Suppr超能文献

腱索力分布决定收缩期二尖瓣叶形态及功能性二尖瓣反流的严重程度。

Chordal force distribution determines systolic mitral leaflet configuration and severity of functional mitral regurgitation.

作者信息

Nielsen S L, Nygaard H, Fontaine A A, Hasenkam J M, He S, Andersen N T, Yoganathan A P

机构信息

Department of Cardiothoracic and Vascular Surgery, and Institute of Experimental Clinical Research, Skejby Sygehus, Aarhus University Hospital, Denmark.

出版信息

J Am Coll Cardiol. 1999 Mar;33(3):843-53. doi: 10.1016/s0735-1097(98)00627-5.

Abstract

OBJECTIVES

The purpose of this study was to investigate the impact of the chordae tendineae force distribution on systolic mitral leaflet geometry and mitral valve competence in vitro.

BACKGROUND

Functional mitral regurgitation is caused by changes in several elements of the valve apparatus. Interaction among these have to comply with the chordal force distribution defined by the chordal coapting forces (F(c)) created by the transmitral pressure difference, which close the leaflets and the chordal tethering forces (FT) pulling the leaflets apart.

METHODS

Porcine mitral valves (n = 5) were mounted in a left ventricular model where leading edge chordal forces measured by dedicated miniature force transducers were controlled by changing left ventricular pressure and papillary muscle position. Chordae geometry and occlusional leaflet area (OLA) needed to cover the leaflet orifice for a given leaflet configuration were determined by two-dimensional echo and reconstructed three-dimensionally. Occlusional leaflet area was used as expression for incomplete leaflet coaptation. Regurgitant fraction (RF) was measured with an electromagnetic flowmeter.

RESULTS

Mixed procedure statistics revealed a linear correlation between the sum of the chordal net forces, sigma[Fc - FT]S, and OLA with regression coefficient (minimum - maximum) beta = -115 to -65 [mm2/N]; p < 0.001 and RF (beta = -0.06 to -0.01 [%/N]; p < 0.001). Increasing FT by papillary muscle malalignment restricted leaflet mobility, resulting in a tented leaflet configuration due to an apical and posterior shift of the coaptation line. Anterior leaflet coapting forces increased due to mitral leaflet remodeling, which generated a nonuniform regurgitant orifice area.

CONCLUSIONS

Altered chordal force distribution caused functional mitral regurgitation based on tented leaflet configuration as observed clinically.

摘要

目的

本研究旨在体外研究腱索力分布对收缩期二尖瓣叶几何形状及二尖瓣功能的影响。

背景

功能性二尖瓣反流由瓣膜装置中多个元件的变化引起。这些元件之间的相互作用必须符合由跨二尖瓣压差产生的使瓣叶闭合的腱索贴合力(F(c))和使瓣叶分开的腱索牵拉力(FT)所定义的腱索力分布。

方法

将猪二尖瓣(n = 5)安装在左心室模型中,通过改变左心室压力和乳头肌位置,使用专用微型力传感器测量前缘腱索力。通过二维超声心动图确定腱索几何形状以及给定瓣叶构型覆盖瓣叶孔所需的闭合瓣叶面积(OLA),并进行三维重建。闭合瓣叶面积用作瓣叶不完全贴合的指标。用电磁流量计测量反流分数(RF)。

结果

混合程序统计显示腱索净力总和sigma[Fc - FT]S与OLA之间呈线性相关,回归系数(最小值 - 最大值)β = -115至-65 [mm2/N];p < 0.001,与RF也呈线性相关(β = -0.06至-0.01 [%/N];p < 0.001)。乳头肌排列不齐导致FT增加,限制了瓣叶活动度,由于贴合线的顶端和后部移位,导致瓣叶呈帐篷状构型。二尖瓣叶重塑使前叶贴合力增加,产生不均匀的反流口面积。

结论

如临床观察到的,腱索力分布改变基于瓣叶帐篷状构型导致功能性二尖瓣反流。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验