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二尖瓣瓣叶的形态学变异。

Morphologic variability of the mitral valve leaflets.

机构信息

HEART-Heart Embryology and Anatomy Research Team, Jagiellonian University Medical College, Krakow, Poland; 2nd Department of Cardiology and Cardiovascular Interventions, University Hospital, Institute of Cardiology, Jagiellonian University Medical College, Krakow, Poland.

HEART-Heart Embryology and Anatomy Research Team, Jagiellonian University Medical College, Krakow, Poland; Department of Anatomy, Jagiellonian University Medical College, Krakow, Poland.

出版信息

J Thorac Cardiovasc Surg. 2017 Dec;154(6):1927-1935. doi: 10.1016/j.jtcvs.2017.07.067. Epub 2017 Aug 16.

Abstract

OBJECTIVES

The rapid development of surgical and less-invasive percutaneous mitral valve repair procedures has increased interest in mitral valve anatomy. We characterize the morphologic variability of the mitral valve leaflets and provide the size of their particular parts.

METHODS

We studied 200 autopsied human hearts from white individuals without any valvar diseases. We measured the intercommissural and aorto-mural diameters of the mitral annulus and identified the leaflets and their scallops. We also noted the base and the height of the inferoseptal commissure, superolateral commissure, anterior mitral leaflet, and posterior mitral leaflet with their scallops.

RESULTS

Variations in posterior mitral leaflet were found in 55 specimens (27.5%), and variations in anterior mitral leaflet were found in 5 hearts (2.5%). The most common variations included valves with 1 accessory scallop between P3 and inferoseptal commissure (7%), accessory scallop between P1 and superolateral commissure (4%), connections of P2 and P3 scallops (4%), connections of P1 and P2 scallops (3%), and accessory scallop in anterior mitral leaflet (2.5%).

CONCLUSIONS

In all cases, the mitral valve is built by 2 main leaflets with possible variants in scallops (29.5%). The variations are largely associated with posterior mitral leaflet and are mostly related to the presence of accessory scallop. Anatomically, the anterior mitral leaflet is not divided into scallops, but could have an accessory scallop (2.5%). Understanding the anatomy of the mitral valve leaflets helps with the planning and performing of mitral valve repair procedures. Variations in scallops may affect repair procedures, but unfortunately cannot be predicted by any of the annular sizes.

摘要

目的

外科手术和微创经皮二尖瓣修复技术的快速发展提高了人们对二尖瓣解剖结构的兴趣。我们描述了二尖瓣瓣叶的形态变异性,并提供了其各个部分的大小。

方法

我们研究了 200 例来自无瓣膜疾病的白人个体的尸检心脏。我们测量了二尖瓣环的瓣环间和瓣环-瓣下距离,并确定了瓣叶及其瓣叶扇区。我们还记录了下间隔后交界、上外侧交界、前二尖瓣叶和后二尖瓣叶及其瓣叶扇区的基部和高度。

结果

55 个标本(27.5%)存在后尖瓣叶的变异,5 个心脏(2.5%)存在前尖瓣叶的变异。最常见的变异包括 P3 和下间隔后交界之间有 1 个副瓣叶扇区(7%)、P1 和上外侧交界之间有副瓣叶扇区(4%)、P2 和 P3 瓣叶扇区之间有连接(4%)、P1 和 P2 瓣叶扇区之间有连接(3%)以及前二尖瓣叶有副瓣叶扇区(2.5%)。

结论

在所有情况下,二尖瓣由 2 个主瓣叶组成,瓣叶扇区可能存在变异(29.5%)。这些变异主要与后尖瓣叶有关,主要与副瓣叶扇区的存在有关。解剖上,前尖瓣叶不分为瓣叶扇区,但可能有副瓣叶扇区(2.5%)。了解二尖瓣瓣叶的解剖结构有助于二尖瓣修复术的规划和实施。瓣叶扇区的变异可能会影响修复术,但不幸的是,任何瓣环大小都无法预测这些变异。

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