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    • 2. 发明申请
    • Hologram recording medium, hologram reproducing apparatus, hologram reproducing method, and hologram sheet
    • 全息记录介质,全息图再现装置,全息图再现方法和全息图
    • US20070081211A1
    • 2007-04-12
    • US11525072
    • 2006-09-22
    • Akira TangeTadashi Tamura
    • Akira TangeTadashi Tamura
    • G03H1/28
    • G11C13/042G11B7/0065G11B7/00736G11B7/00781
    • A hologram recording medium includes a first element hologram and a second element hologram. On the first element hologram, main data is recorded such that the main data is converted into a two-dimensional image, object light of the two-dimensional image is interfered with recording reference light, and an interference fringe produced as a result of the interference is recorded on the first element hologram. On the second element hologram, simplified-form data representing the content of the main data using a smaller data size than the data size of the main data is recorded such that the simplified-form data is converted into a two-dimensional image, object light of the two-dimensional image is interfered with recording reference light, and an interference fringe produced as a result of the interference is recorded on the second element hologram.
    • 全息记录介质包括第一元件全息图和第二元件全息图。 在第一元素全息图上,记录主数据,使得主数据被转换为二维图像,二维图像的物体光被干扰记录参考光,并且由于干扰而产生干涉条纹 被记录在第一元件全息图上。 在第二元素全息图上,记录表示使用比主数据的数据大小更小的数据大小的主数据的内容的简化形式数据,使得简化形式的数据被转换为二维图像,对象光 的二维图像被干扰记录参考光,并且作为干扰的结果产生的干涉条纹被记录在第二元素全息图上。
    • 4. 发明授权
    • Methods and apparatus for ultrasound imaging
    • 超声成像的方法和装置
    • US08951198B2
    • 2015-02-10
    • US13608453
    • 2012-09-10
    • Tadashi Tamura
    • Tadashi Tamura
    • A61B8/00
    • A61B8/085A61B8/485A61B8/488G01S7/52042G01S7/5209G01S7/52095
    • A first ultrasound pulse is applied to biological tissue to create shear waves in the biological tissue, a focused ultrasound pulse is transmitted into the biological tissue, one or more ultrasound signals is received from the biological tissue, and shear waves are detected in the biological tissue based on the received one or more ultrasound signals. At least one propagation property associated with the detected shear waves is determined, and the determined at least one propagation property is displayed. A strain image is obtained by either acoustic radiation forces or mechanical compression, e.g., by an ultrasound probe. The strain image is then converted to a new shear wave velocity image by using a previously-obtained shear wave velocity image.
    • 将第一超声脉冲施加到生物组织以在生物组织中产生剪切波,将聚焦的超声脉冲传输到生物组织中,从生物组织接收一个或多个超声信号,并在生物组织中检测剪切波 基于所接收的一个或多个超声信号。 确定与检测到的剪切波相关联的至少一个传播属性,并且显示所确定的至少一个传播属性。 通过声辐射力或机械压缩获得应变图像,例如通过超声探头。 然后通过使用先前获得的剪切波速度图像将应变图像转换成新的剪切波速度图像。
    • 5. 发明授权
    • Methods and apparatus for ultrasound imaging
    • 超声成像的方法和装置
    • US08366624B1
    • 2013-02-05
    • US12475948
    • 2009-06-01
    • Tadashi Tamura
    • Tadashi Tamura
    • A61B8/00
    • A61B8/488A61B8/5207A61B8/5269G01S15/8986
    • Some embodiments include acquisition of color Doppler data associated with a pulse repetition frequency (fPRF) and a baseline shift, detection of a first area of the color Doppler data representing zero flow velocity, detection of a second area of the color Doppler data, detection of a first transition between one or more velocities of the second area and one or more velocities of an adjacent third area of the color Doppler data, detection of a second transition between the third area and an adjacent fourth area of the color Doppler data representing non-zero flow velocities in the first direction, subtraction of a velocity corresponding to fPRF from each of the flow velocities of the third area if the second direction is positive, and addition of the velocity corresponding to fPRF to each of the flow velocities of the third area if the second direction is negative.
    • 一些实施例包括获取与脉冲重复频率(fPRF)和基线偏移相关联的彩色多普勒数据,检测表示零流速的彩色多普勒数据的第一区域,检测彩色多普勒数据的第二区域,检测 所述第二区域的一个或多个速度与所述彩色多普勒数据的相邻第三区域的一个或多个速度之间的第一转换,检测所述彩色多普勒数据的第三区域和相邻第四区域之间的第二转变, 如果第二方向为正,则从第三区域的每个流速减去对应于fPRF的速度,并且将对应于fPRF的速度加到第三区域的每个流速上 如果第二个方向为负。