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Adenosine effectively controls pulmonary hypertension after cardiac operations.

BACKGROUND: Pulmonary hypertension secondary to increased pulmonary vascular resistance may greatly complicate the perioperative management of patients having cardiac operations. Adenosine may have a therapeutic role as a selective pulmonary vasodilator. The purpose of this study was to examine the pulmonary hemodynamic effects of a central venous infusion of adenosine in cardiac operative patients with pulmonary hypertension. METHODS: Ten cardiac patients with pulmonary hypertension (age, 62 +/- 6 years) were studied in the operating room under general anesthesia after weaning from cardiopulmonary bypass. Cardiac output, pulmonary vascular resistance, systemic vascular resistance, mean pulmonary arterial pressure, and mean systemic arterial pressure were determined before, during, and after central venous infusion of adenosine (50 micrograms x kg-1 x min -1) for 15 minutes. Statistical analysis was by analysis of variance, and significance was accepted at p < 0.05. RESULTS: Adenosine produced significant pulmonary vasodilation. Mean pulmonary arterial pressure was lowered from 36 +/- 1 to 28 +/- 2 mm Hg (p < 0.05), and pulmonary vascular resistance was lowered from 560 +/- 30 to 260 +/- 30 dynes x s x cm-5 (p < 0.05) during adenosine administration. At the same time, cardiac output rose from 4.0 +/- 0.6 to 6.2 L/min (p < 0.05). Pulmonary vascular resistance, mean pulmonary arterial pressure, and cardiac output returned to baseline after the adenosine infusion was stopped. There was no change in systemic mean arterial pressure during adenosine infusion. CONCLUSIONS: Adenosine may be used clinically as a selective pulmonary vasodilating agent to optimize pulmonary hemodynamic indices without adverse systemic hemodynamic effects in patients with pulmonary hypertension having cardiac operations. It may be particularly valuable in patients with right heart dysfunction by selectively lowering right ventricular afterload.

Adenosine↗

Cardiogenic shock: predictors of outcome based on right and left ventricular size and function at presentation.

OBJECTIVE: To determine the characteristics and prognostic importance of right ventricular (RV) dilatation and dysfunction in patients with cardiogenic shock secondary to left ventricular (LV) dysfunction enrolled in the Should we emergently revascularize occluded coronaries for cardiogenic shock (SHOCK) trial. METHODS: LV and RV size and function were quantified by echocardiography in 99 patients with cardiogenic shock secondary to predominant LV dysfunction. RESULTS: For all patients, RV dysfunction was not associated with a poor 1-year survival. When the 59 patients with RV dysfunction were stratified into two morphologic groups based upon LV-to-RV end-diastolic area ratio (LV/RV) < or >or=2, the presence of disproportionate RV enlargement (LV/RV <2) was associated with inferior myocardial infarction (80%) and right coronary artery culprit disease (79%). In contrast, the index myocardial infarction in patients with predominant LV enlargement (LV/RV >or=2) was anterior (69%) and associated with left anterior descending artery disease (64%). Patients with LV/RV <2 had significantly higher right atrial pressures (20.1+/-5.2 compared with 14.5+/-8.9 mmHg, P=0.001) and lower RV fractional area change (20.4+/-8.7 compared with 33.5+/-11.0%, P=0.0001), heart rate (87+/-21 compared with 106+/-23 beats/min, P=0.006) and cardiac index (1.5+/-0.5 compared with 2.0 +/-0.9 l/min per m, P=0.007) than patients with LV/RV >or=2. Despite the hemodynamic profile and severity of RV dysfunction in the LV/RV <2 group, 12-month survival was significantly greater in these patients (70% LV/RV <2 compared with 34% LV/RV >or=2, P=0.027). CONCLUSIONS: In patients with cardiogenic shock secondary to predominant LV failure, the presence of RV dilatation and dysfunction identifies a subgroup of patients with predominant inferior myocardial infarction and an improved long-term prognosis.

Aged↗

Pulmonary stenosis and impaired myocardial function.

Two young Black female patients with pulmonary valve stenosis and intact ventricular septa are presented in protracted congestive cardiac failure with severe tricuspid insufficiency and, in one, atrial fibrillation. Right ventricular systolic dysfunction was manifested by peak systolic pressures below systemic level, raised end-diastolic pressures and low cardiac output, but without right-to-left shunt. These findings are in strong contrast to those found in most patients with pulmonary stenosis of long standing, where persistent impairment of right ventricular function is diastolic with a high end-diastolic pressure and reversal of an interatrial shunt which result from poor right ventricular compliance. Evidence of left ventricular dysfunction was also present in both cases. Protracted heart failure in these patients is believed to have been the result of coincidental cardiomyopathy in a racial group highly predisposed to this disorder. A diagnostic appreciation of this phenomenon is important in the evaluation of heart disease in the Black, since cardiomyopathy may modify or even mask the features of the underlying disorder.

Adolescent↗

Intraaortic balloon counterpulsation improves right ventricular failure resulting from pressure overload.

BACKGROUND: Right ventricular (RV) dysfunction is common after heart transplantation, and myocardial ischemia is considered to be a significant contributor. We studied whether intraaortic balloon counterpulsation would improve cardiac function using a model of acute RV pressure overload. METHODS: In 10 anesthetized sheep, RV failure was induced using a pulmonary artery constrictor. Baseline measurements included mean systemic blood pressure, RV peak systolic pressure, cardiac index, and RV ejection fraction. Myocardial and organ perfusion were measured using radioactive microspheres. RESULTS: After pulmonary artery constriction, there was an increase in RV peak systolic pressure (32 +/- 2 to 60 +/- 3 mm Hg; p < 0.01) and a decrease in mean systemic blood pressure (68 +/- 4 to 49 +/- 2 mm Hg; p < 0.01), RV ejection fraction (0.51 +/- 0.04 to 0.16 +/- 0.02; p < 0.01), and cardiac index (2.48 +/- 0.04 to 1.02 +/- 0.11; p < 0.01). Blood flow to the RV did not change significantly, but there was a significant reduction in blood flow to the left ventricle. The initiation of intraaortic balloon counterpulsation (1:1) using a 40-mL intraaortic balloon inserted through the left femoral artery resulted in an increase in mean systemic blood pressure (49 +/- 2 to 61 +/- 3 mm Hg; p < 0.01), cardiac index (1.02 +/- 0.11 to 1.45 +/- 0.14; p < 0.05), RV ejection fraction (0.16 +/- 0.02 to 0.23 +/- 0.02; p < 0.01), and blood flow to the left ventricle. CONCLUSIONS: In a model of right heart failure, the institution of intraaortic balloon counterpulsation caused a significant improvement in cardiac function. Although RV ischemia was not demonstrated, the augmentation of left coronary artery blood flow by intraaortic balloon counterpulsation and subsequent improvement in left ventricular function suggest that left ventricular ischemia contributes to RV dysfunction, presumably through a ventricular interdependence mechanism. Therefore, study of the safety and efficacy of intraaortic balloon counterpulsation in the management of patients with acute right heart dysfunction is warranted.

Animals↗

Quantitative analysis of right atrial performance after surgical repair of tetralogy of Fallot.

We aimed to assess the right atrial performance in patients after surgical correction of tetralogy of Fallot, and to clarify the relationship between the pump function of the right atrium and right ventricular systolic function. We included in the study 50 asymptomatic patients following corrective surgery of tetralogy of Fallot, comparing them to 30 normal subjects. Right atrial areas were measured by echocardiography, and the active fractional area of emptying was expressed, in percentages, as the area measured at the onset of atrial contraction, minus the minimal area, divided by the area at the onset of atrial contraction. We used this value to assess the atrial pump function. Right atrial peak strain rates were measured by tissue Doppler imaging. Compared to controls, patients with tetralogy of Fallot had a significantly reduced right atrial active fractional area of emptying (p = 0.005), along with a reduced peak late diastolic strain rate (p = 0.002). Among 20 patients who underwent magnetic resonance tomographic examination, a relatively higher right atrial peak late diastolic strain rate was shown in patients with a right ventricular ejection fraction of less than 50% (p = 0.021). Right atrial performance is reduced in patients after surgical correction of tetralogy of Fallot. When facing right ventricular systolic dysfunction, nonetheless, the right atrial pump function may be relatively enhanced. Tissue Doppler derived strain rate can provide quantitative analysis of regional right atrial performance.

Adolescent↗

Reduced right ventricular ejection fraction as a marker for idiopathic dilated cardiomyopathy compared with ischemic left ventricular dysfunction.

BACKGROUND: Evidence for the role of right ventricular (RV) function is emerging in patients with heart failure of different etiologies. Studies conducted in dilated cardiomyopathy (IDC) showed a high prevalence of RV dysfunction unrelated to the severity of pulmonary hypertension. The aim of the study was to investigate the role of RV dysfunction in ischemic versus nonischemic patients. METHODS: A series of 153 patients with left ventricular (LV) dysfunction (defined as a LV ejection fraction <45%) of either ischemic (n = 61, coronary artery disease [CAD] group) or nonischemic (n = 92, IDC group) origin were studied invasively. Besides routine catheterization data, RV volumes and ejection fractions were obtained angiographically. Reference data were collected in a control group of healthy subjects. RV dysfunction was defined as a RV ejection fraction <35% and ventricular concordance as a <10% difference between RV and LV ejection fraction. The LV/RV end-diastolic volume ratio was calculated to assess the relative dilatation of the ventricular chambers. Hemodynamic and angiographic data were compared in the 2 groups by univariate and multivariate logistic regression analysis. RESULTS: Patients with IDC and CAD had comparable LV ejection fractions (29% +/- 3% vs 31% +/- 8%, P not significant) and mean pulmonary pressures (27 +/- 12 mm Hg vs 26 +/- 11 mm Hg, P not significant); the LV/RV end-diastolic volume ratio was identical in the 2 groups (1.26 +/- 0.4 vs 1.24 +/- 0.4, P not significant). RV ejection fraction was significantly lower in IDC compared with CAD (33% +/- 10 % vs 46% +/- 11%, P <.0001), with a prevalence of RV dysfunction in the IDC group of 65% compared with 16% in the CAD group (P <.0001); similarly, the prevalence of ejection fraction concordance was 74% versus 33%, respectively (P <.0001). At multivariate analysis, a low RV ejection fraction was a powerful independent predictor of IDC compared with CAD (odds ratio 0.91, 95% confidence interval 0.87-0.94, P <.0001). RV dysfunction had a positive predictive value of 75% and a negative predictive value of 78% for the diagnosis of IDC; for ventricular concordance, these values were 81% and 69%, respectively. The correlation between mean pulmonary artery pressure and RV ejection fraction was weaker in the IDC group compared with the CAD group (R(2) = 0.032, P =.047 and R(2) = 0.172,P <.0001, respectively). CONCLUSION: In the presence of LV dysfunction, a reduced RV ejection fraction is a powerful marker for IDC compared with CAD, independent of age, pulmonary hypertension, LV function, and ventricular dimensions. These findings support the concept that IDC is frequently characterized by a biventricular involvement and that the presence of RV dysfunction represents a distinguishing feature of this disease.

Adult↗

Impact of tricuspid regurgitation on long-term survival.

OBJECTIVES: The goal of this study was to examine mortality associated with tricuspid regurgitation (TR) after controlling for left ventricular ejection fraction (LVEF), right ventricular (RV) dilation and dysfunction, and pulmonary artery systolic pressure (PASP). BACKGROUND: Tricuspid regurgitation is a frequent echocardiographic finding; however, the association with prognosis is unclear. METHODS: We retrospectively identified 5,223 patients (age 66.5 +/- 12.8 years; predominantly male) undergoing echocardiography at one of three Veterans Affairs Medical Center laboratories over a period of four years. Follow-up data were available for four years (mean 498 +/- 402 days). Kaplan-Meier and proportional hazards methods were used to compare differences in survival among TR grades. RESULTS: Mortality increased with increasing severity of TR. The one-year survival was 91.7% with no TR, 90.3% with mild TR, 78.9% with moderate TR, and 63.9% with severe TR. Moderate or greater TR was associated with increased mortality regardless of PASP (hazard ratio [HR] 1.31, 95% confidence interval [CI] 1.16 to 1.49 for PASP >40 mm Hg; HR 1.32, 95% CI 1.05 to 1.62 for PASP < or =40 mm Hg) and LVEF (HR 1.49, 95% CI 1.34 to 1.66 for EF <50%; HR 1.54, 95% CI 1.37 to 1.71 for EF > or =50%). When adjusted for age, LVEF, inferior vena cava size, and RV size and function, survival was worse for patients with moderate (HR 1.17, 95% CI 0.96 to 1.42) and severe TR (HR 1.31, 95% CI 1.05 to 1.66) than for those with no TR. CONCLUSIONS: We conclude that increasing TR severity is associated with worse survival in men regardless of LVEF or pulmonary artery pressure. Severe TR is associated with a poor prognosis, independent of age, biventricular systolic function, RV size, and dilation of the inferior vena cava.

Aged↗

Experimental study of right ventricular assist in acute right ventricular failing.

The efficacy of right atrial-pulmonary artery (RA-PA) bypass during acute right ventricular failure (RVF) produced by pulmonary artery constriction in dogs was examined in this study Control group (n = 7) was supported with conventional volume loading and inotropic therapy. In the experimental animals (n = 8), RA-PA bypass was initiated 5 min, after the onset of severe RVF. Three control animals died from refractory ventricular fibrillation within one hour of RVF. No animals in the experimental group died within two hours of RA-PA bypass, but the histological study of the lungs in these animals demonstrated peribronchial, perivascular and intraalveolar hemorrhage. Light microscopic and electron microscopic examination of the myocardial specimens of the right ventricular free wall displayed the myocardial structures and ultrastructures were maintained effectively with RA-PA bypass while irreversible myocardial injuries occurred in the control animals after two hours of RVF with conventional therapy. During the 2 hours of RA-PA bypass, the hemodynamic indices were also maintained better when compared to the control animals. It may be concluded, a roller pump right ventricular assist device effectively unloads the acute failing right ventricle, maintains systemic cardiac output, and significantly reverses the myocardial ischemia during right ventricular failure, but RA-PA bypass may induce pulmonary hypertension due to increased pulmonary vascular resistance secondary to pulmonary edema and interstitial hemorrhage.

Animals↗

Clinical relevance of retrograde inferior vena cava or hepatic vein opacification during contrast-enhanced CT.

OBJECTIVE: The purpose of this investigation was to explore the clinical relevance of retrograde inferior vena cava or hepatic vein opacification during contrast-enhanced CT. MATERIALS AND METHODS: We retrospectively identified 127 patients who underwent contemporaneous contrast-enhanced CT of the chest or abdomen and echocardiography. On CT, the presence of retrograde inferior vena cava or hepatic vein opacification and the rate of IV contrast injection (> 3 mL/sec, high; < or = 3 mL/sec, low) were recorded. On echocardiography, the presence of tricuspid regurgitation, pulmonary hypertension, or right ventricular systolic dysfunction was recorded. RESULTS: Retrograde inferior vena cava or hepatic vein opacification was more common in studies performed with a high rather than a low contrast injection rate (28/56 vs 6/71 patients, respectively; p < 0.01). This finding was 31% sensitive (5/16) and 98% specific (54/55) for right-sided heart disease at low contrast injection rates, and 81% sensitive (17/21) and 69% specific (24/35) at high injection rates. Multivariate logistic regression models showed that high injection rate, tricuspid regurgitation, pulmonary hypertension, and right ventricular systolic dysfunction were independent predictors of retrograde inferior vena cava or hepatic vein opacification (p < 0.05 for each). CONCLUSION: Retrograde opacification of the inferior vena cava or hepatic veins on CT is a specific but insensitive sign of right-sided heart disease at low contrast injection rates, but the usefulness of this classic sign decreases with high injection rates. This realization is important because many centers increasingly use high-injection-rate CT.

Adolescent↗

Association between right ventricular function and perfusion abnormalities in hemodynamically stable patients with acute pulmonary embolism.

BACKGROUND/OBJECTIVES: Patients presenting with acute pulmonary embolism associated with hemodynamic compromise exhibit right ventricular enlargement and dysfunction on transthoracic echocardiogram. However, the degree of echocardiographic abnormalities among hemodynamically stable patients without preexisting cardiopulmonary disease during the acute stage of pulmonary embolism, and following treatment, is unknown. Therefore, this study was designed to assess the extent of right ventricular abnormalities detected on transthoracic echocardiogram in patients following acute pulmonary embolism and during treatment with anticoagulation or vena caval interruption. The extent of pulmonary vascular obstruction and complication rate on follow-up were also assessed. DESIGN/INTERVENTIONS: Sixty-four consecutive hemodynamically stable patients without preexisting known cardiopulmonary disorder presenting with acute pulmonary embolism and undergoing treatment with anticoagulation or inferior vena caval interruption were studied. All subjects underwent a two-dimensional transthoracic echocardiogram within 24 h of diagnosis. The degree of perfusion abnormality on lung scan was quantified. Twenty-six patients underwent follow-up echocardiogram and lung scan at 6 weeks. The echocardiographic findings were compared with those obtained from a group of normal control subjects matched for gender and age. RESULTS: Although the mean right ventricular end-diastolic areas did not differ (21.9+/-5.2 cm2 vs 20.1+/-2.9 cm2 for control subjects; p=not significant), the right ventricular end-systolic area was larger in comparison to our series of control subjects (14.6+/-5.1 cm2 vs 11.7+/-2.0 cm2; p=0.025). Fractional right ventricular area change was reduced in the patient group compared with the control subjects (34.3+/-9.0% vs 41.3+/-7.0%; p=0.003). The extent of right ventricular end-systolic area enlargement and decrease in fractional area change did not correlate with the degree of pulmonary vascular obstruction. Patients who were restudied at 6 weeks showed minimal improvement in echocardiographic findings, despite almost complete resolution of perfusion defects on lung scan. CONCLUSIONS: The extent of right ventricular dysfunction in hemodynamically stable, previously normal patients with acute pulmonary embolism does not reflect the extent of the perfusion abnormalities. Further, right ventricular enlargement and systolic dysfunction are present and persistent despite treatment with heparin and warfarin therapy or vena caval interruption.

Acute Disease↗

Management of myocardial infarction shock: current status.

Major advances have occurred over the last two decades in the management of myocardial infarction shock, increasing the overall in-hospital survival rate from approximately 15% to more than 50% at the present time with aggressive methods of interventional cardiology. The widespread use of intravenous thrombolytic therapy during the early hours of myocardial infarction has resulted in a decreasing incidence of shock with first myocardial infarctions. Three mechanisms bring about cardiogenic shock: (1) extensive aggregate systolic left ventricular dysfunction, (2) extensive right ventricular infarction, and (3) mechanical defects of the left and/or right ventricles attendant to ischemic dysfunction or rupture. To permit survival in cardiogenic shock, even with maximally aggressive therapy, diagnostic evaluation must be carried out concurrently with clinical stabilization of the patient. IABC is the mainstay for supporting the patient in shock during further efforts at diagnosis and definitive therapy. Definitive therapy for cardiogenic shock may include percutaneous transluminal coronary angioplasty, emergent bypass surgery, or repair of a mechanical defect. This report details the current status of knowledge with respect to pathogenesis, recognition, and definitive treatment of myocardial infarction shock.

Cardiac Catheterization↗

Coronary microvascular reactivity after ischemic cold storage and reperfusion.

BACKGROUND: The coronary microvascular system is important in the regulation of myocardial perfusion. Preservation of microvascular reactivity may be important in those hearts undergoing ischemic storage for transplantation. Endothelium-dependent relaxation of right and left ventricular coronary microvessels was examined in a canine model of heart transplantation. METHODS: Canine hearts underwent topical cooling, antegrade arrest, and 3 hours' ischemic cold storage at 4 degrees C using crystalloid cardioplegia (n = 8), Roe's solution (n = 8), and University of Wisconsin solution (n = 8). All groups underwent 1 hour of reperfusion in an isolated heart circuit. Noninstrumented canines were used as controls (n = 10). Coronary microvessels (100 to 200 microns in diameter) were examined in a pressurized, no-flow state with video microscopic imaging and electronic dimension analysis. RESULTS: Endothelium-dependent microvascular relaxation was examined in response to the receptor-dependent acetylcholine and to the receptor-independent calcium ionophore. Microvascular relaxation to acetylcholine in Roe's solution and University of Wisconsin solution was preserved (p = not significant) in the left ventricle, whereas crystalloid cardioplegia failed to preserve (p < 0.05) microvascular relaxation when compared with the control groups. Right ventricular microvascular relaxation was always (p < 0.05) less than left ventricular microvascular relaxation. Endothelium-independent microvascular relaxation to nitroprusside was similar to that in controls, indicating normal smooth muscle responsiveness. CONCLUSIONS: Ischemic cold storage with Roe's solution and University of Wisconsin solution preserved microvascular relaxation in the left ventricle, whereas crystalloid cardioplegia failed to preserve microvascular relaxation. Right ventricular microvascular relaxation was impaired in all groups, but University of Wisconsin solution was superior to crystalloid cardioplegia and Roe's solution. This suggests that microvascular dysfunction may be partially responsible for right ventricular dysfunction after heart transplantation. The choice of preservation solution may be important in preservation of the microvascular endothelium.

Animals↗

Assessment of the ventricular function of patients with advanced chronic obstructive pulmonary disease by using magnetic resonance imaging.

OBJECTIVE: To assess the mechanisms that may be involved in the evolution of right and left ventricular dysfunction in patients with chronic obstructive pulmonary disease (COPD). METHODS: Magnetic resonance imaging was used in 11 control patients (group C) and 27 patients with COPD, who were divided into 2 groups, COPDc and COPDs, according to the presence or absence of right ventricular dysfunction, respectively. Doppler echocardiography was used for assessing the degree of pulmonary hypertension. RESULTS: The right ventricular diameter was similar in the 3 groups, COPDs, COPDc and C (29+/-8 mm; 31+/-7 mm; and 30+/-6 mm; respectively, P=NS). Right ventricular hypertrophy was observed only in the COPD groups (8+/-2 mm and 9+/-3 mm vs 5+/-1 mm; P<0.01). The percentage of systolic right ventricular lateral wall thickening (%RVLWT) in the 3 groups were as follows: 86+/-82% vs 41+/-35% vs 86+/-89%; P=NS). Different left ventricular ejection fractions were observed in the groups as follows: 69+/-9% vs 55+/-16% vs 76+/-6%; P < 0.01. A positive and significant linear correlation was observed between the left ventricular (LV) diastolic diameter and the LV systolic volume (r = 0.72; P < 0.01). No correlation was observed between the pulmonary volumes, arterial blood gas analysis, and ventricular function. CONCLUSION: No correlation was observed between the severity of pulmonary function and the degree of ventricular function impairment. Whether a preserved %RVLWT means the possibility of reversibility of right ventricular function remains to be elucidated. However, the presence of the phenomenon of ventricular interdependence was confirmed.

Aged↗

Arrhythmogenic right ventricular dysplasia presenting with ventricular tachycardia in a father and son.

A father and his son presented with ventricular tachycardia of left bundle-branch block configuration, two years apart. The patients had no clinical signs of right or left ventricular dysfunction. The diagnosis of arrhythmogenic right ventricular dysplasia was based on right ventricular angiographic and radionuclide findings. Microscopic sections obtained at surgery for the ventricular tachycardia in the father revealed abnormal infiltration of fat and focal fibrosis in the right ventricular myocardium, confirming the diagnosis. The importance of thorough evaluation of right and left ventricular function and structure in patients with ventricular tachycardia of right ventricular origin is emphasized. Currently available diagnostic techniques and management are presented.

Adolescent↗

Right ventricular restoration during pulmonary valve implantation in adults with congenital heart disease.

OBJECTIVE: Pulmonary regurgitation may cause progressive right ventricular dilatation and dysfunction in adult patients previously repaired for right ventricular outflow tract obstruction (RVOTO), and who require subsequent valve implantation for relief of these symptoms. Right ventricular recovery after pulmonary valve implantation (PVI) may be closely linked to the functional importance of the structural presence of an aneurysm or akinetic segment in the RVOT area. To test this concept, the impact of the right ventricular restoration with a new surgical ventriculoplasty technique is evaluated following pulmonary valve implantation in patients with severe pulmonary regurgitation and right ventricular dilatation. METHODS: Sixteen patients with severe pulmonary valve regurgitation (PVR) and right ventricular dilatation with RVOT aneurysm underwent right ventricular remodelling since January 2002. Each underwent preoperative evaluation by Doppler echocardiography, magnetic resonance imaging (MRI), and right ventricular myocardial acceleration during isovolumic contraction (IVC). The surgical procedure included pulmonary valve implantation and RVOT restoration achieved by removal of the aneurysm tissue, coupled with a ventriculoplasty to reduce volume, accomplished by creating a satisfactory RVOT dimension by placing with 2-0 Gortex suture to allow acceptance of a 26 Hegar dilator to avoid restriction. Thirteen associate surgical procedures were added in nine patients. RESULTS: All patients survived the operative procedure and underwent a 16-month follow-up interval. A reduction of cardio thoracic index and a clinical improvement occurred in each patient. Significant reduction of RVEDV and RVESV and increased right ventricular ejection fraction was observed, and IVC changed from 0.7+/-0.5 m/s2 to 1.3+/-0.6 m/s2 in the 13 patients that underwent MRI and IVC during the preoperative control interval and 6 months after the procedure. CONCLUSIONS: This preliminary database implies that the right ventricular restoration is a simple and effective procedure, and introduces a structural component that should be added during pulmonary valve implantation in patients with severe right ventricular dilatation and underlying aneurysm or akinesia of the right ventricular outflow tract.

Adult↗

Radionuclide studies in postoperative evaluation of the Fontan procedure.

Radionuclide studies were performed on 12 patients who had had a Fontan operation for cyanotic congenital heart disease, six of whom had undergone a prior palliative Glenn procedure. The patients without prior Glenn anastomoses were studied by radionuclide first-pass angiocardiography, using a right antecubital vein injection of 99mTc pertechnetate. The patients with Glenn anastomoses required two injections, one by femoral vein to study the Fontan procedure, using bolus injection of 99mTc pertechnetate or microspheres, and the second by right antecubital vein to study the Glenn anastomosis and right lung, using a bolus of microspheres. Gated cardiac blood-pool scintigraphy was used to measure right atrial and left ventricular ejection fraction in three patients. In nine patients, contrast angiography confirmed that these techniques allowed recognition of residual right-to-left shunts, right atrial stasis, right atrial outflow obstructions, left ventricular dysfunction, and right lung arteriovenous fistulas. Noninvasive radionuclide methods seem to be dependable in the postoperative evaluation of patients after the Fontan procedure. First-pass angiocardiography is most helpful in evaluating the dynamics and distribution of blood flow, especially the right atrial output, and gated blood-pool scintigraphy offers a better evaluation of right atrial and left ventricular contraction, so both supply complementary information.

Adolescent↗