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    • 3. 发明授权
    • Apparatus for receiving reflected ultrasonic waves in ultrasonography
    • 用于在超声波中接收反射超声波的装置
    • US4445379A
    • 1984-05-01
    • US362736
    • 1982-03-29
    • Keiki YamaguchiYasuhito TakeuchiShinichi SanoTakao Higashiizumi
    • Keiki YamaguchiYasuhito TakeuchiShinichi SanoTakao Higashiizumi
    • G01S7/529A61B8/00G01S7/527G01N29/04
    • G01S7/5276G01N29/0645G01N2291/0289
    • An echo signal receiver receives higher level echo signals reflected from strong reflections sources or reflecting sources at areas close to a probe in a range of higher frequencies, and also receives lower level echo signals reflected from weak reflection sources or sources at areas remote from the probe in a range of low frequencies. The echo signal receiver comprises a multiple stage amplifier circuit for receiving the echo signal. Outputs from amplifiers at front stages are delivered via filters having higher frequency bands, and outputs from amplifiers at rear stages are delivered via filters having lower frequency bands. The outputs are passed through the filters and then combined into a single processed echo signal. As an alternative, a video signal derived from an echo signal which has passed through a circuit for varying frequency characteristics is compared with a reference voltage by a comparator, which produces an output that is rounded off by removing high frequency components in a low pass filter. The rounded off signal is fed to a circuit for varying frequency characteristics to control the same to change its frequency ban while the signal is being received. In another embodiment, the echo signal is received through a variable low cut filter having a cutoff frequency which can be increased or reduced dependent on the level of the echo signal.
    • 回波信号接收器在较高频率的范围内从强反射源或靠近探头的区域反射的较高电平的回波信号接收较高电平的回波信号,并且还接收从远离探头的区域的弱反射源或光源反射的较低电平回波信号 在低频范围内。 回波信号接收机包括用于接收回波信号的多级放大器电路。 来自前级放大器的输出通过具有较高频带的滤波器输出,后级放大器的输出通过具有较低频带的滤波器输出。 输出通过滤波器,然后组合成单个经过处理的回波信号。 作为替代,将通过用于变化频率特性的电路的回波信号导出的视频信号通过比较器与参考电压进行比较,该比较器产生通过去除低通滤波器中的高频分量而舍入的输出 。 四舍五入的信号被馈送到用于变化的频率特性的电路以控制它,以在信号被接收时改变其频率禁止。 在另一个实施例中,回波信号通过可变低通滤波器接收,该可变低通滤波器具有可根据回波信号的电平而增加或减小的截止频率。
    • 4. 发明授权
    • Received ultrasonic phase matching circuit
    • 接收超声波相位匹配电路
    • US5031625A
    • 1991-07-16
    • US555487
    • 1990-07-30
    • Takao HigashiizumiToru ShimazakiKeiki YamaguchiYasuro Takiura
    • Takao HigashiizumiToru ShimazakiKeiki YamaguchiYasuro Takiura
    • A61B8/00G01N29/24G10K11/34
    • G10K11/346
    • A received ultrasonic phase matching circuit of the present invention, which utilizes variable delay lines having short delay times as the structural element of variable focus means having a larger aperture and realizes focusing to the regions from the region near the surface of object and to the deeper region thereof, comprises variable attenuators to be controlled individually and variable delay lines having the equal maximum delay times also to be controlled individually to the respective receiving channels forming the maximum aperture for reception of the ultrasonic echoes to form variable aperture by controlling variable attenuators and distribution of delay times for focusing in the aperture using only the variable delay times belonging to such aperture and add and combine the receiving signals delayed by the variable delay lines in the beam steering means.
    • PCT No.PCT / JP89 / 00095 Sec。 371日期1990年7月30日 102(e)日1990年7月30日PCT 1989年1月30日PCT PCT。 出版物WO89 / 06933 日本1989年8月10日。本发明的接收超声波相位匹配电路,其利用具有较短延迟时间的可变延迟线作为具有较大孔径的可变焦点装置的结构元件,并实现对来自接近 物体表面和其较深的区域包括可单独控制的可变衰减器和具有相等的最大延迟时间的可变延迟线也被单独地控制到形成用于接收超声回波的最大孔径的各个接收通道以形成变量 通过控制可变衰减器的光圈和用于聚焦在光圈中的延迟时间的分布,仅使用属于这种孔径的可变延迟时间,并且将波长转向装置中延迟了可变延迟线的接收信号相加并组合。
    • 6. 发明授权
    • Diagnostic imaging apparatus
    • 诊断成像装置
    • US4817617A
    • 1989-04-04
    • US171191
    • 1988-03-07
    • Yasuhito TakeuchiTakao HigashiizumiHideya AkasakaTakao JibikiShinichi Sano
    • Yasuhito TakeuchiTakao HigashiizumiHideya AkasakaTakao JibikiShinichi Sano
    • G03B42/06A61B8/00A61B8/06A61B8/14G01S15/89A61B10/00
    • G01S15/8979
    • A diagnostic imaging apparatus is disclosed in which an ultrasonic wave transmit/receive apparatus is used in common for both 2-dimensional B-mode imaging and for measurement of pulsed Doppler signals, by time sharing operation. The good real time characteristics of 2-dimensional B-mode imaging are retained, together with a sufficiently high data rate for pulsed Doppler measurement, through use of simple means for performing interpolation in the Doppler signals Ultrasonic wave transmit/receive means (21,23 to 25,27) repetitively execute combinations of ultrasonic wave transmit/receive sequences, each combination consisting of a plurality of pulsed Doppler mode ultrasonic wave transmit/receive sequences and a single 2-dimensional B-mode imaging ultrasonic wave transmit/receive sequence. Demodulator means (38 to 41) demodulate the Doppler signals, based on the received signals that are acquired during the pulsed Doppler mode ultrasonic wave transmit/receive sequences. Sampling means (42 to 44) perform range gate sampling of the demodulated Doppler signals, and interpolation means (45) interpolate sampling values into the Doppler signal to replace sampling values which are lost during execution of the 2-dimensional B-mode imagaing ultrasonic wave transmit/receive sequences. Doppler signal processing means (46 to 48 ) perform processing of the sampling signals following interpolation. 2-dimensional B-mode imaging means process the received signal that is acquired by the 2-dimensional B-mode imaging sequences.
    • 公开了一种诊断成像装置,其中超声波发射/接收装置通常用于二维B模式成像和脉冲多普勒信号的测量,通过分时操作。 通过使用在多普勒信号中执行插值的简单手段,保留了二维B模式成像的良好实时特性以及用于脉冲多普勒测量的足够高的数据速率。超声波发射/接收装置(21,23 重复执行超声波发送/接收序列的组合,每个组合由多个脉冲多普勒模式超声波发射/接收序列和单个2维B模式成像超声波发射/接收序列组成。 基于在脉冲多普勒超声波发射/接收序列期间获取的接收信号,解调器装置(38至41)解调多普勒信号。 采样装置(42至44)对解调的多普勒信号进行范围门采样,并且插值装置(45)将采样值内插到多普勒信号中以替代在执行二维B模式想像超声波期间丢失的采样值 发送/接收序列。 多普勒信号处理装置(46〜48)进行插补后的采样信号的处理。 2维B模式成像装置处理通过2维B模式成像序列获取的接收信号。
    • 8. 发明授权
    • Echo beam former for an ultrasonic diagnostic apparatus
    • 用于超声波诊断装置的回波束形成器
    • US5417217A
    • 1995-05-23
    • US193082
    • 1994-02-04
    • Dai MoritaTakeshi MotodaniTakao Higashiizumi
    • Dai MoritaTakeshi MotodaniTakao Higashiizumi
    • A61B8/00G01S7/52G10K11/34
    • G01S7/52095G01S15/8927G01S7/52049G10K11/341G10K11/345
    • In an ultrasonic diagnostic apparatus which uses at least part of an array of a plurality of ultrasonic vibrators as an aperture for ultrasonic beam formation, sends ultrasonic waves into an object, receives echoes from the object, delays the output echo signals of a plurality of vibrators participating in receiving the echoes by a given quantity, adds up the delayed echo signals for echo beam forming, and forms a picture of an internal structure of the object by using the signals obtained by echo beam forming, the echo beam forming is characterized by forming a plurality of partial apertures in an aperture of an array of ultrasonic vibrators, delaying the echo signals provided by groups of vibrators included in the plurality of partial apertures by a given quantity determined so that a plurality of echo beams having a common focal point are formed, adding up the delayed echo signals of each group, detecting the respective sums of the delayed echo signals of the groups, and adding up the respective detected signals of the groups.
    • PCT No.PCT / JP92 / 01049 Sec。 371日期1994年2月4日 102(e)日期1994年2月4日PCT提交1992年8月19日PCT公布。 出版物WO93 / 03675 日期:1993年3月4日。在超声波诊断装置中,使用多个超声波振子的阵列的至少一部分作为超声波波束形成的孔径,将超声波发送到对象中,从对象接收回波,延迟输出 参与以给定量接收回波的多个振动器的回波信号相加用于回波波束形成的延迟回波信号,并且通过使用通过回波波束形成获得的信号形成对象的内部结构的图像, 回波波束形成的特征在于在超声波振动器阵列的孔中形成多个部分孔,将包括在多个部分孔径中的振动器组提供的回波信号延迟确定的给定量,使得多个回波束 形成共同的焦点,将每组的延迟回波信号相加,检测组的延迟回波信号的各自的和 并且将各组的相应检测信号相加。