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The Effect of Different Coherence-Based Beamforming Techniques on the Accuracy of High Frame Rate Speckle Tracking Echocardiography

机译:不同的基于相干性的波束形成技术对高帧频斑点跟踪超声心动图准确性的影响

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Although high frame rate (HFR) imaging could be a promising technique for a better assessment of myocardial function, the higher temporal resolution comes with decreased image quality, which affects the accuracy of speckle tracking echocardiography (STE). Since several adaptive beamforming algorithms have already been proposed to improve image quality, the aim of this study was to assess to what extent this impacts the accuracy of HFR STE. Simulated datasets were used to compare 7 coherence-based beamforming schemes. The STE results were similar for different beamformers with root mean square errors between 0.36 and 0.50%. Next, in vivo apical 4-chamber views were recorded from 3 healthy volunteers using the same beamforming schemes. The related strain curves were similar for the different beamforming methods and the end-systolic values showed no significant difference among beamformers and volunteers. In conclusion, our findings suggest that the choice of beamforming method does not significantly affect HFR STE in a clinical setting.
机译:尽管高帧频(HFR)成像可能是用于更好地评估心肌功能的一种有前途的技术,但更高的时间分辨率会降低图像质量,这会影响斑点跟踪超声心动图(STE)的准确性。由于已经提出了几种自适应波束成形算法来提高图像质量,因此本研究的目的是评估在何种程度上影响HFR STE的准确性。模拟的数据集用于比较7种基于相干性的波束成形方案。对于不同的波束形成器,STE结果相似,均方根误差在0.36%至0.50%之间。接下来,使用相同的波束形成方案记录了3名健康志愿者的体内心尖4腔视图。对于不同的波束形成方法,相关的应变曲线相似,并且波束形成者和志愿者之间的末期收缩值没有显着差异。总之,我们的发现表明,在临床环境中,波束成形方法的选择不会显着影响HFR STE。

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