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    • 41. 发明申请
    • Ultrasonic diagnostic system
    • 超声诊断系统
    • US20060253034A1
    • 2006-11-09
    • US10569014
    • 2004-03-08
    • Hiroshi Fukukita
    • Hiroshi Fukukita
    • A61B8/14
    • G10K11/346
    • An ultrasonic diagnostic system capable of phasing a received signal from an electroacoustic transducer arranged two-dimensionally with high precision is provided. The ultrasonic diagnostic system includes a sub-beam former (16) having amplifying sections (8, 9) for amplifying received signals of vibrators (1, 2), variable amplitude sections (10 to 13) for controlling amplitudes of an inverted output signal and a non-inverted output signal from the amplifying sections, a fixed-delay section (14) for imparting a delay time of a quarter of one period of the received signal to an added signal of the variable amplitude section, and an additing section (15) for adding the added signal of the variable amplitude section to an output signal of the fixed delay section, and a sub-beam former (17) having the same configuration as that of the sub-beam former (16), with respect to the received signals of the vibrators (3, 4), wherein the output signals from the sub-beam formers (16, 17) are subjected to delay addition by a main beam former (18).
    • 提供一种超声波诊断系统,其能够以高精度二维布置的电声换能器对相位信号进行定相。 超声波诊断系统包括具有用于放大振动器(1,2)的接收信号的放大部分(8,9),用于控制反相输出信号幅度的可变幅度部分(10至13)的子波束形成器(16) 来自放大部分的非反相输出信号,用于将接收信号的一个周期的四分之一的延迟时间赋予可变幅度部分的相加信号的固定延迟部分(14),以及加法部分 ),用于将可变幅度部分的相加信号添加到固定延迟部分的输出信号,以及具有与分光束形成器(16)相同配置的子束形成器(17),相对于 接收到振子(3,4)的信号,其中来自子光束形成器(16,17)的输出信号由主光束形成器(18)进行延迟加法。
    • 42. 发明申请
    • Ultrasonic diagnostic apparatus
    • 超声波诊断仪
    • US20060116580A1
    • 2006-06-01
    • US11239552
    • 2005-09-29
    • Hiroshi Fukukita
    • Hiroshi Fukukita
    • A61B8/06
    • G10K11/346B06B1/0629G01S15/8925G01S15/8927
    • Disclosed is an ultrasonic diagnostic apparatus that can dynamically change a focus position of a phasing circuit installed in a sub-array. A transducer element is two-dimensionally arrayed and constitutes a sub-array. The sub-array is two-dimensionally arrayed and constitutes an arrayed transducer element. An output of the transducer element of the sub-array is sent to a phasing circuit and a phasing circuit. Outputs of the phasing circuits are coupled by a coupling circuit. All of the foregoing transducer elements, sub-arrays, phasing circuits and coupling circuits are accommodated in a probe handle. An output from the coupling circuit is sent through a probe cable to a delay adding circuit of a main body. Also, the phasing circuits are controlled by a control circuit. An output of the delay adding circuit is processed by a signal processor and displayed on a display.
    • 公开了一种可以动态地改变安装在子阵列中的定相电路的焦点位置的超声波诊断装置。 换能器元件二维排列并构成子阵列。 子阵列是二维排列的,构成排列的换能器元件。 子阵列的换能器元件的输出被发送到定相电路和定相电路。 相控电路的输出由耦合电路耦合。 所有上述换能器元件,子阵列,定相电路和耦合电路容纳在探针手柄中。 耦合电路的输出通过探针电缆发送到主体的延迟加法电路。 此外,定相电路由控制电路控制。 延迟加法电路的输出由信号处理器处理并显示在显示器上。
    • 43. 发明授权
    • Sound converting apparatus
    • 声音转换装置
    • US06774540B2
    • 2004-08-10
    • US10126801
    • 2002-04-19
    • Hiroshi Fukukita
    • Hiroshi Fukukita
    • H01L4108
    • B06B1/0622
    • Herein disclosed is a sound converting apparatus for performing conversion between electric signals and ultrasonic waves, comprising: a plurality of oscillation bodies for emitting ultrasonic waves converted from the electric signals along a wave propagating direction Dp; and a plurality of electrically conductive bodies each for electrically connecting the oscillation bodies; a plurality of signal lines for inputting electric signals to be applied to respective oscillation bodies; a pair of external electrodes respectively held in contact with the outer surfaces of respective piezoelectric layers and electrically connected with the electrically conductive bodies; and a dividing electrode sandwiched by and held in contact with the inner surfaces of the piezoelectric layers and electrically connected with the signal line, whereby the piezoelectric layers respectively generate electric polarizations, directions of which are opposing to each other and extending substantially parallel to an azimuthal direction Da perpendicular to the wave propagating direction Dp, and emit ultrasonic waves converted from the electric signals along the wave propagating direction Dp when electrical fields are applied between the external electrodes and the dividing electrode in response to the electric signals, the ratio of the width W1 to the thickness T is within a range of from 0.1 to 0.8.
    • 这里公开了一种用于执行电信号和超声波之间的转换的声音转换装置,包括:多个振荡体,用于沿着波传播方向Dp发射从电信号转换的超声波; 以及多个用于电连接振荡体的导电体; 用于输入要施加到各个振荡体的电信号的多条信号线; 分别与各个压电层的外表面接触并与导电体电连接的一对外部电极; 以及与所述压电层的内表面夹持并保持与所述压电层的内表面接触并与所述信号线电连接的分割电极,由此所述压电层分别产生电极化,其方向彼此相对并且基本上平行于方位角 方向Da垂直于波传播方向Dp,并且当电场响应于电信号施加在外部电极和分割电极之间时,沿着波传播方向Dp发射从电信号转换的超声波,宽度 W1至厚度T在0.1至0.8的范围内。
    • 44. 发明授权
    • Ultrasonic diagnostic apparatus
    • 超声波诊断仪
    • US06572552B2
    • 2003-06-03
    • US09919000
    • 2001-07-31
    • Hiroshi Fukukita
    • Hiroshi Fukukita
    • A61B814
    • B06B1/064G10K11/30
    • An ultrasonic diagnostic apparatus for observing a detectable object to be ultrasonically diagnosed. The apparatus includes an ultrasonically diagnostic probe unit for probing the object with ultrasonic waves in response to input pulse signals and with an ultrasonic echo from the object, a signal transmitting unit to generate the input pulse signals, a signal receiving unit for receiving the ultrasonic echo and processing output signals to be converted into an image of the object, and a display unit to display the image. The ultrasonically diagnostic probe unit comprises an oscillation body having a pair of piezoelectric layers, an intermediate layer sandwiched by the piezoelectric layers, an acoustic lens body operative to focus the ultrasonic waves to be emitted to and reflected by the object, and a supporting body having the oscillation body mounted thereon, thereby making it possible to provide an ultrasonic diagnostic apparatus with a readily machinable oscillation body and to facilitate the machining and adhesive processes of the oscillation body.
    • 一种用于观察可被检测物体进行超声诊断的超声波诊断装置。 该装置包括:超声波诊断探头单元,用于响应于输入脉冲信号和来自对象的超声回波探测物体,用于产生输入脉冲信号的信号发送单元,用于接收超声波回波的信号接收单元 以及处理要转换成对象的图像的输出信号,以及显示单元以显示图像。 超声波诊断探头单元包括具有一对压电层的振荡体,被压电层夹持的中间层,用于聚焦被发射到被物体并被物体反射的超声波的声透镜体,以及支撑体, 安装在其上的振动体,从而可以提供具有易于加工的振动体的超声波诊断装置,并且便于振动体的机械加工和粘合处理。
    • 46. 发明授权
    • Ultrasonic imaging system using plural square wave pulse trains of
successively delayed intervals
    • 超声波成像系统采用多个方波脉冲序列连续延时
    • US4348902A
    • 1982-09-14
    • US206827
    • 1980-11-14
    • Ryobun TachitaYoshihiro HayakawaKazuyoshi IriokaHiroshi FukukitaTsutomu YanoAkira Fukumoto
    • Ryobun TachitaYoshihiro HayakawaKazuyoshi IriokaHiroshi FukukitaTsutomu YanoAkira Fukumoto
    • A61B8/00A61B8/14G01S7/52G01N29/00
    • G01S7/52063
    • A sector scan ultrasonic imaging system comprises a source of a plurality of square wave pulse trains each being delayed by a unit quantization time with respect to adjacent trains, and a plurality of transmitter circuits corresponding to the elements of a transducer array. The duration of each square wave pulse is an integral multiple of the unit quantization time interval. Each transmitter circuit includes a read only memory in which a set of different digital delay time data is stored for the corresponding transducer element and is arranged to be retrieved in response to each angle increment of the ultrasonic beam transmitted from the array. Further included are a data selector for selecting a pulse train in response to a pulse train selection data retrieved from the memory and a programmable counter for counting the pulses of the selected train to generate an output in accordance with a pulse selection data retrieved from the memory. An Exclusive-OR gate is further included to provide bit inversion of the selected pulse train in selective response to the binary state of a data retrieved from the memory so that the number of available square wave pulse trains is doubled. A gating circuit responds to the output of the counter by gating a pulse of the selected pulse train to the corresponding transducer element.
    • 扇区扫描超声成像系统包括多个方波脉冲串的源,每个方波延迟相对于相邻列的单位量化时间,以及对应于换能器阵列的元件的多个发射器电路。 每个方波脉冲的持续时间是单位量化时间间隔的整数倍。 每个发射机电路包括只读存储器,其中针对相应的换能器元件存储一组不同的数字延迟时间数据,并且被布置为响应于从阵列发射的超声波束的每个角度增量而被检索。 还包括一个数据选择器,用于响应于从存储器检索的脉冲序列选择数据选择一个脉冲序列,以及一个可编程计数器,用于根据从存储器检索的脉冲选择数据计算所选择的列车的脉冲以产生一个输出 。 进一步包括异或门以提供选择性响应于从存储器检索的数据的二进制状态的所选脉冲序列的位反转,使​​得可用的矩形波脉冲序列的数量加倍。 门控电路通过将所选择的脉冲串的脉冲门控到相应的换能器元件来响应计数器的输出。
    • 47. 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。