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    • 5. 发明授权
    • Ultrasonic motor
    • 超声波电机
    • US5440190A
    • 1995-08-08
    • US125682
    • 1993-09-22
    • Hiroyuki ImabayashiTakanao FujimuraToshimichi Iijima
    • Hiroyuki ImabayashiTakanao FujimuraToshimichi Iijima
    • H01L41/09H02N2/16H01L41/08
    • H02N2/106H02N2/0015
    • An ultrasonic motor comprising a vibrator for generating ultrasonic vibration, an electric-mechanical energy conversion element provided at node positions of the ultrasonic vibration, for generating ultrasonic vibration on the vibrator, the vibrator having an end face thereof which is inclined with respect to a central axis of the vibrator being rotatably driven by electric energy applied to the electric-mechanical energy conversion element, a plurality of displacement enlarging vibration pieces which are formed axially on the end face of the ultrasonic vibrator and in which grooves concentric with an outer periphery are arranged respectively at the node positions of the vibration, the displacement enlarging vibrating piece having a taper, and an element to be driven urged against end faces of the displacement enlarging vibration pieces by urging means and moved in a predetermined direction.
    • 一种超声波马达,包括用于产生超声波振动的振动器,设置在所述超声波振动的节点位置的机电能量转换元件,用于在所述振动器上产生超声波振动,所述振动器的端面相对于中心 所述振动器的轴线由施加到所述机电能量转换元件的电能旋转地驱动;多个位移扩大振动片,其在所述超声波振动器的端面上轴向形成,并且与所述超声波振动器的外周同心的槽 分别位于振动的节点位置,位移增大振动片具有锥形,并且被驱动的元件通过推动装置推压到位移增大振动片的端面并沿预定方向移动。
    • 6. 发明授权
    • Ultrasonic motor
    • 超声波电机
    • US5376858A
    • 1994-12-27
    • US125914
    • 1993-09-23
    • Hiroyuki ImabayashiTomoki Funakubo
    • Hiroyuki ImabayashiTomoki Funakubo
    • H01L41/09H02N2/12H01L41/08H02N2/00
    • H01L41/0993H02N2/106
    • An ultrasonic motor comprising an ultrasonic vibrator having a pair of resonators for transferring and enlarging ultrasonic vibration, an electro-mechanical energy converter arranged between the pair of resonators, for generating ultrasonic vibration by application of alternating voltage, and a fastening element for crimping and fixing the pair of resonators and the electro-mechanical energy conversion element to each other, and an element to be driven crimped to an end of at least one of the resonators and driven by elliptic vibration which is generated at the ends. The electro-mechanical energy converter element is a pair of sliding vibrators which are polarized respectively in a pair of directions which are perpendicular to an axial direction and which are shift 90.degree. from each other.
    • 一种超声波电动机,包括具有用于传递和扩大超声波振动的一对谐振器的超声波振动器,布置在所述一对谐振器之间的机电能量转换器,用于通过施加交流电压产生超声波振动,以及用于卷曲和固定的紧固元件 所述一对谐振器和所述机电能量转换元件彼此相对,以及被驱动的元件被卷曲到所述谐振器中的至少一个谐振器的端部并由在端部处产生的椭圆振动驱动。 机电能量转换器元件是一对滑动振动器,它们分别沿垂直于轴向的一对方向极化,并且彼此相差90度。
    • 8. 发明授权
    • Optical pick-up apparatus having hologram and beam splitter with
birefringent member and polarizing film
    • 具有全息图的光学拾取装置和具有双折射元件和偏光膜的分束器
    • US5621714A
    • 1997-04-15
    • US400757
    • 1995-03-08
    • Shohei KobayashiTakeshi YamazakiHiroyuki Imabayashi
    • Shohei KobayashiTakeshi YamazakiHiroyuki Imabayashi
    • G11B7/09G11B7/12G11B7/125G11B7/13G11B7/135G11B11/105G11B7/00
    • G11B7/1356G11B11/10543G11B7/124G11B7/126G11B7/127G11B7/131G11B7/1353G11B11/10576G11B7/09
    • An optical pick-up apparatus for reproducing information recorded on a magneto-optical record medium including a semiconductor laser emitting a linearly polarized laser beam, and a polarizing film provided between a glass prism and a uniaxial birefringent crystal prism. The laser beam emitted by the semiconductor laser is made incident upon the polarizing film via the glass prism and is reflected thereby. The apparatus further includes an objective lens projecting the laser beam reflected by the polarizing film onto the magneto-optical record medium as a fine spot and converging a return laser beam reflected by the record medium toward the polarizing film. The return beam transmitted through the polarizing film is refracted by the uniaxial birefringent crystal prism and is divided into ordinary light and extraordinary light, which are received by a first photodetector to produce a reproduced information signal. The return beam reflected by the polarizing film is made incident upon a hologram and is diffracted thereby into .+-.1-order beams which are received by a second photodetector to produce a focusing error signal and a tracking error signal.
    • 一种用于再现记录在包括发射线性偏振激光束的半导体激光器的磁光记录介质上的信息的光学拾取装置,以及设置在玻璃棱镜和单轴双折射晶体棱镜之间的偏振膜。 由半导体激光器发射的激光束经由玻璃棱镜入射到偏振膜上并被反射。 该装置还包括将由偏振膜反射的激光束投影到磁光记录介质上的物镜作为细微点,并将由记录介质反射的返回激光束会聚到偏振膜。 透过偏光膜的返回光束被单轴双折射晶体棱镜折射,分为普通的光和非常的光,由第一光电检测器接收以产生再现的信息信号。 由偏振膜反射的返回光束入射到全息图上,并被衍射为由第二光电检测器接收的+/- 1次光束,以产生聚焦误差信号和跟踪误差信号。
    • 9. 发明申请
    • Microinjection method and device
    • 显微注射法和装置
    • US20070087436A1
    • 2007-04-19
    • US10552923
    • 2004-04-09
    • Atsushi MiyawakiHiroyuki ImabayashiSachiko Karaki
    • Atsushi MiyawakiHiroyuki ImabayashiSachiko Karaki
    • C12N15/00C12M1/00
    • B82Y30/00C12M35/00
    • An object of the present invention is to provide a method for introducing a physiologically active substance such as a gene into a cell, which introduces a physiologically active substance such as any given gene into any given cell in a view under a microscope, while significantly reducing invasiveness to the cell, and a device used for the above method. The present invention provides a method for introducing a physiologically active substance into a cell, which comprises: allowing a physiologically active substance to attach around a needle having a diameter of 500 nm or less, provided that it is able to be inserted into a cell; and inserting the above-described needle into the cell; and a microinjection device for carrying out the aforementioned method.
    • 本发明的目的是提供一种将生物活性物质如基因导入细胞的方法,该细胞在显微镜下以任何给定的基因引入任何给定基因的生理活性物质,同时显着降低 对细胞的侵袭性,以及用于上述方法的装置。 本发明提供了一种将生理活性物质引入细胞的方法,其包括:使生理活性物质附着在直径为500nm以下的针上,只要其能够插入细胞中即可。 并将上述针插入细胞中; 以及用于实施上述方法的显微注射装置。