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    • 15. 发明申请
    • Ultrasonic diagnostic apparatus and method for controlling the same
    • 超声波诊断装置及其控制方法
    • US20060004288A1
    • 2006-01-05
    • US11224265
    • 2005-09-12
    • Makoto KatoKazuhiro Sunagawa
    • Makoto KatoKazuhiro Sunagawa
    • A61B8/00
    • A61B8/0858A61B5/02007A61B5/1075A61B8/543
    • An ultrasonic diagnostic apparatus includes: a transmitting section for driving an ultrasonic probe sending out an ultrasonic transmitted wave toward a body tissue of an organism; a receiving section for receiving an ultrasonic reflected wave, produced by getting the transmitted wave reflected by the body tissue, through the probe; a phase detecting section for detecting the phase of the reflected wave; and a computing section for calculating the magnitudes of positional displacement at multiple measuring points on the body tissue based on a signal obtained by the detecting section and calculating the greatest thickness difference between two of the measuring points and/or an elastic property based on the magnitudes of positional displacement. The computing section calculates the maximum and minimum thicknesses or thickness variations between the two points based on the magnitudes of positional displacement at the two points during a part of one cardiac cycle, and calculates the greatest thickness difference and/or elastic property as the difference between the maximum and minimum values.
    • 超声波诊断装置包括:发送部,用于驱动向生物体的身体组织发送超声波发送波的超声波探头; 接收部,其通过由所述探针获得由所述身体组织反射的透射波而产生的超声波反射波; 相位检测部分,用于检测反射波的相位; 以及计算部,其基于由所述检测部获得的信号,计算所述两个测量点之间的最大厚度差和/或基于所述大小的弹性特性来计算所述身体组织上的多个测量点的位置位移的大小 的位置位移。 计算部分基于在一个心动周期的一部分期间的两个点处的位置位移的大小来计算两个点之间的最大和最小厚度或厚度变化,并且计算最大厚度差和/或弹性属性作为 最大值和最小值。
    • 18. 发明授权
    • Method of molding cavity plate of ink jet printer head
    • 喷墨打印机头腔模板成型方法
    • US06224806B1
    • 2001-05-01
    • US09195158
    • 1998-11-18
    • Toshio InoseMakoto Kato
    • Toshio InoseMakoto Kato
    • B29C3340
    • B41J2/1637B29C33/0033B29C33/302B29C33/42B29C45/2628B41J2/161B41J2002/14362
    • A cavity plate of an ink jet printer head is adapted to be attached to a piezoelectric element member and has walls prescribing a plurality of ink storing chambers and a plurality of ink discharge holes. A mold for molding the cavity is provided with: a corniform block member including (i) a plurality of corniform convex portions to mold the ink storing chambers, each having an opening portion on a side of an attachment surface of the cavity plate to be attached to the piezoelectric element member, and (ii) a plurality of corniform concave portions to mold partition walls of the cavity plate for partitioning each of the ink storing chambers; and plurality of pin members to mold the ink discharge holes, which are continuous to the ink storing chambers such that the ink discharge holes have straight tubular portions respectively from the ink storing chambers to ink discharge tip portions at an ink discharge surface of the cavity plate on an opposite side of the attachment surface. The pin members include U-shaped column portions, to mold connection portions between the ink storing chambers and the straight tubular portions, respectively. Each of the U-shaped column portions has (i) a half-cylindrical portion and (ii) a prism portion. The pin members also include cylindrical portions to mold the straight tubular portions respectively.
    • 喷墨打印机头的腔板适于附接到压电元件,并具有规定多个墨水储存室和多个墨水排放孔的壁。 一种用于模制空腔的模具设置有:玉米形块状构件,其包括:(i)多个方形的凸起部分,用于模制储墨室,每个具有在待连接的空腔板的附接表面的侧面上的开口部分 和(ii)多个玉米角凹部,以模制所述腔板的分隔壁,用于分隔每个所述储墨室; 以及多个销构件,以模制与储墨室连续的排墨孔,使得排墨孔在空腔板的油墨排放表面处分别具有从储墨室到排墨端部的直管状部分 在附接表面的相对侧上。 销构件包括U形柱部分,以分别在储墨室和直管状部分之间模制连接部分。 每个U形柱部分具有(i)半圆柱形部分和(ii)棱镜部分。 销构件还包括分别模制直管状部分的圆柱形部分。