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    • 1. 发明授权
    • Ultrasonic diagnostic equipment
    • 超声波诊断设备
    • US5419330A
    • 1995-05-30
    • US294013
    • 1994-08-23
    • Morio NishigakiHiroshi FukukitaHisashi Hagiwara
    • Morio NishigakiHiroshi FukukitaHisashi Hagiwara
    • A61B8/00A61B8/14G01N29/44G01S7/52G01S15/89G10K11/34
    • G01S15/8997G01S7/52046G10K11/348G01S15/8915
    • In an ultrasonic diagnostic equipment for performing synthetic aperture, deterioration of picture quality produced by the movement of an object is prevented, thereby to provide an excellent image. Arrayed piezoelectric transducers are driven by a transmitting circuit so as to transmit ultrasonic waves into a body, and, among echoes received by piezoelectric transducers, first the signals of the piezoelectric transducers are selected by amplified appropriately by amplifiers and converted into digital signals by added with delay by a beam former thereafter, and stored in a memory. Similarly, the ultrasonic waves are transmitted again, signals of the piezoelectric transducers are selected by the applied with similar signal processing in the amplifiers, and the beam former, and added to signals added with delay of the piezoelectric transducers T3 to T6 stored in a memory 16 by an adder. The added signals are displayed on a display unit after applying signal processing such as detection in a signal processing portion.
    • 在用于执行合成孔径的超声波诊断设备中,防止了由物体的运动产生的图像质量的劣化,从而提供优异的图像。 阵列压电换能器由发射电路驱动,以将超声波发射到体内,并且在由压电换能器接收的回波中,首先通过放大器适当放大来选择压电换能器的信号,并通过加入被转换成数字信号 之后由波束形成器延迟并存储在存储器中。 类似地,再次传输超声波,通过在放大器和波束形成器中应用类似的信号处理来选择压电换能器的信号,并将其加到存储在存储器中的压电换能器T3至T6的延迟信号 16由加法器。 在信号处理部分中应用诸如检测的信号处理之后,在显示单元上显示附加的信号。
    • 7. 发明授权
    • Ultrasonic diagnostic imaging system
    • 超声诊断成像系统
    • US06344023B1
    • 2002-02-05
    • US09699458
    • 2000-10-31
    • Hiroshi FukukitaMorio NishigakiTakao Suzuki
    • Hiroshi FukukitaMorio NishigakiTakao Suzuki
    • A61B800
    • A61B8/08G01S7/52038G01S7/52046
    • A nonlinear distortion-based ultrasonic diagnostic imaging system displays a raised-resolution video of tissue inside a body at an increased frame rate. Using a two-pulse technique, a transducer driver supplies narrower-width and wider-width driving pulses to a transducer, which transmits weaker and stronger ultrasonic wave pulses alternately while putting the same intervals between adjacent ultrasonic wave pulses to obtain a weaker echo and a stronger echo. An equalizer equalizes each weaker echo to the stronger echo into an equalized weaker echo. An interpolator calculates an interpolation value between the equalized weaker echo and an equalized previous weaker echo obtained from a previous weaker echo. For each weaker ultrasonic wave pulse, a detector finds a difference between the interpolation value and a stronger echo obtained between the weaker echo and the previous weaker echo. The equalization and interpolation enables high-speed scanning, which has not been achieved with two-pulse technique. Thus, a raised-resolution video signal of the tissue is formed at an increased frame rate on the basis of the difference signal and a scan control signal which is also used in the transducer.
    • 基于非线性失真的超声诊断成像系统以增加的帧速率显示身体内的组织的升高分辨率视频。 使用双脉冲技术,换能器驱动器向传感器提供较窄宽度和宽宽度的驱动脉冲,其在相邻超声波脉冲之间施加相同的间隔以交替地传递较弱和更强的超声波脉冲以获得较弱的回波和 更强的回声。 均衡器将每个较弱的回波与较强的回波均衡,达到平衡较弱的回波。 内插器计算均衡的较弱回波和从先前更弱的回波获得的均衡的先前更弱的回波之间的内插值。 对于每个较弱的超声波脉冲,检测器发现内插值与较弱回波和先前较弱回波之间获得的较强回波之间的差异。 均衡和内插可实现高速扫描,这是双脉冲技术尚未实现的。 因此,基于差分信号和在换能器中也使用的扫描控制信号,以增加的帧速率形成组织的升高分辨率的视频信号。
    • 8. 发明授权
    • Ultrasonic diagnostic system using a nonlinearity of an examined body
with respect to propagation of ultrasonic wave
    • 超声波诊断系统使用被检体的非线性相对于超声波的传播
    • US06099472A
    • 2000-08-08
    • US299001
    • 1999-04-26
    • Hiroshi FukukitaMorio Nishigaki
    • Hiroshi FukukitaMorio Nishigaki
    • A61B8/06A61B8/00G01S7/52G01S15/10
    • G01S7/52038G01S7/52046G01S15/105G01S7/52023
    • An ultrasonic diagnostic system includes a transducer. A first electric drive signal is fed to the transducer. A second electric drive signal is fed to the transducer at a time different from a time of the feed of the first electric drive signal thereto. The second electric drive signal has a waveform different from a waveform of the first electric drive signal. A first received signal is derived from an output signal of the transducer. The first received signal represents ultrasonic echoes related to an ultrasonic beam caused by the transducer in response to the first electric drive signal. A second received signal is derived from the output signal of the transducer. The second received signal represents ultrasonic echoes related to an ultrasonic beam caused by the transducer in response to the second electric drive signal. The first received signal is subjected to a waveform equalizing process, thereby being converted into a third received signal having a waveform corresponding to a waveform of the second received signal. A calculator operates for calculating a difference between the second received signal and the third received signal, and generating a signal representing the calculated difference.
    • 超声诊断系统包括换能器。 第一电驱动信号被馈送到换能器。 第二电驱动信号在与第一电驱动信号的馈送时间不同的时间馈送到换能器。 第二电驱动信号具有与第一电驱动信号的波形不同的波形。 第一接收信号是从换能器的输出信号导出的。 第一接收信号表示响应于第一电驱动信号由换能器引起的与超声波束相关的超声回波。 第二个接收信号是从换能器的输出信号导出的。 第二接收信号表示响应于第二电驱动信号由换能器引起的与超声波束相关的超声回波。 对第一接收信号进行波形均衡处理,从而转换成具有对应于第二接收信号的波形的波形的第三接收信号。 计算器用于计算第二接收信号和第三接收信号之间的差,并且产生表示所计算的差的信号。
    • 9. 发明申请
    • Ultrasonic diagnostic apparatus
    • 超声波诊断仪
    • US20070160540A1
    • 2007-07-12
    • US10583025
    • 2005-07-25
    • Morio NishigakiHiroshi Fukukita
    • Morio NishigakiHiroshi Fukukita
    • A61B8/00
    • G01S7/52017A61B8/56G01S7/52019G01S7/52096
    • There are provided transducers, transmission pulse generators for transmitting pulses to the transducers, a transmission power source for supplying power to the transmission pulse generators, and an output side capacitor 7 for stabilizing a voltage of the transmission power source. The transmission power source includes a plurality of mode-specific power sources 1A and 1B for outputting a constant voltage, and a mode changeover switch 6 provided between the mode-specific power sources and the output side capacitor. The transmission power source further includes a power supplying power source 2 connected to the mode-specific power sources for supplying power, and a power regeneration capacitor 4 with a larger capacity than that of the output side capacitor, one electrode terminal of which is connected to a connection point between the power supplying power source and the mode-specific power sources and the mode changeover switch, and the other electrode terminal of which is connected to ground. The mode changeover switch is capable of connecting the power regeneration capacitor, instead of each of the mode-specific power sources, to the output side capacitor. There is provided an ultrasonic diagnostic apparatus that reuses power stored in the output side capacitor to reduce power consumption.
    • 提供换能器,用于向换能器发送脉冲的传输脉冲发生器,用于向发送脉冲发生器供电的发送电源,以及用于稳定发送电源的电压的输出侧电容器7。 发送电源包括用于输出恒定电压的多个模式特定电源1A和1B,以及设置在模式特定电源和输出侧电容器之间的模式切换开关6。 发送电源还包括连接到用于供电的模式特定电源的供电电源2和具有比输出侧电容器的容量大的电力再生电容器4,其一个电极端子连接到 供电电源和模式特定电源与模式切换开关之间的连接点,另一个电极端子连接到地。 模式转换开关能够将功率再生电容器代替每个模式特定的电源连接到输出侧电容器。 提供了一种超声波诊断装置,其重新使用存储在输出侧电容器中的电力来降低功耗。
    • 10. 发明授权
    • Ultrasonic diagnostic apparatus
    • 超声波诊断仪
    • US07699777B2
    • 2010-04-20
    • US10583025
    • 2005-07-25
    • Morio NishigakiHiroshi Fukukita
    • Morio NishigakiHiroshi Fukukita
    • A61B8/00
    • G01S7/52017A61B8/56G01S7/52019G01S7/52096
    • There are provided transducers, transmission pulse generators for transmitting pulses to the transducers, a transmission power source for supplying power to the transmission pulse generators, and an output side capacitor 7 for stabilizing a voltage of the transmission power source. The transmission power source includes a plurality of mode-specific power sources 1A and 1B for outputting a constant voltage, and a mode changeover switch 6 provided between the mode-specific power sources and the output side capacitor. The transmission power source further includes a power supplying power source 2 connected to the mode-specific power sources for supplying power, and a power regeneration capacitor 4 with a larger capacity than that of the output side capacitor, one electrode terminal of which is connected to a connection point between the power supplying power source and the mode-specific power sources and the mode changeover switch, and the other electrode terminal of which is connected to ground. The mode changeover switch is capable of connecting the power regeneration capacitor, instead of each of the mode-specific power sources, to the output side capacitor. There is provided an ultrasonic diagnostic apparatus that reuses power stored in the output side capacitor to reduce power consumption.
    • 提供换能器,用于向换能器发送脉冲的传输脉冲发生器,用于向发送脉冲发生器供电的发送电源,以及用于稳定发送电源的电压的输出侧电容器7。 发送电源包括用于输出恒定电压的多个模式特定电源1A和1B,以及设置在模式特定电源和输出侧电容器之间的模式切换开关6。 发送电源还包括连接到用于供电的模式特定电源的供电电源2和具有比输出侧电容器的容量大的电力再生电容器4,其一个电极端子连接到 供电电源和模式特定电源与模式切换开关之间的连接点,另一个电极端子连接到地。 模式切换开关能够将功率再生电容器代替每个模式特定的电源连接到输出侧电容器。 提供了一种超声波诊断装置,其重新使用存储在输出侧电容器中的电力来降低功耗。