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Congenital Heart Surgery Nomenclature and Database Project: double outlet right ventricle.

Double outlet right ventricle (DORV) is a type of ventriculoarterial connection in which both great vessels arise entirely or predominantly from the right ventricle. Although the presence of aortic-mitral discontinuity and bilateral coni are important descriptors, they should not serve as absolute prerequisites for the diagnosis of DORV. The morphology of DORV is encompassed by a careful description of the ventricular septal defect (VSD) with its relationship to the semilunar valves, the great artery relationships to each other, the coronary artery anatomy, the presence or absence of pulmonary outflow tract obstruction (POTO) and aortic outflow tract obstruction (AOTO), the tricuspid-pulmonary annular distance, and the presence or absence of associated cardiac lesions. The preferred surgical treatment involves the connection of the left ventricle to the systemic circulation by an intraventricular tunnel repair connecting the VSD to the systemic semilunar valve. This ideal surgical therapy is not always possible due to the presence of confounding anatomical barriers. A multitude of alternative surgical procedures has been devised to accommodate these more complex situations. A framework for the development of the DORV module for a pediatric cardiac surgical database is proposed.

Databases, Factual↗

Intraventricular tunnel repair of double outlet right ventricle.

Double outlet right ventricle (DORV) may be divided into subsets according to the position and commitment of the ventricular septal defect (VSD) to the great arteries. In DORV with subaortic VSD, an intraventricular tunnel repair is the recommended operation. The current hospital mortality is 5% with an actuarial survival of 83% at 15 years. DORV with doubly committed VSD should also be repaired with an intraventricular tunnel, and the surgical results are similar to those for DORV and subaortic VSD. In DORV with subpulmonary VSD, an intraventricular tunnel repair is advisable when the distance from the tricuspid to the pulmonary valve exceeds the distance from tricuspid to aortic valve. Otherwise, a spiral intraventricular tunnel or an arterial switch procedure should be considered. In DORV with doubly committed VSD, the results of surgical treatment have been less good, and alternative forms of surgical treatment require further evaluation. The surgical treatment of DORV with pulmonary stenosis and the surgical details of the intraventricular tunnel repair are discussed.

Double Outlet Right Ventricle↗

[Surgical alternatives in the treatment of double-outlet right ventricle].

Double-outlet right ventricle (DORV) is a type of ventriculo-arterial connection, in which both great arteries are connected to the morphologically right ventricle in at least 50% of their diameter. The relation of the great arteries with the ventricular septal defect (VSD) and the pulmonary stenosis, are important anatomical aspects in the election of the surgical technique. In this study we describe four patients with DORV, in whom different surgical techniques were used according to the specific anatomy of each case. Two patients had subaortic restrictive VSD, with subpulmonary stenosis in one of them. In the other two patients the VSD was subpulmonary with the aorta anterior and to the left, in one of these existed moreover a severe mixed pulmonary stenosis. It is concluded, that with different surgical techniques according to the specific anatomy of each patient, good results can be obtained in the surgical treatment of these complex congenital malformations.

Child↗

Biventricular repair for double-outlet right ventricle.

Double-outlet right ventricle (DORV) is a heart malformation that describes an anomalous ventriculoarterial connection which can be associated with considerable variant of associated lesions. When this malformation is present with two ventricles, biventricular repair is feasible in the vast majority of cases. This report describes the surgical techniques for biventricular repair in all forms of encountered DORV, as well as the surgical strategy employed at our institution. Copyright 2000 by W.B. Saunders Company

Journal Article↗

Unique variant of Taussig-Bing heart: double-outlet right ventricle with double ventricular septal defects and double overriding of great arteries.

A cyanotic, tachypneic newborn was diagnosed to have double-outlet right ventricle of the Taussig-Bing type. Cardiac failure did not respond to medical treatment or surgical palliation. Postmortem examination revealed two ventricular septal defects (VSDs), one a malalignment VSD in the membranous septum and adjacent tissue and the other in the anterosuperior part of the muscular septum. The D-malposed aortic root emerged mainly from the right ventricle, with aortic-mitral continuity. The larger posterolateral pulmonary root arose almost entirely from the right ventricle, confluent with the muscular VSD, and unrelated to the mitral valve. Its right ventricular aspect was obstructed by hypertrophied infundibulum. This unique malformation of the heart functioned as a double-outlet right ventricle of Taussig-Bing type. In addition, however, the malformation had elements of tetralogy of Fallot because of the malaligned VSD and hypertrophied conal musculature (although pulmonary flow was excessive), and also of complete transposition of the great arteries because of the arrangements of the two VSDs, which favored aortic flow from right ventricle and pulmonary blood flow from the left ventricle. Thus, a single heart presented similarities to three anatomic and functional entities.

Double Outlet Right Ventricle↗

Successful repair of coexisting double-outlet right ventricle and two-chambered right ventricle.

Double-outlet right ventricle (DORV) and two-chambered right ventricle (TCRV) are both uncommon cardiac malformations; even more rare is the coexistence of these lesions. This communication describes the first two patients in whom this unusual combination of anomalies was recognized during life and successfully repaired with the aid of extracorporeal circulation. Late results in both patients are excellent.

Child, Preschool↗

Angiocardiographic diagnosis of ventricular septal defect localization in double outlet right ventricle.

Children with double outlet right ventricle, aged 3 months to 23.5 years, were examined to assess the possibility of angiocardiographic diagnosis of defect localization. It was found angiocardiography allows satisfactory localization of the defect in question. To be able localize the defect, it is critical to determine the interaction between the defect and the conus septum, and the origin of large arteries. To establish the diagnosis of ventricular septal defect, right and left ventriculography in standard and axial projections must be performed.

Abnormalities, Multiple↗

Biventricular repair of double outlet right ventricle with noncommitted ventricular septal defect.

Double outlet right ventricle (DORV) with noncommitted ventricular septal defect (VSD) (DORVncVSD) represents the most extreme form of DORV, raising challenging surgical difficulties for biventricular repair. The considerable distance between the VSD and the aorta is primarily because of the very abnormal location of the aorta. The definition of DORVncVSD includes: (1) a VSD distant (greater than aortic diameter) from both arterial valves; (2) both great vessels arising fully from the right ventricle; and (3) a double conus. Double outlet right ventricle with noncommitted ventricular septal defect is a primitive right ventricle, as seen during embryologic development, characterized by the presence of the entire conotruncus from the right ventricle. One surgical technique for repair of DORVncVSD is rerouting of the VSD to the aorta by a long intraventricular tunnel. This technique is limited by the presence of conal tricuspid chordae and by the distance between the tricuspid and pulmonary valves, and is associated with an important risk of subaortic obstruction. Rerouting through the pulmonary artery followed by arterial switch seems a more satisfactory surgical solution. When the VSD is distant from the aorta, it is almost always quite close to the pulmonary artery. Rerouting to the pulmonary artery creates a smaller channel, and its application is not limited by the presence of tricuspid chordae or the tricuspid-to-pulmonary valve distance. However, the arterial switch frequently involves relocating complex coronary arteries.

Cardiac Surgical Procedures↗

Straddling mitral valve with hypoplastic right ventricle, crisscross atrioventricular relations, double outlet right ventricle and dextrocardia: morphologic, diagnostic and surgical considerations.

The clinical, surgical and morphologic findings in five cases of a rare form of straddling mitral valve are presented. Three patients were diagnosed by two-dimensional echocardiography, cardiac catheterization and angiocardiography and two had diagnostic confirmation at autopsy. All five cases shared a distinctive and consistent combination of anomalies: 1) dextrocardia; 2) visceroatrial situs solitus, concordant ventricular D-loop and double outlet right ventricle with the aorta positioned to the left of and anterior to the pulmonary artery; 3) hypoplasia of right ventricular inflow (sinus) with tricuspid valve stenosis or hypoplasia; 4) large right ventricular infundibulum (outflow); 5) malalignment conoventricular septal defect; 6) straddling mitral valve with chordal attachments to the left ventricle and right ventricular infundibulum; 7) severe subpulmonary stenosis with well developed pulmonary arteries; and 8) superoinferior ventricles with crisscross atrioventricular (AV) relations. The degree of malalignment between the atrial and ventricular septa was studied quantitatively by measuring the AV septal angle projected on the frontal plane. The AV septal angle in the two postmortem cases was 150 degrees, reflecting marked malalignment of the ventricles relative to the atria. This AV malalignment appears to play an important role in the morphogenesis of straddling mitral valve. As judged by a companion study of seven postmortem cases, the more common form of straddling mitral valve with a hypertrophied and enlarged right ventricular sinus had less severe ventricular malposition than did the five rare study cases with hypoplastic right ventricular sinus. A competent mitral valve, low pulmonary vascular resistance and low left ventricular end-diastolic pressure were found at cardiac catheterization in the three living patients who underwent a modified Fontan procedure and are doing well 2.2 to 5.8 years postoperatively.

Adult↗

Early prenatal detection of double outlet right ventricle by echocardiography.

A double outlet right ventricle with subpulmonary ventricular septal defect and right sided hypoplastic aorta was diagnosed in a 22 week fetus of a mother with diabetes mellitus. Elective termination of pregnancy was carried out and the echocardiographic findings were confirmed. Early prenatal detection of congenital heart disease may allow elective termination of pregnancy when the fetus has severe defects.

Adult↗

Double outlet right ventricle in a calf.

Double outlet right ventricle, a rare congenital heart anomaly of either animals or man, was diagnosed in a three day old Brangus heifer. The clinical course was brief, consisting of terminal recumbency, dyspnea and cyanosis. Upon necropsy, the heart was enlarged as a result of marked dilatation of the right atrium and the right ventricle. The aorta arose from the right ventricle while the left ventricle ended blindly near the ventral cusp of the left atrioventricular valve. The wall of the left ventricle was thickened, reducing the ventricular lumen.

Animals↗

Prenatal diagnosis of transposition-like double-outlet right ventricle with mitral valve atresia in heterotaxy syndrome.

We present a case of heterotaxy syndrome with right isomerism detected in a twin fetus, with the sonographic findings that established this diagnosis. At 24 weeks' menstrual age, ultrasound detected anomalies in the heart suggestive of heterotaxy syndrome. Intrauterine fetal echocardiography demonstrated that the heart of the affected twin was located on the left side with a normal cardiac axis. The right ventricle was much larger than the left ventricle. The appearance of the mitral valve was dysplastic with restricted motion. The ascending aorta exited from the right ventricle, anterior to, right to, and parallel to the smaller pulmonary trunk, which also arose from the right ventricle. Double-outlet right ventricle (DORV) was clearly demonstrated. Cesarean section was performed at 38 weeks' menstrual age. Both twins were healthy and survived. Postnatal echocardiography and MRI confirmed the prenatal findings. At the age of 4 months, the affected infant had no evidence of cardiac decompensation. This report shows that conventional ultrasound can be used to detect heterotaxy syndrome and that intrauterine fetal echocardiography can delineate the cardiac complex in heterotaxy syndrome. Postnatal surgery with complex Fontan procedures was planned for the affected twin.

Abnormalities, Multiple↗

Double-outlet right ventricle: Pathology and angiocardiography.

Double-outlet right ventricle is but one form of abnormal ventriculoarterial connection. The definition that more than half of each great artery originates above the morphologically right ventricle is arbitrary. As pointed out by Lecompte, those features that should be defined in hearts with the ventriculoarterial connection of double-outlet right ventricle (and indeed other forms of abnormal ventriculoarterial connection) include the nature of the infundibular septum, ventriculoinfundibular fold, trabeculoseptomargin-alis, attachments of infundibular septum to anterior or posterior limb of trabeculoseptomargin-alis, the size and position of the ventricular septal defect, the spatial relation of great artery(s) to the ventricular septal defect, the spatial relationship between the great, and the distance between the tricuspid and pulmonary valves and the semilunar valves. Copyright 2000 by W.B. Saunders Company

Journal Article↗

Sudden death after repair of double-outlet right ventricle.

The outlook for patients with double-outlet right ventricle has improved since the development of corrective operations. Late arrhythmic deaths after successful procedures have been reported; however, the magnitude remains unknown. This study was undertaken to identify the magnitude of late sudden death and the significant factors associated with it. From 1965 through 1985, 118 patients underwent corrective operation for double-outlet right ventricle; of these, 23 died in the hospital and six were lost to follow-up. The 89 remaining patients (52 male and 37 female) made up the study population. Their mean age (+/- SD) was 10.3 +/- 7.8 years at the time of repair. The mean duration of follow-up was 82 months. Of the 22 late deaths, 16 (73%) were sudden. Eight (50%) of the sudden deaths occurred within 1 year of operation. Cox proportional hazards multivariate analysis revealed the following significant risk factors for late sudden death: older age at the time of operation, perioperative or postoperative ventricular tachyarrhythmias, and third-degree atrioventricular block. Factors not associated with late sudden death included year of operation, sex, type and number of associated cardiac anomalies, preoperative functional class, previous palliative procedures, surgical technique, perioperative or postoperative single premature ventricular contractions, and postoperative left or right bundle branch block with or without fascicular block. We conclude that the incidence of late sudden death after successful surgical repair of double-outlet right ventricle is very high. Complete corrective operation at an early age and aggressive diagnosis and treatment of arrhythmias and conduction defects after operation are warranted.

Adolescent↗

Double outlet right ventricle: clinical spectrum and prognosis.

Patients with double outlet right ventricle can be separated into four distinct groups. In the largest (Group III), patients have a subaortic ventricular septal defect and pulmonary stenosis and clinically resemble patients with tetralogy of Fallot. In the next largest group (Group I), patients have a subpulmonry ventricular septal defect and no pulmonary stenosis and clinically resemble children with D-transposition of the great arteries and a ventricular septal defect. These patients have a high rate of coarctation of the aorta leading to early congestive heart failure, and their overall prognosis is poor. In the next largest group (Group II), patients have a subaortic ventricular septal defect and no pulmonary stenosis. Their presentation is similar to that of children with a large ventricular septal defect and pulmonary hypertension. In the smallest group (Group IV), the ventricular septal defect is uncommitted. Survivors in this group also clinically resemble children with a large ventricular septal defect and pulmonary hypertension. When present, coarctation of the aorta and severe mitral valve abnormalities greatly influence the prognosis in double outlet right ventricle. Although the prevalence of associated cardiac abnormalities is large, asplenia, polysplenia, chromosomal abnormalities and other congenital noncardiac abnormalities occur in only 12.5% of patients with double outlet right ventricle.

Aortic Coarctation↗

[Fontan-type procedure for an adult case of double-outlet right ventricle (S, D, L)].

The double-outlet right ventricle with L-malposition (DORV (S, D, L)) is one of the rare congenital heart diseases. Intracardiac rerouting with a internal conduit has been indicated in principle to it as the radical operation. DORV (S, D, L) is often combined with the pulmonic stenosis (PS), and Rastelli's operation is indicated to the case in which release of PS is difficult. We report a case of DORV (S, D, L) combined with PS and the hypoplastic right ventricle which is treated by the Fontan-type procedure. The patient was a 35-year-old female who had undergone Glenn's operation at 10 years of age under the diagnosis of transposition of the great arteries. Recently she complained of aggravation of the cyanosis and dyspnea on exertion. After thorough examinations, the disease was diagnosed as DORV (S, D, L) with doubly committed VSD which was combined with severe PS, hypoplastic right ventricle (29% of normal) and left-sided juxtaposition of atrial appendages. The development of her distal pulmonary arteries was estimated well enough (PA-index 448 mm2/m2). We judged that intracardiac rerouting with an internal conduit could not be applied due to her severe pulmonic stenosis, and that Rastelli's operation as the biventricular repair was also impossible because of her hypoplastic right ventricle. Thus we adopted the Fontan-type procedure with a new septation in the right atrium, namely oblique partition, and attained a good result. To our knowledge, this case is the fourth case report in Japan of DORV (S, D, L) treated with the Fontan-type procedure.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗