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Angle-Independent Myocardial Elastography - Theoretical Analysis and Clinical Validation

机译:角度无角心肌弹性造影 - 理论分析和临床验证

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Several methods have been introduced in the past few years to quantify left-ventricular strain in order to detect myocardial ischemia and infarction. Myocardial Elastography is one of these methods, which is based on ultrasound Radio-Frequency (RF) signal processing at high frame rates for the highest precision and resolution of strain estimation. Myocardial elastography estimates displacement and strain during the natural contraction of the myocardium using cross-correlation techniques. We have previously shown that imaging of the myocardial strain at high precision allows the correct assessment of the contractility of the cardiac muscle and thus measurement of the extent of ischemia or infarct. In this paper, for the first time in echocardiography, we show how angle-independent techniques can be used to estimate and image the mechanics of normal and pathological myocardia, both in simulations and in vivo. First, the fundamental limits of 2D normal and principal strain component estimation are determined using an ultrasound image formation model and a 2D short-axis view of a 3D left-ventricular, finite-element model, in normal and ischemic configurations. Two-dimensional (I.e., lateral and axial) cumulative displacement and strain components were iteratively estimated and imaged using 1D cross-correlation and recorrelation techniques in a 2D search. Validation of these elastographic findings in one normal human subject was performed. Principal strains were also imaged for the characterization of normal myocardium. In conclusion, the feasibility of angle-independent, 2D myocardial elastography technique was shown through the calculation of the in-plane principal strains, which was proven essential in the reliable depiction of strains independent of the beam-tissue angle or the type of sonographic view used.
机译:过去几年已经引入了几种方法,以定量左心室菌株以检测心肌缺血和梗塞。心肌弹性显影是其中一种方法之一,其基于高帧速率的超声射频(RF)信号处理,以获得应变估计的最高精度和分辨率。心肌弹性成像利用互相关技术估计在心肌自然收缩过程中的位移和应变。我们之前已经表明,高精度的心肌菌株的成像可以正确评估心肌的收缩性,从而测量缺血或梗塞程度。本文首次在超声心动图中,我们展示了角度无关的技术如何用于估计和图像模拟和体内正常和病理心肌的机制。首先,使用超声图像形成模型和3D左心室有限元模型的2D正常和主应变成分估计的基本限制和3D左心室,有限元模型,正常和缺血配置。在2D搜索中使用1D互相关和再振者技术迭代地估计和成像二维(即横向和轴向)累积位移和应变分量。验证在一个正常人体受试者中进行这些弹性素调查结果。对于正常心肌的表征,也会成像主菌株。总之,通过计算面内主菌株显示角度无关的2D心肌弹性摄影技术的可行性,这在独立于梁组织角度或超声图视图的类型的菌株的可靠描述中被证明是必要的用过的。

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