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Continuous delay estimation with polynomial splines

机译:多项式样条的连续延迟估计

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摘要

Delay estimation is used in ultrasonic imaging to estimate blood flow, determine phase aberration corrections, and to calculate elastographic images. Several algorithms have been developed to determine these delays. The accuracy of these methods depends in differing ways on noise, bandwidth, and delay range. In most cases relevant to delay estimation in ultrasonics, a subsample estimate of the delay is required. We introduce two new delay algorithms that use cubic polynomial splines to continuously represent the delay. These algorithms are compared to conventional delay estimators, such as normalized cross correlation and autocorrelation, and to another spline-based method. We present simulations that compare the algorithms' performance for varying amounts of noise, delay, and bandwidth. The proposed algorithms have better performance, in terms of bias and jitter, in a realistic ultrasonic imaging environment. The computational requirements of the new algorithms also are considered
机译:延迟估计用于超声成像中,以估计血流量,确定相差校正并计算弹性成像图像。已经开发了几种算法来确定这些延迟。这些方法的准确性以不同的方式取决于噪声,带宽和延迟范围。在大多数情况下,与超声中的延迟估计有关,需要对延迟进行子采样估计。我们介绍了两个新的延迟算法,它们使用三次多项式样条来连续表示延迟。将这些算法与常规延迟估计器(例如归一化互相关和自相关)进行比较,并与另一种基于样条的方法进行比较。我们提供的仿真可以比较算法在不同数量的噪声,延迟和带宽下的性能。在实际的超声成像环境中,所提出的算法在偏置和抖动方面具有更好的性能。还考虑了新算法的计算要求

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