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    • 1. 发明申请
    • ULTRASONIC DIAGNOSTIC EQUIPMENT AND ULTRASONIC IMAGE GENERATION METHOD
    • 超声诊断设备和超声波图像生成方法
    • US20080051663A1
    • 2008-02-28
    • US11924147
    • 2007-10-25
    • Tetsuya KAWAGISHITomohisa ImamuraNaohisa Kamiyama
    • Tetsuya KAWAGISHITomohisa ImamuraNaohisa Kamiyama
    • A61B8/00
    • 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=2.8 f 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=3.2 f or so.
    • 使频率 f的第一基波与频率f 2 2的第二基波之间的差分分量与二次谐波相互作用,从而达到 增强二次谐波信号等,从而以高S / N比提取要成像的反射波分量。 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f 2 = 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 < /SUB>=3.2 f左右
    • 3. 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 。
    • 5. 发明授权
    • Ultrasonic imaging apparatus and method
    • 超声波成像装置及方法
    • US07666139B2
    • 2010-02-23
    • US10682733
    • 2003-10-10
    • Akihiro KakeeMakoto HiramaTetsuya KawagishiTomohisa Imamura
    • Akihiro KakeeMakoto HiramaTetsuya KawagishiTomohisa Imamura
    • A61B8/00A61B8/12A61B8/14
    • A61B8/481
    • An ultrasonic imaging apparatus, including an ultrasonic probe including an ultrasonic vibration element configured to transmit and receive an ultrasonic wave in a scanning direction in an object in which a contrast media has been injected; a transmission unit configured to apply successive drive pulses to the probe so as to transmit respective ultrasonic signals in respective rate sections; a reception unit configured to receive reflected ultrasonic signals, including first reflected ultrasonic signals produced by a first drive pulse in a first rate section and reflected back to the probe in the first rate section and in a second rate section subsequent to the first rate section; an operation unit configured to perform an operation including at least one of addition and subtraction of at least two of the first ultrasonic signals received during different rate sections; and a signal processor configured to produce image data based on the result of the operation performed by the operation unit. Plural driving pulses having alternating polarity may be applied to the probe in a same scan direction.
    • 一种超声波成像装置,包括:超声波探头,其包括超声波振动元件,所述超声波振动元件被配置为在已经注射了造影剂的物体中沿扫描方向发送和接收超声波; 发送单元,被配置为向所述探针施加连续的驱动脉冲,以便在各个速率区间中发送各自的超声波信号; 接收单元,被配置为接收反射超声波信号,所述反射超声波信号包括由第一速率部分中的第一驱动脉冲产生的第一反射超声波信号,并且被反射回到第一速率部分中的探头和在第一速率部分之后的第二速率部分中; 操作单元,被配置为执行包括在不同速率区段期间接收的所述第一超声波信号中的至少两个的加法和减法中的至少一个的操作; 以及信号处理器,被配置为基于由所述操作单元执行的操作的结果来产生图像数据。 具有交替极性的多个驱动脉冲可以以相同的扫描方向施加到探针。
    • 8. 发明申请
    • ULTRASONIC DIAGNOSTIC APPARATUS AND ULTRASONIC DIAGNOSTIC METHOD
    • 超声诊断装置及超声诊断方法
    • US20070197916A1
    • 2007-08-23
    • US11627667
    • 2007-01-26
    • Tetsuya KawagishiHiroyuki OhuchiTakeshi SatoMakoto HiramaTomohisa Imamura
    • Tetsuya KawagishiHiroyuki OhuchiTakeshi SatoMakoto HiramaTomohisa Imamura
    • A61B8/14
    • A61B8/463A61B8/06A61B8/481G01S7/52046G01S7/52074G01S15/8927G01S15/8952
    • An ultrasonic diagnostic apparatus comprises a first reception echo obtaining unit, a second reception echo obtaining unit, a reception echo combining unit, and an image generating unit. The first reception echo obtaining unit transmits a plurality of ultrasonic pulses having frequency spectra different from one another to an object, and obtains each of reception echoes corresponding to the plurality of ultrasonic pulses. The second reception echo obtaining unit transmits an ultrasonic pulse having the same frequency component characteristics as an combined pulse obtained by combining the plurality of ultrasonic pulses, and to obtain an reception echo. The reception echo combining unit combines the reception echoes obtained by the first reception echo obtaining unit and the reception echo obtained by the second reception echo obtaining unit to generate a combined signal. The image generating unit generates an image of echoes reflected from the object on the basis of the combined signal.
    • 超声波诊断装置包括第一接收回波获取单元,第二接收回波获取单元,接收回声合成单元和图像生成单元。 第一接收回波获取单元将具有彼此不同的频谱的多个超声波脉冲发送到对象,并且获得与多个超声波脉冲对应的每个接收回波。 第二接收回波获取单元发送具有与通过组合多个超声波脉冲而获得的组合脉冲相同的频率分量特性的超声波脉冲,并获得接收回波。 接收回声组合单元将由第一接收回声获得单元获得的接收回声与由第二接收回波获取单元获得的接收回波组合以产生组合信号。 图像生成单元基于合成信号生成从物体反射的回波的图像。
    • 10. 发明授权
    • Ultrasonic diagnostic apparatus and ultrasonic diagnostic method
    • 超声诊断仪和超声诊断方法
    • US08932225B2
    • 2015-01-13
    • US11627667
    • 2007-01-26
    • Tetsuya KawagishiHiroyuki OhuchiTakeshi SatoMakoto HiramaTomohisa Imamura
    • Tetsuya KawagishiHiroyuki OhuchiTakeshi SatoMakoto HiramaTomohisa Imamura
    • A61B8/00A61B8/06A61B8/08G01S7/52G01S15/89
    • A61B8/463A61B8/06A61B8/481G01S7/52046G01S7/52074G01S15/8927G01S15/8952
    • An ultrasonic diagnostic apparatus comprises a first reception echo obtaining unit, a second reception echo obtaining unit, a reception echo combining unit, and an image generating unit. The first reception echo obtaining unit transmits a plurality of ultrasonic pulses having frequency spectra different from one another to an object, and obtains each of reception echoes corresponding to the plurality of ultrasonic pulses. The second reception echo obtaining unit transmits an ultrasonic pulse having the same frequency component characteristics as an combined pulse obtained by combining the plurality of ultrasonic pulses, and to obtain an reception echo. The reception echo combining unit combines the reception echoes obtained by the first reception echo obtaining unit and the reception echo obtained by the second reception echo obtaining unit to generate a combined signal. The image generating unit generates an image of echoes reflected from the object on the basis of the combined signal.
    • 超声波诊断装置包括第一接收回波获取单元,第二接收回波获取单元,接收回声合成单元和图像生成单元。 第一接收回波获取单元将具有彼此不同的频谱的多个超声波脉冲发送到对象,并且获得与多个超声波脉冲对应的每个接收回波。 第二接收回波获取单元发送具有与通过组合多个超声波脉冲而获得的组合脉冲相同的频率分量特性的超声波脉冲,并获得接收回波。 接收回声组合单元将由第一接收回声获得单元获得的接收回声与由第二接收回波获取单元获得的接收回波组合以产生组合信号。 图像生成单元基于合成信号生成从物体反射的回波的图像。