Key result
A balloon-anulus ratio of 1.25 during pulmonary balloon valvuloplasty yielded the best fractional fall in haemodynamic parameters reflecting stenosis severity compared to other ratios.
Why the study?
What is the ideal balloon-anulus ratio (BAR) to optimize haemodynamic outcomes in patients undergoing pulmonary balloon valvuloplasty for congenital valvular pulmonic stenosis?
Observational (n=71)
What is the ideal balloon-anulus ratio (BAR) to optimize haemodynamic outcomes in patients undergoing pulmonary balloon valvuloplasty for congenital valvular pulmonic stenosis?
A balloon-anulus ratio of 1.25 provides the optimal haemodynamic improvement for pulmonary balloon valvuloplasty in congenital pulmonic stenosis.
May guide balloon sizing in pulmonary valvuloplasty; observational data leave open the need for randomized confirmation.
Pulmonary balloon valvuloplasty (PBV) is an effective method to treat congenital valvular pulmonic stenosis, but the ideal balloon-anulus ratio (BAR) for this procedure remains unclear. We studied 71 procedures where BARs of 1.0-1.5 were used, since it has been shown that a ratio of < 1.0 is less effective and that of > 1.5 may produce more complications. A curvilinear relation was found between BAR and the fractional fall in haemodynamic parameters reflecting stenosis severity, both immediately after dilatation and at follow-up. Best results were observed with a BAR of 1.25, with progressive worsening on either side of this ratio. The relationship remained significant in multiple regression analysis involving age, sex and baseline haemodynamic variables. The data show that a BAR of 1.25 is probably the ideal ratio for PBV.
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Narang et al. (2008) conducted an observational in Congenital valvular pulmonic stenosis (n=71). Balloon-anulus ratio (BAR) of 1.25 vs. Other balloon-anulus ratios between 1.0 and 1.5 was evaluated on Fractional fall in haemodynamic parameters reflecting stenosis severity. A balloon-anulus ratio of 1.25 during pulmonary balloon valvuloplasty yielded the best fractional fall in haemodynamic parameters reflecting stenosis severity compared to other ratios.
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