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    • 46. 发明授权
    • Ultrasonographic device and ultrasonographic method
    • 超声检查仪和超声检查仪
    • US07972269B2
    • 2011-07-05
    • US10565435
    • 2004-07-21
    • Tetsuya HayashiHiroshi KandaOsamu Arai
    • Tetsuya HayashiHiroshi KandaOsamu Arai
    • A61B8/00A61B8/06
    • A61B8/06A61B8/13
    • An ultrasound diagnostic apparatus including: a tomogram forming means forming a tomogram of a diagnosis portion of an examinee by transmitting/receiving an ultrasound wave to/from the examinee via an ultrasound probe; color Doppler image forming means forming a color Doppler image based on a Doppler signal obtained from the diagnosis portion; image processing means performing image processing on the tomogram and the color Doppler image; and display means displaying images obtained by the image processing means, the tomogram and the color Doppler image being color displayed on the display means, wherein the image processing means causes the color Doppler image to be displayed transparently.
    • 一种超声波诊断装置,包括:断层图像形成单元,通过经由超声波探头向所述受检者发送或接收超声波,形成被检体的诊断部的断层图像; 彩色多普勒图像形成装置,基于从诊断部获得的多普勒信号,形成彩色多普勒图像; 对所述断层图像和所述彩色多普勒图像执行图像处理的图像处理装置; 以及显示装置,其显示由所述图像处理装置获得的图像,所述断层图像和彩色多普勒图像在所述显示装置上显示,其中所述图像处理装置使所述彩色多普勒图像透明地显示。
    • 47. 发明申请
    • Ultrasonic enhanced-contrast imager and method
    • 超声增强对比成像仪及方法
    • US20070173723A1
    • 2007-07-26
    • US11723801
    • 2007-03-22
    • Hiroshi KandaTatsuya HayahiTsuyoshi MitakeMinoru Yoshida
    • Hiroshi KandaTatsuya HayahiTsuyoshi MitakeMinoru Yoshida
    • A61B8/00
    • A61B8/481A61B8/463G01S7/52038G01S15/8952
    • An ultrasonic enhanced-contrast imager and method includes an ultrasonic probe for transmitting and receiving an ultrasonic wave to and from an organism, a transmitting section for transmitting an ultrasonic signal to the ultrasonic probe, a receiving section for processing a response signal ultrasonic wave received by the ultrasonic probe, a filter for extracting a specific frequency component from the processed response signal, and a setting control section for setting a pass frequency band of the filter on the basis of a frequency band of the response signal from a contrast medium injected to the organism. A control section controls the operation of the filter in the set pass band, and the setting control section sets the center frequency of the pass band of the filter to be greater than f0 and less than 2f0, where f0 is the average frequency of the ultrasonic signal transmitted to the ultrasonic probe.
    • 一种超声波增强对比成像器和方法,包括用于向生物体发送超声波的超声波探头和用于向超声波探头发送超声波信号的发送部,用于处理由超声波探头接收的响应信号超声波的接收部, 超声波探头,用于从经处理的响应信号中提取特定频率分量的滤波器,以及设置控制部分,用于根据来自注入到所述滤波器的造影剂的响应信号的频带来设置滤波器的通过频带 生物。 控制部分控制在设定通带中的滤波器的操作,并且设置控制部分将滤波器的通带的中心频率设置为大于f 0 0 <小于2f 0 ,其中f 0是超声波信号传输到超声波探头的平均频率。
    • 49. 发明授权
    • Edge-holding aligner
    • 边缘固定对准器
    • US07019817B2
    • 2006-03-28
    • US10884989
    • 2004-07-07
    • Yasuhiko HashimotoYasuo HirookaTakao YamaguchiHiroshi Kanda
    • Yasuhiko HashimotoYasuo HirookaTakao YamaguchiHiroshi Kanda
    • G03B27/58G03B27/62
    • G03B27/58
    • The angular position of a notch (17) is determined on the basis of data provided by second notch detectors (24a) and (24b) and an encoder (25). A controller (38) turns a rotational arm (22) for angular displacement such that holders (26) and (27) are displaced in a circumferential direction B from the notch (17), and then the holders (26) and (27) hold a wafer (19). Since the holders (26) and (27) are in touch with edges in which the notch (17) is not formed, the first notch detector (23) is able to detect the notch (17) without difficulty. Thus the position of the wafer (19) relative to the rotational arm (22) does not need to be changed several times depending on positions at which the holders (26) and (27) hold the wafer (19), which is necessary in the prior technology. The aligner (20) touches parts, not including the notch (17), of the wafer (19) and is capable of adjusting the position of the wafer (19) in a short time.
    • 基于由第二陷波检测器(24a)和(24b)和编码器(25)提供的数据确定凹口(17)的角位置。 控制器(38)转动用于角位移的旋转臂(22),使得保持器(26)和(27)从凹口(17)沿圆周方向B移位,然后保持器(26)和(27) 握住晶片(19)。 由于保持器(26)和(27)与未形成切口(17)的边缘接触,所以第一切口检测器(23)能够毫无困难地检测凹口(17)。 因此,根据保持器(26)和(27)保持晶片(19)的位置,晶片(19)相对于旋转臂(22)的位置不需要改变几次,这是在 先前的技术。 对准器(20)接触不包括晶片(19)的凹口(17)的部分,并且能够在短时间内调节晶片(19)的位置。
    • 50. 发明申请
    • Ultrasonograph
    • 超声波检查
    • US20060058677A1
    • 2006-03-16
    • US10512472
    • 2003-04-03
    • Kazutaka OkadaHiroshi KandaTsuyoshi OtakeTsuyoshi KimuraTatsuya Hayashi
    • Kazutaka OkadaHiroshi KandaTsuyoshi OtakeTsuyoshi KimuraTatsuya Hayashi
    • A61B8/14
    • G01S15/8954A61B8/00G01S7/52038G01S15/8963
    • An ultrasound diagnostic apparatus includes an ultrasound probe, a transmission unit for transmitting an ultrasound signal to an object to be examined via the ultrasound probe, a reception unit for processing a signal received by the ultrasound probe, and an image generating unit for generating an image on the basis of the received signal processed by the reception unit, wherein the transmission unit has a function of transmitting the ultrasound signals with varying frequency plural times in an identical direction at predetermined time intervals. The ultrasound signal transmitted plural times includes a first waveform in which the frequency increases and a second waveform in which the frequency decreases, and the reception unit has a function of phasing and adding received signals respectively corresponding to the first waveform and the second waveform, whereby, in tissue harmonic imaging, the penetration is improved, while the resolution is maintained.
    • 一种超声波诊断装置,包括超声波探头,经由超声波探头将超声信号发送到待检查对象的发送部,用于处理由超声波探头接收的信号的接收部,以及用于生成图像的图像生成部 基于由接收单元处理的接收信号,其中发送单元具有以预定的时间间隔在相同的方向上多次以变化的频率发送超声信号的功能。 多次发送的超声信号包括频率增加的第一波形和频率降低的第二波形,并且接收单元具有分别对应于第一波形和第二波形的接收信号相位和相加的功能,由此 ,在组织谐波成像中,渗透率得到改善,同时维持分辨率。