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    • 3. 发明授权
    • Filter bank for ultrasound image enhancement
    • 滤波器组用于超声图像增强
    • US08170318B2
    • 2012-05-01
    • US12479647
    • 2009-06-05
    • Bimba S. RaoIsmayil M. GuracarKutay F. Ustuner
    • Bimba S. RaoIsmayil M. GuracarKutay F. Ustuner
    • G06K9/00
    • G06T5/002G06T5/20G06T2207/10132G06T2207/20192G06T2207/30004
    • Image enhancement is provided in ultrasound imaging. A filter bank is used to process the data. The data may be processed in parallel. Each filter outputs data representing a same location, but with a kernel path (e.g., line, curved line, area, curved surface, or volume) different than for the other filters. For example, three filters filter along respective orthogonal planes. The filters may use preselected or data independent paths. The output of the filter bank is determined from the outputs of the filters in the bank, such as by selecting the maximum value. This bank-based filtering may enhance data associated with anatomical surfaces or contours and/or may reduce speckle. The parallel operation of the filters may allow for more rapid processing and/or processing a greater amount of data as compared to using a single filter.
    • 超声成像提供图像增强。 滤波器组用于处理数据。 数据可以并行处理。 每个滤波器输​​出表示相同位置的数据,但是具有不同于其他滤波器的内核路径(例如,线,曲线,面积,曲面或体积)。 例如,三个滤波器沿相应的正交平面滤波。 滤波器可以使用预选或数据独立的路径。 滤波器组的输出由存储体中的滤波器的输出确定,例如通过选择最大值。 这种基于银行的过滤可以增强与解剖学表面或轮廓相关联的数据和/或可以减少斑点。 与使用单个滤波器相比,滤波器的并行操作可以允许更快速的处理和/或处理更大量的数据。
    • 4. 发明申请
    • Filter Bank for Ultrasound Image Enhancement
    • 用于超声图像增强的滤波器组
    • US20100310143A1
    • 2010-12-09
    • US12479647
    • 2009-06-05
    • Bimba S. RaoIsmayil M. GuracarKutay F. Ustuner
    • Bimba S. RaoIsmayil M. GuracarKutay F. Ustuner
    • G06K9/00
    • G06T5/002G06T5/20G06T2207/10132G06T2207/20192G06T2207/30004
    • Image enhancement is provided in ultrasound imaging. A filter bank is used to process the data. The data may be processed in parallel. Each filter outputs data representing a same location, but with a kernel path (e.g., line, curved line, area, curved surface, or volume) different than for the other filters. For example, three filters filter along respective orthogonal planes. The filters may use preselected or data independent paths. The output of the filter bank is determined from the outputs of the filters in the bank, such as by selecting the maximum value. This bank-based filtering may enhance data associated with anatomical surfaces or contours and/or may reduce speckle. The parallel operation of the filters may allow for more rapid processing and/or processing a greater amount of data as compared to using a single filter.
    • 超声成像提供图像增强。 滤波器组用于处理数据。 数据可以并行处理。 每个滤波器输​​出表示相同位置的数据,但是具有不同于其他滤波器的内核路径(例如,线,曲线,面积,曲面或体积)。 例如,三个滤波器沿相应的正交平面滤波。 滤波器可以使用预选或数据独立的路径。 滤波器组的输出由存储体中的滤波器的输出确定,例如通过选择最大值。 这种基于银行的过滤可以增强与解剖学表面或轮廓相关联的数据和/或可以减少斑点。 与使用单个滤波器相比,滤波器的并行操作可以允许更快速的处理和/或处理更大量的数据。
    • 10. 发明授权
    • Adaptive grating lobe suppression in ultrasound imaging
    • 超声成像中的自适应光栅波瓣抑制
    • US07207942B2
    • 2007-04-24
    • US10627290
    • 2003-07-25
    • Kutay F. UstunerAlbert Gee
    • Kutay F. UstunerAlbert Gee
    • A61B8/00
    • A61B8/5269G01S7/52047G10K11/346
    • Adaptive grating lobe suppression is provided. Received ultrasound data is measured, compared or otherwise processed to determine the presence of grating lobe energy. A further process is then altered as a function of the level of grating lobe energy. In one embodiment, the adaptive grating lobe suppression is implemented in the receive beamformer. Data representing a virtual element is formed as a normalized sum of data from adjacent sparse elements. The data from the adjacent elements is correlated to determine the presence of grating lobe energy as a function of the amount of shift associated with the peak correlation. A phase shift is applied to the data representing the virtual element where sufficient grating lobe energy is determined. In another embodiment, an amount of grating lobe energy is measured by comparing data from prior to a filter with filtered data. The filter is selected to isolate main lobe energy from grating lobe energy. A gain is modulated as a function of any detected grating lobe energy or filtered or unfiltered data is selected for further processing.
    • 提供自适应栅瓣抑制。 接收的超声数据被测量,比较或以其他方式处理以确定光栅叶片能量的存在。 然后,另外的过程作为光栅能量的函数而改变。 在一个实施例中,在接收波束形成器中实现自适应光栅波瓣抑制。 表示虚拟元素的数据形成为来自相邻稀疏元素的归一化数据和。 来自相邻元件的数据相关,以确定作为与峰值相关性相关的偏移量的函数的光栅波瓣能量的存在。 对表示确定了足够的光栅能量的虚拟元件的数据应用相移。 在另一个实施例中,通过比较来自滤波器之前的滤波数据的滤波数据来测量光栅叶片能量的量。 选择滤波器以将主波瓣能量与光栅波能分离。 根据任何检测到的光栅波长能量调制增益,或者选择滤波或未滤波的数据进行进一步处理。