Division of Cardiovascular and Thoracic Surgery, Keenan Research Centre in the Li Ka Shing Knowledge Institute, St Michael's Hospital, University of Toronto, Toronto, Ontario, Canada.
J Thorac Cardiovasc Surg. 2011 Apr;141(4):1037-43. doi: 10.1016/j.jtcvs.2010.05.039. Epub 2010 Jun 29.
Many surgeons consider the tricuspid valve to be a second-class structure. Our objective was to determine the normal anatomy and dynamic characteristics of the tricuspid valve apparatus in vivo and to discern whether this would aid the design of a tricuspid valve annuloplasty ring model.
Sixteen sonomicrometry crystals were placed around the tricuspid annulus, at the bases and tips of the papillary muscles, the free edges of the leaflets, and the right ventricular apex during cardiopulmonary bypass in 5 anesthetized York Hampshire pigs. Animals were studied after weaning of cardiopulmonary bypass on 10 cardiac cycles of normal hemodynamics.
Sonomicrometry array localizations demonstrate the multiplanar shape of the tricuspid annulus. The tricuspid annulus reaches its maximum area (97.9 ± 25.4 mm(2)) at the end of diastole and its minimum area (77.3 ± 22.5 mm(2)) at the end of systole, and increases again in early diastole. Papillary muscles shorten by 0.8 to 1.5 mm (11.2%) in systole, and chordae tendineae straighten by 0.8 to 1.7 mm (11.4%) in systole.
The shape of the tricuspid annulus is a multiplanar 3-dimensional one with its highest point at the anteroseptal commissure and its lowest point at the posteroseptal commissure, and the anteroposterior commissure is in a middle plane in between. The tricuspid annulus area reaches its maximum during diastole and its minimum during systole. The papillary muscles contract by the same amount of chordal straightening. The optimal tricuspid annuloplasty ring may be a multiplanar 3-dimensional one that mimics the normal tricuspid annulus.
许多外科医生认为三尖瓣是次要结构。我们的目的是确定三尖瓣装置在体内的正常解剖结构和动态特征,并辨别这是否有助于设计三尖瓣瓣环成形环模型。
在 5 只麻醉的约克郡汉普郡猪心肺转流期间,在三尖瓣环、乳头肌基部和尖端、瓣叶游离缘以及右心室心尖处放置了 16 个声纳微测计晶体。在心肺转流脱机后,在 10 个正常血流动力学周期的情况下对动物进行研究。
声纳微测计阵列定位显示了三尖瓣环的多平面形状。三尖瓣环在舒张末期达到最大面积(97.9 ± 25.4mm²),在收缩末期达到最小面积(77.3 ± 22.5mm²),并在早期舒张期再次增加。乳头肌在收缩期缩短 0.8 至 1.5mm(11.2%),腱索在收缩期伸直 0.8 至 1.7mm(11.4%)。
三尖瓣环的形状是一个多平面的 3 维形状,最高点在前间隔交界处,最低点在后间隔交界处,前-后交界处在中间平面。三尖瓣环面积在舒张期达到最大值,在收缩期达到最小值。乳头肌的收缩与腱索的伸直量相同。理想的三尖瓣瓣环成形环可能是一个模仿正常三尖瓣环的多平面 3 维环。