Right ventricular papillary muscle approximation as a novel technique of valve repair for functional tricuspid regurgitation in an ex vivo porcine model.
basic_science · Level V
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- Record sourced from PubMed, PMID 22341187.
- Also identified by DOI 10.1016/j.jtcvs.2012.01.028.
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Abstract
Annuloplasty for functional tricuspid regurgitation may sometimes be ineffective because of chamber dilation and valve tethering. This study compared a novel technique, right ventricle (RV)-papillary muscle approximation, with annuloplasty in experimentally-produced tricuspid regurgitation. RVs of isolated porcine hearts (n = 10) were statically pressurized, which led to RV dilation and central tricuspid regurgitation. Regurgitant flow was measured with a saline solution-filled column. The head of the anterior papillary muscle was approximated to 4 points on the ventricular septum. Next, a prosthetic ring was implanted, and then RV-papillary muscle approximation was combined. Tricuspid annular dimension, RV geometry, and tricuspid valve tethering were analyzed with 3-dimensional echocardiography. Tricuspid regurgitation (2270 ± 186 mL/min) was reduced by RV-papillary muscle approximation alone (214 ± 45 mL/min; P < .05) more than by annuloplasty alone (724 ± 166 mL/min; P < .05). Combined RV-papillary muscle approximation and annuloplasty resulted in the least regurgitation (80 ± 39 mL/min). RV-papillary muscle approximation reduced tricuspid septolateral diameter (25%; P < .05), and annular area (23%; P < .05), as did annuloplasty. RV-papillary muscle approximation also reduced RV sphericity index (33%; P < .05) and tricuspid tethering height (54%; P < .05), whereas annuloplasty did not. Direction of RV-papillary muscle approximation did not independently affect outcomes. This ex vivo study suggests that RV-papillary muscle approximation potentially repairs tricuspid regurgitation better than annuloplasty by improving ventricular sphericity and valve tethering as well as annular dimension.
Medical subject headings
- Heart Ventricles
- Papillary Muscles
- Tricuspid Valve Insufficiency