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A new technique for improved spatial resolution in high frame rate color Doppler imaging

机译:高帧率彩色多普勒成像中提高空间分辨率的新技术

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In ultrasound Color Doppler imaging, a grayscale B-mode image and a Doppler image representing velocities are overlaid to produce a color coded image of e.g. blood flow or myocardial movement. Normally, the B-mode and Doppler images are acquired at the same rate, resulting in trade offs between B-mode image quality and Doppler frame rate. In this work, we present a new scan sequencing technique for Color Doppler imaging, where the B-mode image is acquired at a lower frame rate than the Doppler scan. This is achieved by splitting the B-mode image in subscans which are acquired in between multiple scans of the entire Doppler image. In this way, a full width B-mode image with high spatial resolution is kept while the temporal resolution of the velocity information is increased. In this paper, application of the new technique in Tissue Velocity Imaging (TVI), is discussed, showing the potential for improving lateral beam density or temporal resolution in Color Doppler imaging.
机译:在超声彩色多普勒成像中,将代表速度的灰度B模式图像和多普勒图像叠加以产生例如彩色图像的彩色编码图像。血流或心肌运动。通常,以相同的速率获取B模式图像和多普勒图像,导致在B模式图像质量和多普勒帧速率之间进行权衡。在这项工作中,我们提出了一种用于彩色多普勒成像的新扫描排序技术,其中以比多普勒扫描低的帧频获取B模式图像。这是通过将B模式图像分成子扫描来实现的,这些子扫描是在整个多普勒图像的多次扫描之间获取的。这样,在提高速度信息的时间分辨率的同时,保持了具有高空间分辨率的全宽B模式图像。在本文中,讨论了该新技术在组织速度成像(TVI)中的应用,显示了在彩色多普勒成像中改善横向束密度或时间分辨率的潜力。

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