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    • 1. 发明授权
    • Ultrasonic diagnostic apparatus
    • 超声波诊断仪
    • US5588433A
    • 1996-12-31
    • US571103
    • 1995-12-12
    • Takeshi ShiraiWataru Yagi
    • Takeshi ShiraiWataru Yagi
    • G01B17/00A61B8/00A61B8/06G01B17/06G06T5/20
    • G06T5/20
    • There is provided an ultrasonic diagnostic apparatus in which ultrasonic waves are transmitted and received in directions each along the associated one of a plurality of scan lines extending in a depth direction within the subject to obtain received signals, and data representative of displacement of the respective pixel points along each scan line within the subject are evaluated on the basis of the thus obtained received signals, thereby displaying an image based on the data representative of the displacement. According to the ultrasonic diagnostic apparatus, color data of a pixel train involved in the presence of displacement (color-displayed) appearing continuously by less than N pixels (typically, one pixel to two or three pixels at most) is replaced by data representative of the absence of the displacement (not color-displayed).
    • 提供了一种超声波诊断装置,其中超声波沿着沿着在对象内的深度方向延伸的多条扫描线中的相关联的一条扫描线的方向被发送和接收,以获得接收信号,并且表示各个像素的位移的数据 基于由此获得的接收信号来评估对象内每个扫描线的点,从而基于表示位移的数据显示图像。 根据超声波诊断装置,通过少于N个像素(通常为1个以上,2个以下或3个以下的像素)出现的位移(彩色显示)存在的像素列的颜色数据由代表 没有位移(不是彩色显示)。
    • 8. 发明授权
    • Magnetic circuit member
    • 磁路元件
    • US06800146B2
    • 2004-10-05
    • US10100003
    • 2002-03-19
    • Akikazu MatsumotoWataru Yagi
    • Akikazu MatsumotoWataru Yagi
    • H01F114
    • H01F1/14766C21D2211/006
    • A magnetic circuit member contains a matrix portion including iron and silicon; and graphite particles in the matrix. Each of the graphite particles has either a spherical shape or a compact vermicular shape. The inclusion of graphite particles having a relatively low conductivity in the matrix portion having a good magnetic property prevents eddy currents from forming in the magnetic circuit member in an alternating magnetic field, thus preserving the original magnetic property found in the absence of the alternating magnetic field. Each of the graphite particles has a spherical or compact vermicular shape that does not intercept magnetic flux passing through the material forming the magnetic circuit member. The graphite contained in the material improves liquidity of the melted material in casting, thus the magnetic circuit member can be manufactured by casting.
    • 磁路部件含有包括铁和硅的基体部分; 和石墨颗粒在基质中。 每个石墨颗粒具有球形或致密的蠕形形状。 在具有良好磁性的基体部分中包含具有较低导电性的石墨颗粒在交变磁场中防止在磁路部件中形成涡流,从而保持在不存在交变磁场的情况下发现的原始磁特性 。 每个石墨颗粒具有不截留通过形成磁路部件的材料的磁通的球形或致密的蠕形状。 包含在该材料中的石墨改善了铸造中的熔融材料的流动性,因此可以通过铸造来制造磁路部件。
    • 10. 发明授权
    • Ultrasound imaging device in medicine displaying freeze-frame without
flickering
    • 超声成像装置在药物显示冻结框架中不闪烁
    • US5421332A
    • 1995-06-06
    • US306195
    • 1994-09-14
    • Yuichiro IshiiWataru Yagi
    • Yuichiro IshiiWataru Yagi
    • A61B8/14A61B8/00G01S7/06G01S15/89H04N7/18
    • G01S7/068G01S15/8906
    • An ultrasound imaging device having functions of storing data of at least one image in a memory and reading the data from the memory to show a freeze-frame on a display in response to a freeze instruction given by a user includes a discerning signal generation unit for generating a discerning signal which marks a change from one image frame to a next image frame in a video signal of ultrasound images, a discerning signal adding unit for marking a point of the change in the video signal by adding the discerning signal to the video signal, a control unit for stopping image data of the video signal from being stored in the memory after receiving the freeze instruction at a moment when the discerning signal is detected in the video signal, so that last two fields of the video signal stored in the memory and forming the freeze-frame are an even field and an odd field of the same frame.
    • 一种超声波成像装置,具有将存储器中的至少一个图像的数据存储在存储器中的功能,并且响应于由用户给出的冻结指令在存储器中读取数据以显示冻结帧的功能包括:识别信号生成单元,用于 在超声图像的视频信号中产生标记从一个图像帧到下一个图像帧的变化的识别信号;识别信号添加单元,用于通过将视频信号添加到视频信号中来标记视频信号的变化点 控制单元,用于在视频信号中检测到识别信号的时刻停止在接收到冻结指令之后停止将视频信号的图像数据存储在存储器中,使得存储在存储器中的视频信号的最后两个场 并且形成冻结帧是同一帧的偶数场和奇数场。