Key result
Surgical repair of AVSD with double orifice LAVV achieves ~87% long-term freedom from reoperation.
Why the study?
A double orifice of the left atrioventricular valve associated with atrioventricular septal defects can significantly complicate surgical repair.
Cohort (n=45)
Surgical repair of AVSD with double orifice LAVV yields good long-term freedom from reoperation, and LAVV hemivalve extension is an effective strategy when the zone of apposition cannot be closed.
Supports repair feasibility in this rare anatomy; leaves open need for multicenter prospective validation.
OBJECTIVES: A double orifice of the left atrioventricular valve (LAVV) associated with atrioventricular septal defects (AVSD) can significantly complicate surgical repair. This study reports our experience of AVSD repair over 3 decades, with special attention to the zone of apposition (ZoA) of the main orifice, and presents a technique of hemivalve pericardial extension in specific situations. METHODS: We performed a retrospective study from 1987 to 2016 on 1067 patients with AVSD of whom 43 (4%) had a double orifice, plus 2 additional patients who required LAVV pericardial enlargement. Median age at repair was 1.3 years. Mean follow-up was 8.2 years (1 month-32 years). RESULTS: Associated abnormalities of the LAVV subvalvular apparatus were found in 7 patients (5 parachute LAVV and 2 absence of LAVV subvalvular apparatus). ZoA was noted in 4 patients (9%): partially closed in 15 (35%) and completely closed in 24 (56%). Four patients required, either at first repair or secondarily, a hemivalve enlargement using a pericardial patch without closure of the ZoA. The early mortality rate was 7% (n = 3), all before 2000. Two patients had unbalanced ventricles and the third had a single papillary muscle. There were no late deaths. Six patients (14%) required 7 reoperations (3 early and 4 late reoperations) for LAVV regurgitation and/or dysfunction, of whom 4 (9%) required mechanical LAVV replacement (all before 2000). Freedom from late LAVV reoperation was 97% at 1 year, 94% at 5 years and 87% at 10, 20 and 30 years. Unbalanced ventricles (P = 0.045), subvalvular abnormalities (P = 0.0037) and grade >2 LAVV postoperative regurgitation (P = 0.017) were identified as risk factors for LAVV reoperations. Freedom from LAVV mechanical valve replacement was 95% at 1 year, 90% at 5 years and 85% at 10, 20 and 30 years. An anomalous LAVV subvalvular apparatus was identified as a risk factor for mechanical valve replacement (P = 0.010). None of the patients who underwent LAVV pericardial extension had significant LAVV regurgitation at the last follow-up examination. CONCLUSIONS: Repair of AVSD and double orifice can be tricky. Preoperative LAVV regurgitation was not identified as an independent predictor of surgical outcome. LAVV hemivalve extension appears to be a useful and effective alternate surgical strategy when the ZoA cannot be closed.
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Pontailler et al. (2019) conducted a cohort in Atrioventricular septal defect with double orifice of the left atrioventricular valve (n=45). Surgical repair including hemivalve pericardial extension was evaluated on Early mortality and freedom from late LAVV reoperation. Surgical repair of atrioventricular septal defect with double orifice resulted in an early mortality rate of 7% and freedom from late LAVV reoperation of 87% at 10, 20, and 30 years.
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