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    • 7. 发明授权
    • Ultrasound diagnosis apparatus and method of setting sound velocity
    • 超声诊断装置及声速设定方法
    • US08475381B2
    • 2013-07-02
    • US12824697
    • 2010-06-28
    • Akihiro KakeeMuneki KataguchiKenichi IchiokaYasushi Kamewada
    • Akihiro KakeeMuneki KataguchiKenichi IchiokaYasushi Kamewada
    • A61B8/14
    • A61B8/06A61B8/54G01S7/52049G01S7/52073G01S7/52074
    • In one embodiment, an ultrasonic diagnostic apparatus includes an image creating unit, an image-creation control unit and a display control unit. The image creating unit creates an ultrasound image from data created by adding a reflected wave signal of an ultrasound wave transmitted to an imaging target portion of a subject by using a reception delay time calculated from a set sound velocity set as a sound velocity in the imaging target portion. The image-creation control unit switches a set sound velocity set at a present moment in a variable range, and controls the image creating unit so as to create a plurality of ultrasound images each using a reception delay time corresponding to each of the set sound velocities to be switched. The display control unit controls display such that the ultrasound images created are displayed on a certain display unit.
    • 在一个实施例中,超声波诊断装置包括图像创建单元,图像创建控制单元和显示控制单元。 图像创建单元通过使用从在成像中设置为声速的设定声速计算出的接收延迟时间来添加发送到被摄体的成像对象部分的超声波的反射波信号而创建的超声图像 目标部分。 图像创建控制单元在可变范围内切换当前设置的设定声速,并且控制图像创建单元,以便创建多个超声图像,每个超声图像使用与每个设定声速相对应的接收延迟时间 被切换。 显示控制单元控制显示,使得所创建的超声图像显示在某个显示单元上。
    • 8. 发明授权
    • Ultrasonic diagnostic apparatus and ultrasonic diagnostic apparatus control method
    • 超声波诊断仪和超声波诊断仪控制方法
    • US08382669B2
    • 2013-02-26
    • US12062100
    • 2008-04-03
    • Akihiro Kakee
    • Akihiro Kakee
    • A61B8/14
    • A61B8/08A61B8/14A61B8/543G01S7/52033G01S7/52085G01S15/8925G01S15/8993
    • A living tissue region determining unit of a gain correction data generating section determines a diagnostic living tissue region on the basis of an S/N and a dispersion value of ultrasound data collected from each of a plurality of slice sections in a gain correction scan mode intended for the generation of gain correction data for volume data. A gain correction map generating unit applies a least squares method to the average value of the ultrasound data in a plurality of regions set by dividing the living tissue region into predetermined sizes, thereby generating two-dimensional gain correction maps. Then, an interpolating processing unit interpolates, in a slice direction, the gain correction map generated for each of the plurality of slice sections, and generates three-dimensional gain correction data corresponding to each voxel of the volume data.
    • 增益校正数据生成部的生物体组织区域判定部根据预测的增益校正扫描模式,根据S / N和从多个切片部中的每一个收集的超声波数据的色散值来判定诊断生物体组织区域 用于生成体数据的增益校正数据。 增益校正图生成单元将最小二乘法应用于通过将生物体组织区域划分为规定尺寸而设定的多个区域中的超声波数据的平均值,从而生成二维增益校正图。 然后,内插处理单元在切片方向上插入为多个切片部中的每一个生成的增益校正图,并且生成与体数据的每个体素对应的三维增益校正数据。