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    • 2. 发明授权
    • Tachykinin peptides, precursor peptides thereof and genes encoding the same
    • 速激肽,其前体肽和编码其的基因
    • US07371810B1
    • 2008-05-13
    • US10048401
    • 2000-07-25
    • Hiroyuki MinakataEiko IwakoshiKyoko Kuroda
    • Hiroyuki MinakataEiko IwakoshiKyoko Kuroda
    • A61K38/00
    • C07K7/22A61K38/00
    • Tachykinin peptide isolated and purified from the posterior salivary gland of the mollusk Octopus vulgaris. The tachykinin peptide provides a new approach for developing medicaments and pesticides through studies on the structural activity correlation at the molecular level, is characterized by: (1) number of amino acid residues is 12; (2) N terminal of the peptide is Lys; (3) an amino acid sequence of 5 amino acids from C-terminal is represented by the following amino acid sequence: Phe-Xaa-Gly-Leu-Met (SEQ ID NO: 6), (wherein, Xaa is Val, lie, Phe or Tyr), especially following amino acid sequences are provided: Lys-Pro-Pro-Ser-Ser-Ser-Glu-Phe-Val-Gly-Leu-Met (SEQ ID NO: 1), Lys-Pro-Pro-Ser-Ser-Ser-Glu-Phe-Ile-Gly-Leu-Met (SEQ ID NO: 2).
    • 从软体动物章鱼的后唾液腺分离和纯化速效肽。 速激肽肽通过研究分子水平的结构活性相关性,提供了开发药物和农药的新方法,其特征在于:(1)氨基酸残基数为12; (2)肽的N末端为Lys; (3)来自C末端的5个氨基酸的氨基酸序列由以下氨基酸序列表示:Phe-Xaa-Gly-Leu-Met(SEQ ID NO:6),(其中,Xaa为Val, Phe或Tyr),特别是提供以下氨基酸序列:Lys-Pro-Pro-Ser-Ser-Ser-Glu-Phe-Val-Gly-Leu-Met(SEQ ID NO:1),Lys-Pro-Pro- Ser-Ser-Ser-Glu-Phe-Ile-Gly-Leu-Met(SEQ ID NO:2)。
    • 4. 发明授权
    • Mobile device system and mobile device
    • 移动设备系统和移动设备
    • US08311480B2
    • 2012-11-13
    • US11903844
    • 2007-09-24
    • Hideki NagataHiroyuki MinakataTakayuki IdeAtsushi KohashiMinoru Omaki
    • Hideki NagataHiroyuki MinakataTakayuki IdeAtsushi KohashiMinoru Omaki
    • H04B7/00
    • H04W4/08H04M1/7253H04M1/72572H04W4/02H04W8/186
    • A mobile device system includes a plurality of mobile devices, each to which unique identification information is assigned, wherein each mobile device includes a location-information acquisition unit, a communication unit, and a group registration unit. The communication unit links location information acquired by the location-information acquisition unit of the mobile device and the identification information of the mobile device, sends the information to other mobile devices, and receives from the other mobile devices location information of the other mobile devices and identification information linked to the location information of the other mobile devices. The group registration unit detects other mobile devices located within a predetermined range of the mobile device on the basis of the location information of the other mobile devices and the location information of the mobile device and registers the identification information of the detected other mobile devices as a group.
    • 移动设备系统包括多个移动设备,每个移动设备分别具有唯一的标识信息,其中每个移动设备包括位置信息获取单元,通信单元和组注册单元。 通信单元链接由移动设备的位置信息获取单元获取的位置信息和移动设备的识别信息,将信息发送到其他移动设备,并从其他移动设备接收其他移动设备的位置信息和 与其他移动设备的位置信息相关联的识别信息。 组注册单元基于其他移动设备的位置信息和移动设备的位置信息来检测位于移动设备的预定范围内的其他移动设备,并将检测到的其他移动设备的识别信息注册为 组。
    • 5. 发明授权
    • Zoom optical system, and electronic equipment incorporating the same
    • 变焦光学系统,以及并入其中的电子设备
    • US07385767B2
    • 2008-06-10
    • US11072412
    • 2005-03-07
    • Hiroyuki Minakata
    • Hiroyuki Minakata
    • G02B15/14
    • G02B17/086G02B13/0025G02B13/003G02B13/007G02B13/009G02B15/00G02B17/0816G02B17/0832G02B17/0848
    • The invention concerns a zoom optical system in which, for zooming, an optical function surface is rotated about a point away from it to change the position of a light beam that passes through the optical function surface. The zoom optical system comprises a stop 2 and one or more optical elements 10 located on an object side with respect to the stop 2, each having at least one optical function surface 11, 12, 13, and is adapted to form an image of a distant object O at varying magnifications. At least one optical function surface 12 comprises a continuous surface, and is constructed such that there is a continuous change in at least the radius of curvature in a sectional direction from one end to another end. Upon zooming, at least one optical element 10 having optical function surfaces 11, 12, 13 is rotated about a point S that is not contiguous to one optical function surface.
    • 本发明涉及一种变焦光学系统,其中,为了变焦,光学功能表面围绕其远离的点旋转以改变通过光学功能表面的光束的位置。 变焦光学系统包括止动器2和相对于止动件2位于物体侧的一个或多个光学元件10,每个具有至少一个光学功能表面11,12,13,并且适于形成 遥远的物体O在不同的放大倍数。 至少一个光学功能表面12包括连续表面,并被构造成使得至少在从一端到另一端的截面方向上的曲率半径存在连续变化。 在变焦时,具有光学功能表面11,12,13的至少一个光学元件10围绕不与一个光学功能表面邻接的点S旋转。
    • 6. 发明申请
    • Optical system, and electronic equipment that incorporates the same
    • 光学系统和包含相同的电子设备
    • US20050248861A1
    • 2005-11-10
    • US11119264
    • 2005-05-02
    • Hiroyuki Minakata
    • Hiroyuki Minakata
    • G02B5/04G02B5/10G02B17/04G02B17/08G02B25/00
    • G02B17/086G02B5/04G02B17/04G02B17/08G02B17/0812G02B25/001
    • The invention relates to a compact, slimmed-down, low-cost optical system and electronic equipment that incorporates the same. The optical system at least comprises a stop 2, at least one object-side reflecting surface 12 located on the object side with respect to the stop 2 and inclined from the optical axis of the optical system, at least one image-side reflecting surface 22, 23 located on the image side of the optical system with respect to the stop 2 and inclined from the optical axis, and an image pickup device 3. Regarding all reflecting surfaces inclined from the optical axis in the optical system, the reference plane for each reflecting surface is given by a plane defined by an entrance-side axial chief ray and a reflection-side axial chief ray regarding each reflecting surface. In the invention, the reference plane for at least one object-side reflecting surface 12 and the reference plane for at least one image-side reflecting surface 22, 23 cross at any angle, and at least one object-side reflecting surface 12 and at least one image-side reflecting surface 22, 23 have a rotationally asymmetric aspheric shape.
    • 本发明涉及一种紧凑,薄型,低成本的光学系统和包含该光学系统的电子设备。 光学系统至少包括止动件2,相对于止动件2位于物体侧的至少一个物体侧反射表面12并且从光学系统的光轴倾斜至少一个图像侧反射表面22 23位于光学系统相对于止挡件2的图像侧并且从光轴倾斜,以及图像拾取装置3.关于从光学系统中的光轴倾斜的所有反射表面,对于每个 反射面由与入射侧轴线主射线和反射面轴向主射线相关的平面所确定。 在本发明中,用于至少一个物体侧反射表面12的参考平面和用于至少一个图像侧反射表面22,23的参考平面以任何角度交叉,并且至少一个物体侧反射表面12和 至少一个图像侧反射表面22,23具有旋转非对称非球面形状。
    • 7. 发明申请
    • Zoom optical system, and electronics incorporating the same
    • 变焦光学系统,以及并入其中的电子设备
    • US20050128601A1
    • 2005-06-16
    • US11008945
    • 2004-12-13
    • Hiroyuki Minakata
    • Hiroyuki Minakata
    • G02B15/177G02B15/14
    • G02B15/177
    • The invention relates to a zoom optical system that can offer an effective tradeoff between low cost and size reductions, and electronic equipment that incorporates the same. The zoom optical system comprises, in order from an object side thereof, a first lens group G1 of negative refracting power, an aperture stop S, a second lens group G2 of positive refracting power, a third lens group G3 of negative refracting power and a fourth lens group G4 of positive refracting power, and satisfies the following condition. 2
    • 本发明涉及一种能够提供低成本和降低尺寸之间的有效折中的变焦光学系统以及包含该变焦光学系统的电子设备。 变焦光学系统从其物体侧依次包括负折射力的第一透镜组G 1,孔径光阑S,正折射率的第二透镜组G 2,负折射率的第三透镜组G 3 功率和正折射率的第四透镜组G 4,并且满足以下条件。 <?in-line-formula description =“In-line Formulas”end =“lead”?> 2 <| d > w23 t23 <200 <?in-line-formula description =“In-line Formulas”end =“tail”?>这里d 是在广角端处的G 1和G 2之间的间隔,d 2 t 12是在远摄端处的G 1和G 2之间的间隔,d 23是 在广角端的G 2和G 3之间的间隔,d t23 是望远端的G 2和G 3之间的间隔。
    • 8. 发明授权
    • Eyepiece optical system
    • 目镜光学系统
    • US06809875B2
    • 2004-10-26
    • US10700572
    • 2003-11-05
    • Hiroyuki Minakata
    • Hiroyuki Minakata
    • G02B2500
    • G02B25/001
    • An eyepiece optical system is interposed between the positions of an intermediate image and a pupil in a finder and includes, in order from the intermediate-image side, a first lens unit having a negative lens located at the most intermediate-image-side position and a second lens unit provided with a path-bending optical member and having positive power as a whole, satisfying the following condition: −20
    • 在取景器中的中间图像和光瞳的位置之间插入目镜光学系统,并且从中间像侧依次包括具有位于最中间图像侧位置的负透镜的第一透镜单元, 具有路径弯曲光学构件并具有整体正功率的第二透镜单元满足以下条件:其中,sf1是负透镜的整形因子,并且表示为(r11 + r12)/(r11-r12) ,其中r11是负透镜的中间图像侧表面的曲率半径,r12是负透镜的光瞳侧表面的曲率半径。