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    • 1. 发明授权
    • Dynamic optometer
    • 动态视光师
    • US4772114A
    • 1988-09-20
    • US881699
    • 1986-07-03
    • Yukio FukuiTsunehiro TakedaTakeo Iida
    • Yukio FukuiTsunehiro TakedaTakeo Iida
    • A61B3/10A61B3/103
    • A61B3/103
    • In a dynamic optometer, a variation in the direction of a subject's eye, namely, in the direction of gaze is measured by a direction detector to tilt a bi-axial rocking mirror according to the output of the detector, and an actual image of an eyeball formed by a pair of concave spherical mirrors is reflected to an optical system by the rocking mirror varying the direction of incidence. A second actual image which is formed immediately before a light source by the optical system is stably fixated in one direction, so that the eye is irradiated with light constantly from the front side in spite of eye movements. Accordingly, the refractive power can be measured, unaffected by the movement of an eyeball.
    • 在动态光学计数器中,通过方向检测器测量被检者眼睛方向,即注视方向的变化,以根据检测器的输出倾斜双轴摇摆镜,并且实际的图像 由一对凹球面镜形成的眼球通过改变入射方向的摇镜被反射到光学系统。 通过光学系统紧接在光源之前形成的第二实际图像被稳定地固定在一个方向上,使得尽管有眼睛的移动,眼睛从前侧恒定地照射光。 因此,可以测量屈光力,而不受眼球的运动的影响。
    • 4. 发明授权
    • Sensor for magnetoencephalography meter and supermultichannel magnetoencephalography meter system using the same
    • 磁脑成像仪和超声道脑电图仪测量系统的传感器
    • US07672707B2
    • 2010-03-02
    • US10516106
    • 2003-06-11
    • Tsunehiro Takeda
    • Tsunehiro Takeda
    • A61B5/05
    • A61B5/04008
    • This invention relates to a super-multichannel MEG system comprising sensors produced by printing sensor coils on thin films in positions shifted from each other and by laminating multiple thin-film sensor coils together. Intended for use in a multichannel MEG system comprising a dewar, the sensors are arrayed in the dewar to detect biomagnetism and the Superconducting QUantum Interference Devices (SQUIDs) to detect signals coming from the sensors. These sensors are characterized by the sensor coils being printed on thin films in positions shifted from each other laterally and longitudinally and by their being laminated in the required number.
    • 本发明涉及一种超多通道MEG系统,其包括通过在彼此偏移的位置的薄膜上印刷传感器线圈并通过将多个薄膜传感器线圈层叠在一起而产生的传感器。 旨在用于包含杜瓦瓶的多通道MEG系统中,将传感器排列在杜瓦瓶中以检测生物磁性和超导QUantum干涉仪(SQUID)以检测来自传感器的信号。 这些传感器的特征在于,传感器线圈被印刷在薄膜上,横向和纵向彼此偏移并且以所需数量层叠。
    • 6. 发明授权
    • Paper web width adjustment device
    • 纸幅宽度调节装置
    • US06829992B2
    • 2004-12-14
    • US10390612
    • 2003-03-19
    • Yoshio KobayashiTsunehiro Takeda
    • Yoshio KobayashiTsunehiro Takeda
    • B41F1354
    • B65H23/038B65H2301/51214B65H2403/45B65H2404/1441B65H2511/12B65H2220/02
    • The present invention relates to a device for adjusting the width of a paper web at a rotary lithographic press and the object of the present invention is to prevent ink or specks of paper from becoming attached to contact parts of a pressing member so as to contaminate the surface of the paper web, and to enable straightforward fitting and removing of a rotatable pressing member. This configuration is therefore provided with one or more pressing members 1 with a plurality of contact members 11 provided integrally in a rotating manner so as to be capable of being mutually separated along the widthwise direction of a paper web W, a support shaft 20 supporting the pressing member(s) 1 in a rotatable manner, wavy surface adjustment means 2 capable of moving the support shaft 20 towards and away from the surface of the paper web W, and pressing member rotation drive means 4 for simultaneously rotating and driving the pressing member 1. It is then possible to move at least one of the pressing members 1 towards and away from the surface of the paper web W and rotational drive is possible in such a manner that rotational speed of the peripheral surfaces of the contact member 11 of the pressing member(s) 1 may be different to the speed of travel of the paper web W.
    • 本发明涉及一种用于在旋转式平版印刷机上调节纸幅宽度的装置,其目的在于防止纸张的墨水或斑点附着在按压件的接触部分上,从而污染 纸幅的表面,并且能够直接安装和拆卸可旋转的按压构件。因此,该构造设置有一个或多个按压构件1,其具有以旋转方式一体设置的多个接触构件11,以便能够 沿着纸幅W的宽度方向相互分离,以可旋转方式支撑按压构件1的支撑轴20,能够使支撑轴20朝向和远离表面移动的波浪表面调节装置2 纸幅W和按压构件旋转驱动装置4,用于同时旋转和驱动按压构件1.然后可以移动至少一个按压 g构件1朝向和远离纸幅W的表面并且可以以使得按压构件1的接触构件11的外周表面的旋转速度可以不同于 纸幅W的行程