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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Determination of an optimal image frame interval for frame-to-frame ultrasound image motion tracking
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Determination of an optimal image frame interval for frame-to-frame ultrasound image motion tracking

机译:确定用于帧间超声图像运动跟踪的最佳图像帧间隔

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摘要

Several important clinical applications depend on accurate ultrasound image frame-to-frame motion estimation. Assuming that there is a degree of finite noise in the image frames and that speckle partially decorrelates between successive frames during freehand scanning, we hypothesize that an optimal inter-frame interval (step size) must exist that provides the smallest relative dimensional error over a set of accumulated motion estimates. Smaller frame increments suffer from less decorrelation-related inaccuracy but present greater potential for cumulative error because more estimates are used over any specific dimensional interval. We studied these effects using a combination of theoretical modeling, numerical simulation, and experiments. Components of diagonal motion due to the limitations of manual transducer movement were considered as the cause of decorrelation. The results were examined for four different angles of the diagonal motion and two different signal-to-noise ratio (SNR) values. These indicate that an optimal step size does exist and that this is dependent on many variables including SNR, angle of the diagonal motion, transducer geometry, lens focusing parameters, transducer operating frequency, and beamforming parameters. In practical experiments, we found that the optimal step size generally required using every available image frame rather than 'skipping' any intermediate frames.
机译:几个重要的临床应用取决于准确的超声图像逐帧运动估计。假设在图像帧中存在一定程度的有限噪声,并且在徒手扫描期间散斑在连续帧之间部分去相关,我们假设必须存在一个最佳帧间间隔(步长),该间隔在一个集合上提供最小的相对尺寸误差运动估计值。较小的帧增量受较少的与去相关相关的不准确性的影响,但由于在任何特定的维区间使用了更多的估计,因此存在更大的潜在累积误差。我们结合了理论建模,数值模拟和实验研究了这些影响。由于手动换能器运动的限制而导致的对角线运动分量被认为是去相关的原因。检查了对角线运动的四个不同角度和两个不同的信噪比(SNR)值的结果。这些表明确实存在最佳步长,并且这取决于许多变量,包括SNR,对角运动的角度,换能器几何形状,透镜聚焦参数,换能器工作频率和波束成形参数。在实际实验中,我们发现通常需要使用每个可用图像帧而不是“跳过”任何中间帧来获得最佳步长。

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