心脏病学
狭窄
内科学
压力降
血流动力学
多普勒效应
医学
压力梯度
多普勒超声心动图
血压
伯努利原理
主动脉瓣狭窄
放射科
作者
Harminder Gill,Joao Fernandes,Omar Chehab,Bernard Prendergast,Simon Redwood,Amedeo Chiribiri,David Nordsletten,Ronak Rajani,Pablo Lamata
标识
DOI:10.1016/j.tcm.2021.12.003
摘要
Uni-dimensional Doppler echocardiography data provide the mainstay of quantative assessment of aortic stenosis, with the transvalvular pressure drop a key indicator of haemodynamic burden. Sophisticated methods of obtaining velocity data, combined with improved computational analysis, are facilitating increasingly robust and reproducible measurement. Imaging modalities which permit acquisition of three-dimensional blood velocity vector fields enable angle-independent valve interrogation and calculation of enhanced measures of the transvalvular pressure drop. This manuscript clarifies the fundamental principles of physics that underpin the evaluation of aortic stenosis and explores modern techniques that may provide more accurate means to grade aortic stenosis and inform appropriate management.
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