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    • 1. 发明授权
    • Magnetic-field measurement jig, magnetic-field measurement program, and inspection device provided with magnetic position detector
    • 磁场测量夹具,磁场测量程序和带有磁位置检测器的检测装置
    • US08666474B2
    • 2014-03-04
    • US13503956
    • 2010-10-15
    • Michiyo TaniiShingo KawasakiMichiyuki FujiwaraTakashi Ishizuka
    • Michiyo TaniiShingo KawasakiMichiyuki FujiwaraTakashi Ishizuka
    • A61B5/06
    • G01R33/1269
    • To provide a highly reliable inspection device that prevents a loss in reliability of inspection that uses information from a position detector as a result of the influence of magnetic bodies or the like that are present in the environment, the inspection device includes biological information measurement units that measure biological information of an inspected target and form an image containing the biological information, a magnetic position detector that detects the position of at least one of the biological information measurement units and the inspection target, and a control unit that controls the biological information measurement units and the magnetic position detector; and further includes the control unit being provided with an environmental magnetic field measurement unit that uses the output of the magnetic position detector to measure distortion of the magnetic field in the measured space in which the biological information measurement units are placed.
    • 为了提供高度可靠的检查装置,其防止由于存在于环境中的磁体等的影响而使用来自位置检测器的信息的检查的可靠性的损失,所述检查装置包括生物信息测量单元, 测量检查对象的生物信息,形成包含生物信息的图像,检测生物信息测量单元和检查对象中的至少一个的位置的磁性位置检测器,以及控制生物体信息测定单元 和磁性位置检测器; 并且还包括设置有环境磁场测量单元的控制单元,该环境磁场测量单元使用磁性位置检测器的输出来测量放置生物信息测量单元的测量空间中的磁场的失真。
    • 2. 发明申请
    • MAGNETIC-FIELD MEASUREMENT JIG, MAGNETIC-FIELD MEASUREMENT PROGRAM, AND INSPECTION DEVICE PROVIDED WITH MAGNETIC POSITION DETECTOR
    • 磁场测量仪,磁场测量程序和检测装置,带有磁性位置检测器
    • US20120209105A1
    • 2012-08-16
    • US13503956
    • 2010-10-15
    • Michiyo TaniiShingo KawasakiMichiyuki FujiwaraTakashi Ishizuka
    • Michiyo TaniiShingo KawasakiMichiyuki FujiwaraTakashi Ishizuka
    • A61B5/05G01B7/14
    • G01R33/1269
    • In order to provide a highly reliable inspection device that prevents a loss in reliability of inspection that uses information from a position detector as a result of the influence of magnetic bodies or the like that are present in the environment, the inspection device is characterized by being provided with biological information measurement units (10, 12) that measure biological information of an inspected target and form an image containing said biological information, a magnetic position detector (50) that detects the position of at least one of the aforementioned biological information measurement units and the inspection target, and a control unit (14) that controls the aforementioned biological information measurement units and the aforementioned magnetic position detector (50); and is further characterized by the aforementioned control unit (14) being provided with an environmental magnetic field measurement unit (301) that uses the output of the aforementioned magnetic position detector (50) to measure distortion of the magnetic field in the measured space in which the aforementioned biological information measurement units are placed.
    • 为了提供高度可靠的检查装置,其防止由于环境中存在的磁体等的影响而使用来自位置检测器的信息的检查可靠性的损失,检查装置的特征在于: 设置有测量检测对象的生物信息的生物信息测量单元(10,12),并形成包含所述生物信息的图像;磁位置检测器(50),其检测所述生物信息测量单元 和检查对象,以及控制上述生物信息测量单元和上述磁性位置检测器(50)的控制单元(14)。 并且其特征还在于上述控制单元(14)设置有环境磁场测量单元(301),该环境磁场测量单元使用上述磁位置检测器(50)的输出来测量测量空间中的磁场的失真,其中 放置上述生物信息测量单元。
    • 7. 发明申请
    • BIOLOGICAL OPTICAL MEASUREMENT APPARATUS
    • 生物光学测量装置
    • US20100245828A1
    • 2010-09-30
    • US12301819
    • 2007-05-18
    • Shingo KawasakiKimitaka Anami
    • Shingo KawasakiKimitaka Anami
    • G01N21/55G06K9/00
    • G01N21/55A61B5/0059
    • A biological optical measurement apparatus including an applied unit having plural light irradiating probes for irradiating an object with light and plural light detecting probes for detecting light returning from the object, and worn by the object, a measuring unit for measuring the amount of light detected by the light detection probes, a two-dimensional image constructing unit for constructing two-dimensional topographic images from the measurement result of the detected light amount, and a monitor for displaying the two-dimensional topographic images, is further equipped with a three-dimensional image constructing unit for making the two-dimensional topographic images correspond to measurement positions and superposing the two-dimensional topographic images in order of measurement time to thereby construct a three-dimensional image, the thus-constructed three-dimensional image being displayed on the monitor.
    • 一种生物光学测量装置,包括:具有多个用于照射物体的光照射探测器的被施加单元和用于检测从物体返回并被物体磨损的光的多个光检测探头;测量单元,用于测量由物体检测到的光量; 光检测探针,用于根据检测到的光量的测量结果构建二维地形图像的二维图像构造单元和用于显示二维地形图像的监视器还配备有三维图像 用于使二维地形图像对应于测量位置的构造单元,并且按照测量时间的顺序叠加二维地形图像,从而构造三维图像,由此构造的三维图像被显示在监视器上。
    • 8. 发明授权
    • Optical measurement apparatus for living body
    • 生物体光学测量装置
    • US07463916B2
    • 2008-12-09
    • US10398185
    • 2001-10-16
    • Shingo KawasakiEiju Watanabe
    • Shingo KawasakiEiju Watanabe
    • A61B5/1455
    • A61B5/14553A61B5/0048A61B5/4094A61B2017/00057A61B2562/0233A61B2562/046
    • An optical measurement apparatus for a living body having light transmitting elements for transmitting light to a plurality of positions in areas to be examined within a living body detects light which has been transmitted by the light transmitting elements after passing through the living body at a plurality of positions in the examination area; applies to the living body a load to which the living body responds; calculates signals representing an intensity change of the transillumination detected by the detecting the light at the measuring points based on the positional relation between each light transmitting position and light detecting position when a load is applied to the living body and when a load is not applied; calculates time variations of one signal among two signals calculated at the measuring points based on said positional relation; and displays graphs of the above-calculated signals in correspondence with said positional relation.
    • 一种用于生物体的光学测量装置,其具有用于将光透射到生物体内的被检查区域中的多个位置的光透射元件,检测由多个发光元件通过活体后的透光元件透射的光 考场地位; 适用于生物体对生物进行反应的负荷; 基于当向所述生物体施加负荷时和当不施加负载时,基于每个光发射位置和光检测位置之间的位置关系,计算表示通过检测所述测量点处的光所检测的透照度的强度变化的信号; 基于所述位置关系计算在所述测量点处计算的两个信号中的一个信号的时间变化; 并显示与所述位置关系对应的上述计算出的信号的图形。
    • 9. 发明授权
    • Vehicle navigation device and method of displaying POI information using same
    • 车载导航装置及其使用方法显示POI信息
    • US07286931B2
    • 2007-10-23
    • US10354900
    • 2003-01-30
    • Shingo Kawasaki
    • Shingo Kawasaki
    • G01C21/34
    • G01C21/3682
    • A vehicle navigation device is provided for permitting the display of the current POI (Point of Interest) information about points of interest which serve as landmarks near a guidance route to the destination, thereby improving visibility when a user identifies the guidance route. A vehicle navigation device 50 is connected in communication with a provider 60 for offering transmission service of map information which includes the current POI information pertaining to locations on a map where the points of interest are located. The navigation device 50 includes a display unit 6, information input means 2, communications means 3, and control means 17. The control means 17 accesses the provider 60 through the communications means 3 when the guidance route to the destination is set by the information input means 2, to obtain the current POI information about an area near the set guidance route from the map information, so that the obtained current POI information is displayed on a screen of the display unit 6, together with the guidance route and a vehicle position mark for designating a present position of a vehicle.
    • 提供了一种车辆导航装置,用于允许显示当前POI(兴趣点)关于作为目的地的引导路线附近的地标的兴趣点的信息,从而在用户识别引导路线时提高可视性。 车辆导航装置50与提供者60连接,用于提供地图信息的传送服务,该地图信息包括与目的地所在地图上的位置有关的当前POI信息。 导航装置50包括显示单元6,信息输入装置2,通信装置3和控制装置17。 当通过信息输入装置2设定到目的地的引导路线时,控制装置17通过通信装置3访问提供者60,从地图信息获得关于设定的引导路线附近的区域的当前POI信息,从而 所获得的当前POI信息与指导路线和用于指定车辆的当前位置的车辆位置标记一起显示在显示单元6的屏幕上。