Baumgartner H, Khan S, DeRobertis M, Czer L, Maurer G
Division of Cardiology and Cardiovascular, Surgery Cedars-Sinai Medical Center, Los Angeles, California.
J Am Coll Cardiol. 1992 Feb;19(2):324-32. doi: 10.1016/0735-1097(92)90486-7.
To evaluate the normal range of Doppler-derived velocities and gradients, their relation to direct flow measurements and the importance of prosthetic valve design on the relation between Doppler and catheter-derived gradients, five sizes of normal St. Jude bileaflet, Medtronic-Hall tilting disc, Starr-Edwards caged ball and Hancock bioprosthetic aortic valves were studied with use of a pulsatile flow model. A strong linear correlation between peak velocity and peak flow, and mean velocity and mean flow, was found in all four valve types (r = 0.96 to 0.99). In small St. Jude and Hancock valves, Doppler velocities and corresponding gradients increased dramatically with increasing flow, resulting in velocities and gradients as high as 4.7 m/s and 89 mm Hg, respectively. The ratio of velocity across the valve to velocity in front of the valve (velocity ratio) was independent of flow in all St. Jude, Medtronic-Hall, Starr-Edwards and Hancock valves when the two lowest flow rates were excluded for Hancock valves. Although Doppler peak and mean gradients correlated well with catheter peak and mean gradients in all four valve types, the actual agreement between the two techniques was acceptable only in Hancock and Medtronic-Hall valves. For St. Jude and Starr-Edwards valves, Doppler gradients significantly and consistently exceeded catheter gradients with differences as great as 44 mm Hg. Thus, Doppler velocities and gradients across normal prosthetic heart valves are highly flow dependent. However, the velocity ratio is independent of flow.(ABSTRACT TRUNCATED AT 250 WORDS)
为了评估多普勒衍生速度和压力阶差的正常范围、它们与直接流量测量的关系以及人工瓣膜设计对多普勒和心导管测量压力阶差之间关系的重要性,我们使用脉动流模型研究了五种尺寸的正常圣犹达双叶瓣、美敦力-霍尔倾斜盘瓣、斯塔尔-爱德华兹笼球瓣和汉考克生物主动脉瓣。在所有四种瓣膜类型中,均发现峰值速度与峰值流量、平均速度与平均流量之间存在很强的线性相关性(r = 0.96至0.99)。在小型圣犹达瓣和汉考克瓣中,随着流量增加,多普勒速度及相应的压力阶差急剧升高,导致速度和压力阶差分别高达4.7 m/s和89 mmHg。对于所有圣犹达瓣、美敦力-霍尔瓣、斯塔尔-爱德华兹瓣和汉考克瓣,当排除汉考克瓣的两个最低流速时,瓣膜处速度与瓣膜前方速度之比(速度比)与流量无关。尽管在所有四种瓣膜类型中,多普勒峰值和平均压力阶差与心导管峰值和平均压力阶差相关性良好,但仅在汉考克瓣和美敦力-霍尔瓣中,这两种技术之间的实际一致性才是可接受的。对于圣犹达瓣和斯塔尔-爱德华兹瓣,多普勒压力阶差显著且持续超过心导管压力阶差,差异高达44 mmHg。因此,正常人工心脏瓣膜的多普勒速度和压力阶差高度依赖于流量。然而,速度比与流量无关。(摘要截短于250字)