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ultraschallsystem for measuring a current using the pulse dopplereffekts with two-dimensional autokorrelationsverarbeitung

机译:使用具有二维自动相关性的脉冲多普勒效应测量电流的ultraschall系统

摘要

A velocity estimation technique is provided for a pulse-echo ultrasonic diagnostic system in which a two dimensional array of samples is acquired from a sample volume. The two dimensions of the array are depth, in which echo signal samples are acquired in response to transmission of a pulse to the sample volume, and pulse time, in which samples are acquired in response to transmission of the pulses in the pulse ensemble to the sample volume. Two autocorrelation calculations are performed on the array, one in the depth dimension and another in the pulse time dimension to yield two correlation functions, the first related to echo frequency and the second related to the Doppler frequency. The two correlation functions are then employed in a Doppler velocity estimation to determine the velocity of motion at the sample volume. The technique utilizes the full information content present in the bandwidth of the received echo signals, thereby overcoming inaccuracies due to depth dependent frequency decline or coherent signal cancellation. Since accuracy is premised upon the number of samples in the array and not its size in a particular dimension, performance can be tailored to favor frame rate or axial resolution while maintaining the accuracy of velocity estimation.
机译:为脉冲回波超声诊断系统提供了一种速度估计技术,在该系统中,从样本量中获取了二维样本阵列。阵列的两个维度是深度和脉冲时间,在深度中,响应于脉冲向样本体积的传输而获取回波信号样本;在脉冲时间中,响应于将脉冲系综中的脉冲传输至采样体而获取样本。样品量。对阵列执行两次自相关计算,一个在深度维度上,另一个在脉冲时间维度上,以产生两个相关函数,第一个与回波频率有关,第二个与多普勒频率有关。然后在多普勒速度估计中使用这两个相关函数来确定样品体积处的运动速度。该技术利用了存在于接收到的回波信号带宽中的全部信息内容,从而克服了由于深度相关的频率下降或相干信号消除带来的不准确性。由于精度取决于阵列中样本的数量,而不是特定尺寸的大小,因此可以在保持速度估算精度的同时调整性能以支持帧速率或轴向分辨率。

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