%) patients with DM had LVEF <30% vs 9 of 128 controls (7%) (P<.0001). Using multivariate analysis, DM remained independently associated with severely decreased biventricular function (RVEF <30%; odds ratio, 5.7; confidence interval, 1.3,25.4 [P=.02] and LVEF <30%; odds ratio, 12.9; confidence interval, 3.8,43.7 [P<.0001]). These results suggest that diabetic cardiomyopathy involves both ventricles as an independent pathologic process. [source] Right Ventricular Dimensions and Function in Isolated Left Bundle Branch Block: Is There Evidence of Biventricular Involvement?ECHOCARDIOGRAPHY, Issue 5 2008Jeroen Van Dijk M.D. Background: Isolated left bundle branch block (LBBB) may be an expression of idiopathic cardiomyopathy affecting both ventricles. The present study was conducted to evaluate right ventricular (RV) dimensions and function in asymptomatic LBBB patients with mildly depressed left ventricular (LV) function. Methods: Fifteen patients with asymptomatic LBBB in whom coronary artery disease, hypertension, and valvular pathology was excluded were studied. Fifteen healthy volunteers and 15 idiopathic dilated cardiomyopathy LBBB patients served as controls. RV long axis and tricuspid annulus diameter were obtained, as were tricuspid annular plane systolic excursion (TAPSE) and peak systolic velocity (Sm) of the RV free wall annulus. Tricuspid regurgitation (TR) jets (peak TR jets) were used for RV pressure assessment. Results: RV dimensions were comparable between the asymptomatic LBBB patients and controls. RV functions of healthy volunteers and asymptomatic LBBB patients were similar (TAPSE: 24 ± 3 and 24 ± 4 mm, Sm: 13 ± 2 and 13 ± 3 cm/s, respectively), whereas functional parameters in idiopathic dilated cardiomyopathy patients were significantly reduced (TAPSE: 19 ± 5 mm, Sm: 9 ± 2 cm/s, both P < 0.01 by analysis of variance [ANOVA]). For the three groups combined, a significant inverse correlation between RV pressure (peak TR jets) and RV function (Sm) was observed (r =,0.52, P = 0.017). Conclusions: In patients with an asymptomatic LBBB, RV dimensions and function are within normal range. The present study suggests that screening of RV functional parameters in asymptomatic LBBB patients is not useful for identification of an early-stage cardiomyopathy, and RV dysfunction is merely a consequence of increased RV loading conditions caused by left-sided heart failure and does not indicate a generalized cardiomyopathy affecting both ventricles. [source] B-type natriuretic peptide as an indicator of right ventricular dysfunction in acute pulmonary embolism,INTERNATIONAL JOURNAL OF CLINICAL PRACTICE, Issue 8 2008T. Yardan Summary Objective:, B-type natriuretic peptide (BNP) is a neurohormone secreted from cardiac ventricles in response to ventricular strain. The aim of present study was to evaluate the role of BNP in the diagnosis of the right ventricular (RV) dysfunction in acute pulmonary embolism (PE). Methods:, BNP levels were measured in patients with acute PE as diagnosed by high probability lung scan or positive spiral computed tomography. All patients underwent standard echocardiography and blood tests during the second hour of the diagnosis. Results:, Forty patients diagnosed as acute PE (mean age, 60.4 ± 13.2 years; 62.5% women) were enrolled in this study. Patients with RV dysfunction had significantly higher BNP levels than patients without RV dysfunction (426 ± 299.42 pg/ml vs. 39.09 ± 25.22 pg/ml, p < 0.001). BNP-discriminated patients with or without RV dysfunction (area under the receiver operating characteristic curve, 0.943; 95% CI, 0.863,1.022). BNP > 90 pg/ml was associated with a risk ratio of 165 (95% CI, 13.7,1987.2) for the diagnosis of RV dysfunction. There was a significant correlation between RV end-diastolic diameter and BNP (r = 0.89, p < 0.001). Sixteen patients (40%) were diagnosed as having low-risk PE, 19 patients (47.5%) with submassive PE and five patients (12.5%) with massive PE. The mean BNP was 39.09 ± 25.2, 378.4 ± 288.4 and 609.2 ± 279.2 pg/ml in each group respectively. Conclusion:, Measurement of BNP levels may be a useful approach in diagnosis of RV dysfunction in patients with acute PE. The possibility of RV dysfunction in patients with plasma BNP levels > 90 pg/ml should be strongly considered. [source] Assessment of a New Experimental Model of Isolated Right Ventricular FailureARTIFICIAL ORGANS, Issue 3 2009Petronio G. Thomaz Abstract We assessed a new experimental model of isolated right ventricular (RV) failure, achieved by means of intramyocardial injection of ethanol. RV dysfunction was induced in 13 mongrel dogs via multiple injections of 96% ethanol (total dose 1 mL/kg), all over the inlet and trabecular RV free walls. Hemodynamic and metabolic parameters were evaluated at baseline, after ethanol injection, and on the 14th postoperative day (POD). Echocardiographic parameters were evaluated at baseline, on the sixth POD, and on the 13th POD. The animals were then euthanized for histopathological analysis of the hearts. There was a 15.4% mortality rate. We noticed a decrease in pulmonary blood flow right after RV failure (P = 0.0018), as well as during reoperation on the 14th POD (P = 0.002). The induced RV dysfunction caused an increase in venous lactate levels immediately after ethanol injection and on the 14th POD (P < 0.0003). The echocardiogram revealed a decrease in the RV ejection fraction on the sixth and 13th PODs (P = 0.0001). There was an increased RV end-diastolic volume on the sixth (P = 0.0001) and 13th PODs (P = 0.0084). The right ventricle showed a 74% ± 0.06% transmural infarction area, with necrotic lesions aged 14 days. Intramyocardial ethanol injection has allowed the creation of a reproducible and inexpensive model of RV failure. The hemodynamic, metabolic, and echocardiographic parameters assessed at different protocol times are compatible with severe RV failure. This model may be useful in understanding the pathophysiology of isolated right-sided heart failure, as well as in the assessment of ventricular assist devices. [source] |