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首页> 外文期刊>Ultrasound in Medicine and Biology >A dual-chamber, thick-walled cardiac phantom for use in cardiac motion and deformation imaging by ultrasound.
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A dual-chamber, thick-walled cardiac phantom for use in cardiac motion and deformation imaging by ultrasound.

机译:双腔厚壁心脏体模,用于通过超声进行的心脏运动和变形成像。

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Determination of the mechanical properties of the myocardium is crucial for cardiac diagnosis. Cardiac strain and strain rate imaging may enable such quantification. To further develop these methodologies, an experimental setup allowing the recording of ultrasonic deformation data in a reproducible manner is necessary. Such setup with biventricular polyvinyl alcohol heart phantoms has been built. To test this setup, segmental longitudinal, radial and circumferential displacement, velocity, strain and strain rate in the phantoms were measured using a clinical ultrasound scanner and commercially available deformation imaging algorithms (based on both tissue velocity imaging and speckle tracking). The model deformation was close to that observed in the human left ventricular wall and was highly reproducible (e.g., the average peak longitudinal strain for the mid- and apical phantom segments equals -15.32 +/- 0.53% and -19 +/- 6% for the ventricle wall). The experimental setup is a valuable source of data for the development of algorithms for deformation estimation.
机译:心肌机械性能的确定对于心脏诊断至关重要。心脏应变和应变率成像可以实现这种量化。为了进一步开发这些方法,必须进行允许以可重复方式记录超声变形数据的实验装置。已经建立了带有双心室聚乙烯醇心脏体模的这种装置。为了测试这种设置,使用临床超声扫描仪和可商购的变形成像算法(基于组织速度成像和斑点跟踪)测量了人体模型中的纵向,径向和圆周位移,速度,应变和应变率。模型变形与在人的左心室壁中观察到的变形接近,并且可以高度重现(例如,中部和顶端幻影段的平均峰值纵向应变分别为-15.32 +/- 0.53%和-19 +/- 6%用于心室壁)。实验设置是开发变形估计算法的宝贵数据来源。

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