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Aortic stenosis.

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F H ELLIS, J W KIRKLIN. 1955. Aortic stenosis.. https://doi.org/10.1016/s0039-6109(16)34643-6

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Prevalence of congenital cardiovascular malformations among relatives of infants with hypoplastic left heart, coarctation of the aorta, and d-transposition of the great arteries.

Cardiovascular malformations (CVM) are the most common birth defects and carry significant and lifelong personal and societal costs. Research into genetic and environmental risk factors is therefore critical in identifying clues to causation and prevention. The purpose of this study was to investigate patterns of familial aggregation in CVM, specifically among infants with left-sided obstructive heart defects. We ascertained families of probands with hypoplastic left heart (HLH: N = 38), coarctation of the aorta (CoA: N = 46), and d-transposition of the great arteries (dTGA: N = 22). First degree relatives had clinical examinations and echocardiograms; all other relatives had detailed reviews of medical records. A total of 2,694 relatives were included in the study: 379 1st degree, 986 2nd degree, and 1,329 3rd degree. Mean nuclear family size and sibship size were similar among the groups. CVM were detected more frequently in 1st degree relatives of probands with HLH (19.3%) or CoA (9.4%) than among dTGA families (2.7%). The proportions of affected 2nd degree relatives were similar across groups (</=1%). In 3rd degree relatives, CVM was detected in 1.8% of the HLH families compared to 1.2% in CoA and 0.4% in dTGA families. The predominant types of CVM among relatives of HLH and CoA probands were left-sided obstructive lesions, in 72% (21 of 29) and 67% (25 of 37) of the affected relatives, respectively. Familial aggregation of these types of CVM is therefore confirmed in this study, potentially facilitating the search for specific genetic and other risk factors in recurrent CVM.

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Composite aortoplasty for recurrent coarctation after neonatal repair in Williams syndrome.

Supravalvar aortic stenosis is the most frequent operation required for Williams syndrome; however, coarctation repair is more common in patients requiring surgery in the first few months of life. We report on a child with Williams syndrome in whom extensive reoperation was required 5 months after neonatal aortic coarctation repair. A composite left subclavian artery flap and allograft patch aortoplasty of the aortic arch and descending aorta was performed through a left thoracotomy using cardiopulmonary bypass and circulatory arrest. Detailed anatomic evaluation of the aortic arch and descending aorta is recommended before initial coarctation repair in neonates with Williams syndrome.

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Surgical management of aortopulmonary window and associated lesions.

BACKGROUND: Aortopulmonary window is a rare congenital heart defect commonly associated with other cardiac anomalies. Although single institutional experience is low, several surgical techniques have been reported. The purpose of this study is to describe our approach to the management of aortopulmonary window and its associated lesions. METHODS: Between February 1996 and November 2002, 13 patients underwent repair of aortopulmonary window. The age range went from 4 days to 5.5 months (mean 42 +/- 52 days), with 9 patients younger than 1 month old. The weight range was from 1.9 to 6.7 kg (mean 3.5 +/- 1.2 kg). Concomitant cardiac anomalies were present in 11 patients. The major additional anomalies were interruption of aortic arch in 4 patients and tracheal stenosis in 1 patient. Initial diagnoses were made using two-dimensional echocardiography only. RESULTS: There was one postoperative death. In general, patients with aortopulmonary window and additional major defects had a prolonged intensive care unit and hospital stay when compared with the other patients. Follow-up time ranged from 2 months to 6.8 years (mean of 2.5 +/- 2.2 years). There were no reoperations and no late deaths. Transcatheter balloon dilatation of the repaired aortic arch was required in 1 patient and of the right pulmonary artery in another. All other patients had good flow to both pulmonary arteries. No residual shunts were detected at the aortopulmonary window site, and pulmonary pressures were normal. CONCLUSIONS: Aortopulmonary window may be effectively diagnosed with echocardiography. Early surgical treatment (neonatal period, if possible) is safe and associated with the best long-term results, even in the presence of other cardiac anomalies. Complete separation and reconstruction of both aorta and pulmonary arteries under direct vision may prevent recurrence and distortion of adjacent structures.

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