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    • 4. 发明授权
    • Method and apparatus for adaptive frame-rate adjustment in ultrasound imaging system
    • 超声成像系统中自适应帧率调整的方法和装置
    • US06346079B1
    • 2002-02-12
    • US09577849
    • 2000-05-25
    • Bruno Hans HaiderKenneth Wayne Rigby
    • Bruno Hans HaiderKenneth Wayne Rigby
    • A61B0800
    • G01S7/52034A61B8/06A61B8/0833G01S7/52066G01S15/8979
    • A method and an apparatus for dynamically optimizing the frame rate as a function of an estimate of the target motion. First, the target motion is estimated, and then this estimate is used to control the number of firings per frame and/or the degree of frame-averaging. Preferably, the motion of the target is estimated by measuring pixel brightness variations on a frame-to-frame, region-to-region or line-to-line basis. Then the degree of frame-averaging is adjusted as a function of the motion estimate. Alternatively, target motion can be estimated by calculating the Doppler signal. Other imaging parameters, such as number of transmit firings per frame, size of the transmit aperture, and transmit excitation frequency, can be adjusted as a function of estimated target motion.
    • 一种用于根据目标运动的估计来动态优化帧速率的方法和装置。 首先,估计目标运动,然后使用该估计来控制每帧的发射次数和/或帧平均的程度。 优选地,通过在帧到帧,区域到区域或线对线的基础上测量像素亮度变化来估计目标的运动。 然后根据运动估计值调整帧平均的程度。 或者,可以通过计算多普勒信号来估计目标运动。 作为估计的目标运动的函数,可以调整其他成像参数,例如每帧的发射发射次数,发射孔径的大小和发射激励频率。
    • 6. 发明授权
    • Methods and systems for improved correlation of shear displacement waveforms
    • 改进剪切位移波形相关性的方法和系统
    • US08494791B2
    • 2013-07-23
    • US12970676
    • 2010-12-16
    • Christopher Robert HazardKenneth Wayne Rigby
    • Christopher Robert HazardKenneth Wayne Rigby
    • G01F17/00A61B8/00G06K9/00G01N9/24
    • G01S7/52022A61B8/469A61B8/485A61B2090/378G01S7/52036G01S15/8977
    • Methods and systems for improving correlation of shear displacement waveforms are presented. The method includes delivering one or more reference pulses to a plurality of target regions to detect corresponding initial positions. Further, a plurality of pushing pulse segments are delivered to one or more pushing locations, where one or more parameters corresponding to the plurality of pushing pulse segments are adapted for generating a shear displacement waveform with a desired wave shape. Additionally, one or more tracking pulses may be delivered to the plurality of target regions for detecting displacements of at least a subset of the target regions as a function of time. Particularly, the displacements are determined as time samples of the shear displacement waveform. Subsequently, a shift between the shear displacement waveform detected at least two different target regions in the subset of the plurality of target regions is detected.
    • 提出了改善剪切位移波形相关性的方法和系统。 该方法包括将一个或多个参考脉冲递送到多个目标区域以检测对应的初始位置。 此外,多个推压脉冲段被传送到一个或多个按压位置,其中对应于多个推压脉冲段的一个或多个参数适于产生具有期望波形的剪切位移波形。 另外,可以将一个或多个跟踪脉冲传送到多个目标区域,以便根据时间来检测目标区域的至少一个子集的位移。 特别地,位移被确定为剪切位移波形的时间样本。 随后,检测到检测到多个目标区域的子集中的至少两个不同目标区域的剪切位移波形之间的偏移。
    • 7. 发明申请
    • METHODS AND SYSTEMS FOR IMPROVED CORRELATION OF SHEAR DISPLACEMENT WAVEFORMS
    • 改进剪切波形相关的方法和系统
    • US20120158323A1
    • 2012-06-21
    • US12970676
    • 2010-12-16
    • Christopher Robert HazardKenneth Wayne Rigby
    • Christopher Robert HazardKenneth Wayne Rigby
    • G01N29/00G06F19/00
    • G01S7/52022A61B8/469A61B8/485A61B2090/378G01S7/52036G01S15/8977
    • Methods and systems for improving correlation of shear displacement waveforms are presented. The method includes delivering one or more reference pulses to a plurality of target regions to detect corresponding initial positions. Further, a plurality of pushing pulse segments are delivered to one or more pushing locations, where one or more parameters corresponding to the plurality of pushing pulse segments are adapted for generating a shear displacement waveform with a desired wave shape. Additionally, one or more tracking pulses may be delivered to the plurality of target regions for detecting displacements of at least a subset of the target regions as a function of time. Particularly, the displacements are determined as time samples of the shear displacement waveform. Subsequently, a shift between the shear displacement waveform detected at least two different target regions in the subset of the plurality of target regions is detected.
    • 提出了改善剪切位移波形相关性的方法和系统。 该方法包括将一个或多个参考脉冲递送到多个目标区域以检测对应的初始位置。 此外,多个推压脉冲段被传送到一个或多个按压位置,其中对应于多个推压脉冲段的一个或多个参数适于产生具有期望波形的剪切位移波形。 另外,可以将一个或多个跟踪脉冲传送到多个目标区域,以便根据时间来检测目标区域的至少一个子集的位移。 特别地,位移被确定为剪切位移波形的时间样本。 随后,检测到检测到多个目标区域的子集中的至少两个不同目标区域的剪切位移波形之间的偏移。
    • 10. 发明授权
    • Delta-sigma beamformers with minimal dynamic focusing artifacts
    • Delta-sigma波束形成器具有最小的动态聚焦伪影
    • US06366227B1
    • 2002-04-02
    • US09535798
    • 2000-03-28
    • Kenneth Wayne Rigby
    • Kenneth Wayne Rigby
    • H03M300
    • G01S7/5208G01S7/52046G01S7/52047G10K11/346
    • Techniques for minimizing artifacts resulting from ultrasound time-delay focusing while using a single-bit delta-sigma analog-to-digital converter for each beamformer channel include correcting the dynamic focus artifact in a delta-sigma beamformer by always inserting a pair of samples having a zero sum when a delay is required. Using other techniques, the dynamic focus artifact is not eliminated on each beamforming channel, but rather is eliminated in the beamsummed, reconstructed signal. In one technique, samples having a zero sum are respectively inserted on a pair of symmetric channels such that the net effect on the beamsummed signal is zero. In another technique, a +1 sample is inserted when a focus time delay is required, and either a pre-calculated or counted number of channels having a focus time delay at each time sample is subtracted from the beamsum.
    • 当对每个波束形成器通道使用单位delta-sigma模数转换器时,用于最小化由超声时间延迟聚焦引起的伪影的技术包括:通过总是插入一对样本,来校正δ-西格玛波束形成器中的动态聚焦伪影, 需要延迟时的零和。 使用其他技术,在每个波束形成信道上不消除动态聚焦伪影,而是在波束重建信号中消除。 在一种技术中,具有零和的样本分别插入一对对称信道上,使得对波束信号的净效应为零。 在另一种技术中,当需要聚焦时间延迟时,插入+1样本,并且从束中减去每个时间样本具有焦点时间延迟的预先计算或计数的通道数。