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    • 1. 发明申请
    • ULTRASONIC DIAGNOSTIC APPARATUS
    • 超声诊断设备
    • US20090306508A1
    • 2009-12-10
    • US12479328
    • 2009-06-05
    • Tetsuya YOSHIDATetsuya KawagishiNaohisa KamiyamaYoko OkamuraYasuhiko Abe
    • Tetsuya YOSHIDATetsuya KawagishiNaohisa KamiyamaYoko OkamuraYasuhiko Abe
    • A61B8/14
    • A61B8/14A61B8/06A61B8/08A61B8/13A61B8/469A61B8/488
    • An ultrasonic diagnostic apparatus disclosed herein comprises an ultrasonic probe which generates an ultrasonic beam, a volume data set collecting unit which collects a plurality of volume data sets corresponding to a plurality of three-dimensional scan ranges via the ultrasonic probe, the plurality of three-dimensional scan ranges partly overlapping one another, a region of interest setting unit which sets, in accordance with a user instruction, a region of interest on a first tomogram generated from particular one of the plurality of volume data sets, a tomogram generating unit which generates the first tomogram from the particular volume data set and also generates a second tomogram associated with a section including the region of interest from another volume data set corresponding to the three-dimensional scan range including the region of interest, and a display unit which displays the first tomogram and the second tomogram.
    • 这里公开的超声波诊断装置包括:生成超声波束的超声波探头,经由超声波探头收集与多个三维扫描范围对应的多个体数据集的体数据集合单元, 三维扫描范围部分地彼此重叠,感兴趣区域设置单元,其根据用户指令设置从多个体数据集中的特定一个生成的第一断层图像上的感兴趣区域;生成 来自特定体积数据集的第一断层图像,并且还产生与包括与包括感兴趣区域的三维扫描范围对应的另一体数据集的感兴趣区域的部分相关联的第二断层图像,以及显示单元, 第一次断层图像和第二次断层图像。
    • 3. 发明授权
    • Ultrasonic diagnostic apparatus
    • 超声波诊断仪
    • US09592028B2
    • 2017-03-14
    • US12479328
    • 2009-06-05
    • Tetsuya YoshidaTetsuya KawagishiNaohisa KamiyamaYoko OkamuraYasuhiko Abe
    • Tetsuya YoshidaTetsuya KawagishiNaohisa KamiyamaYoko OkamuraYasuhiko Abe
    • A61B8/00A61B8/14A61B8/06A61B8/13A61B8/08
    • A61B8/14A61B8/06A61B8/08A61B8/13A61B8/469A61B8/488
    • An ultrasonic diagnostic apparatus disclosed herein comprises an ultrasonic probe which generates an ultrasonic beam, a volume data set collecting unit which collects a plurality of volume data sets corresponding to a plurality of three-dimensional scan ranges via the ultrasonic probe, the plurality of three-dimensional scan ranges partly overlapping one another, a region of interest setting unit which sets, in accordance with a user instruction, a region of interest on a first tomogram generated from particular one of the plurality of volume data sets, a tomogram generating unit which generates the first tomogram from the particular volume data set and also generates a second tomogram associated with a section including the region of interest from another volume data set corresponding to the three-dimensional scan range including the region of interest, and a display unit which displays the first tomogram and the second tomogram.
    • 这里公开的超声波诊断装置包括:生成超声波束的超声波探头,经由超声波探头收集与多个三维扫描范围对应的多个体数据集的体数据集合单元, 三维扫描范围部分地彼此重叠,感兴趣区域设置单元,其根据用户指令设置从多个体数据集中的特定一个生成的第一断层图像上的感兴趣区域;生成 来自特定体积数据集的第一断层图像,并且还产生与包括与包括感兴趣区域的三维扫描范围对应的另一体数据集的感兴趣区域的部分相关联的第二断层图像,以及显示单元, 第一次断层图像和第二次断层图像。
    • 5. 发明授权
    • Three-dimensional ultrasonic diagnosis apparatus
    • 三维超声波诊断仪
    • US06352509B1
    • 2002-03-05
    • US09441300
    • 1999-11-16
    • Tetsuya KawagishiNaohisa Kamiyama
    • Tetsuya KawagishiNaohisa Kamiyama
    • A61B800
    • A61B8/14A61B8/06A61B8/065A61B8/13A61B8/483Y10S128/916
    • A three-dimensional ultrasonic diagnosis apparatus has a feature that: transmits ultrasonic beams three-dimensionally to a diagnostic site including a left ventricle of the heart in a subject being examined; receives ultrasonic echo signals thereof; generates three-dimensional data of the diagnostic site based on the received ultrasonic echo signals; determines a cardiac cavity region in generated three-dimensional data; and generates a display image such that information at a myocardial site of the heart is identified by converting a value of the cardiac cavity region in the determined three-dimensional data to a different value. The feature enables the apparatus to provide information on three-dimensional myocardial muscle blood flow useful for clinical diagnosis.
    • 三维超声波诊断装置具有以下特征:将超声波束三维地发送到被检查对象的心脏的左心室的诊断部位; 接收超声回波信号; 基于接收到的超声回波信号生成诊断部位的三维数据; 确定生成的三维数据中的心腔区域; 并产生显示图像,使得通过将所确定的三维数据中的心腔区域的值转换为不同的值来识别心脏的心肌部位的信息。 该特征使得该装置能够提供有用于临床诊断的三维心肌肌肉血流信息。
    • 8. 发明授权
    • Ultrasonic diagnostic equipment and imaging processing apparatus
    • 超声诊断设备及成像处理设备
    • US09241689B2
    • 2016-01-26
    • US10933248
    • 2004-09-03
    • Tetsuya KawagishiNaohisa Kamiyama
    • Tetsuya KawagishiNaohisa Kamiyama
    • A61B8/06A61B8/08A61B8/13A61B8/00
    • A61B8/481A61B8/06A61B8/13A61B8/543G06F19/00
    • Each of an ultrasonic diagnostic equipment and an image processing apparatus according to the present invention comprises image acquisition device configured to acquire image data by scanning a patient into whom an ultrasonic contrast medium has been injected, with ultrasonic beams, same-part correspondence device configured to bring same parts into correspondence with each other, between a plurality of images concerning the same parts of the identical patient and acquired by the image acquisition device, arithmetic operation device configured to arithmetically operate image information items on changes of intensities between the plurality of images by using the intensities of those corresponding pixels of the plurality of images which have been brought into correspondence by the pixel correspondence device, and display device configured to display results operated by the arithmetic operation device.
    • 根据本发明的超声波诊断装置和图像处理装置中的每一个包括图像获取装置,被配置为通过用超声波束扫描向其注入超声波造影剂的患者来获取图像数据,同一部分对应装置被配置为 将相同的部分彼此对应,在相同患者的相同部分的多个图像之间并且由图像获取装置获取的算术运算装置,被配置为通过以下方式对图像信息项进行算术运算:关于多个图像之间的强度变化的图像信息项 使用由像素对应装置对应的多个图像中的相应像素的强度,以及被配置为显示由算术运算装置运算的结果的显示装置。
    • 9. 发明授权
    • Ultrasonic diagnostic equipment and ultrasonic image generation method
    • 超声波诊断设备和超声波图像生成方法
    • US07985183B2
    • 2011-07-26
    • US11924147
    • 2007-10-25
    • Tetsuya KawagishiTomohisa ImamuraNaohisa Kamiyama
    • Tetsuya KawagishiTomohisa ImamuraNaohisa Kamiyama
    • A61B8/14
    • A61B8/06G01S15/8952
    • The difference frequency component between a first fundamental wave of frequency f and a second fundamental wave of frequency f2 is caused to interact with a second harmonic wave, thereby to attain the enhancement of a second harmonic signal, etc., whereby a reflected wave component to be imaged is extracted at a high S/N ratio. By way of example, in a case where the difference frequency component is to appear on the lower frequency side of the second harmonic wave of the first fundamental wave so as to be superposed on this second harmonic wave, the frequencies are set at f2=2.8f or so. Besides, in a case where the difference frequency component is to appear on the higher frequency side of the second harmonic wave of the first fundamental wave so as to be superposed on this second harmonic wave, the frequencies are set at f2=3.2f or so.
    • 使得频率f的第一基波和频率f2的第二基波之间的频率分量与二次谐波相互作用,从而获得二次谐波信号等的增强,从而将反射波分量 以高S / N比提取成像。 作为示例,在第一基波的二次谐波的低频侧出现差频分量以叠加在该二次谐波上的情况下,将频率设定为f2 = 2.8 f左右 此外,在第一基波的二次谐波的较高频率侧出现差频分量以叠加在该二次谐波上的情况下,将频率设定为f2 = 3.2f左右 。