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METHOD AND APPARATUS FOR ADJUSTABLE FREQUENCY SCANNING IN ULTRASOUND IMAGING

机译:超声成像中可调节频率扫描的方法和装置

摘要

Method for scanning a field of view using a scan format, wherein the carrier frequency of the imaging pulse is higher in the center of the field of view than at the edges. The frequency variation can be accomplished on transmit by modulating appropriately delayed programmable initial waveform information samples with a programmable carrier frequency (T-102). This results in a pulse transmitted into the body whose frequency is highest in the center portion of the scan, and is reduced in a controlled fashion as the steering angle is increased in order to mitigate grating lobe artifacts. The technique preserves signal energy because modulation merely translates the signal in frequency substantially without modification of the pulse shape itself. The technique is also useful on receive, wherein demodulation to or near baseband followed by post-beamformation predetection remodulation (R-100) can correct for systematic scan-line-to-scan-line phase variations to ensure scan-line-to-scan-line phase coherency for subsequent coherent processing across scan lines or for coherent image formation (R-26) using the phase and amplitude information from multiple beams.
机译:一种用于使用扫描格式扫描视场的方法,其中,成像脉冲的载波频率在视场的中心高于边缘。可以通过在发射时通过使用可编程载波频率调制适当延迟的可编程初始波形信息样本来实现频率变化(T-102)。这导致脉冲被传送到其频率在扫描的中心部分最高的人体中,并且随着转向角的增加,脉冲以受控的方式减小,以减轻光栅波瓣伪影。该技术保留了信号能量,因为调制仅在实质上不改变脉冲形状本身的情况下将信号转换为频率。该技术在接收时也很有用,其中解调至基带或在基带附近进行解调,然后进行波束形成后的预检测再调制(R-100),可以校正系统的扫描线到扫描线相位变化,以确保扫描线到扫描-行相位相干性,用于跨扫描线进行后续相干处理或使用来自多个光束的相位和幅度信息进行相干图像形成(R-26)。

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