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    • 5. 发明申请
    • DATABASE APPARATUS, DATABASE CONSISTENCY SYSTEM, AND DATABASE CONSISTENCY METHOD
    • 数据库设备,数据库一致性系统和数据库一致性方法
    • US20120054157A1
    • 2012-03-01
    • US13320228
    • 2010-05-14
    • Kenichi FukasawaWataru SakuraiShigeru IwashinaDaisuke Akiyama
    • Kenichi FukasawaWataru SakuraiShigeru IwashinaDaisuke Akiyama
    • G06F7/00
    • H04W8/20G06F16/2365
    • There are provided a database apparatus for maintaining a consistency with another database apparatus having a different database key from a database key of the database apparatus, a database consistency system, and a database consistency method. A data collating unit in HLR collates data stored in a database of HLR and data stored in EIR with respect to “telephone number” and “terminal equipment number”. When it is determined by collating that there is an inconsistency between the data, a data deleting unit deletes such inconsistent data, a data collecting unit collects mobile station information from MS. A database updating unit updates the database by use of the collected mobile station information. A collected data notifying unit notifies the collected mobile station information to EIR.
    • 提供了一种数据库装置,用于与数据库装置的数据库密钥,数据库一致性系统和数据库一致性方法保持与具有不同数据库密钥的另一数据库装置的一致性。 HLR中的数据对照单元将存储在HLR的数据库中的数据和存储在EIR中的数据相对于“电话号码”和“终端设备号码”进行比较。 当通过对照确定数据之间存在不一致性时,数据删除单元删除这种不一致的数据,数据收集单元从MS收集移动站信息。 数据库更新单元通过使用收集的移动站信息更新数据库。 收集的数据通知单元将收集的移动站信息通知给EIR。
    • 7. 发明授权
    • Illumination optical system for endoscopes
    • 内窥镜照明光学系统
    • US08647263B2
    • 2014-02-11
    • US12465088
    • 2009-05-13
    • Keiji MurataHiroshi TsuyukiDaisuke Akiyama
    • Keiji MurataHiroshi TsuyukiDaisuke Akiyama
    • A61B1/00A61B1/04
    • A61B1/00096A61B1/0623
    • The invention provides lenses at low cost, which form an illumination optical system for endoscopes that has high efficiency and achieves improved light distribution. The illumination optical system for endoscopes is used in opposition to a light beam exit end 1 of a transmission means F for light emitted from a light source, and comprises, as viewed from the light beam exit end 1, a lens group 10 having positive power and an optical member 20 subsequent thereto which has a spherical surface 20a that functions as a lens, has a radius of curvature R, and satisfies the following condition: 1.48≦S/πR2≦4  (1) where R is the radius of curvature of the spherical surface, in mm, and S is a surface area of the spherical surface, in mm2.
    • 本发明以低成本提供镜片,其形成了具有高效率并实现改进的光分布的用于内窥镜的照明光学系统。 用于内窥镜的照明光学系统与发射装置F的光束出射端1对应,用于从光源发射的光,并且包括从光束出射端1观察具有正光焦度的透镜组10 以及具有作为透镜起作用的球面20a的光学构件20具有曲率半径R,满足以下条件:1.48 @ S / piR2 @(1)其中R是曲率半径 球面以mm为单位,S为球面的表面积,单位为mm2。
    • 8. 发明申请
    • ENDOSCOPE AND ENDOSCOPE APPARATUS
    • 内窥镜和内窥镜装置
    • US20120120487A1
    • 2012-05-17
    • US13237197
    • 2011-09-20
    • Daisuke AKIYAMATakeshi SUGASatoshi TAKEKOSHIKazuhiro GONO
    • Daisuke AKIYAMATakeshi SUGASatoshi TAKEKOSHIKazuhiro GONO
    • G02B23/24
    • A61B1/0646A61B1/00096A61B1/00186G02B23/2423
    • An endoscope includes: a first illumination optical system which emits illuminating light in a first linear polarization direction to an object from a distal end face of an insertion portion; and a first objective optical system which allows return light from the object to enter through an objective window provided in the distal end face; wherein the first illumination optical system and the first objective optical system are placed in a positional relationship such that on the distal end face, a line segment connecting an optical axis of the first illumination optical system and an optical axis of the first objective optical system is parallel or perpendicular to a polarization direction which results when the illuminating light emitted from the first illumination optical system is projected to the distal end face, and no polarizing element is provided between the object and the objective window.
    • 内窥镜包括:第一照明光学系统,其从插入部的远端面向物体照射第一线偏振方向的照明光; 以及第一物镜光学系统,其允许来自物体的返回光通过设置在远端面中的物镜窗进入; 其特征在于,所述第一照明光学系统和所述第一物镜光学系统的位置关系使得在所述前端面上连接所述第一照明光学系统的光轴和所述第一物镜光学系统的光轴的线段为 平行或垂直于当从第一照明光学系统发射的照明光被投射到远端面时产生的偏振方向,并且在物体和物镜窗之间不设置偏振元件。
    • 9. 发明授权
    • Packet communications network
    • 分组通信网络
    • US06310859B1
    • 2001-10-30
    • US09345150
    • 1999-06-30
    • Hideo MoritaTokuro DoiYukichi SaitoMotoshi TamuraDaisuke AkiyamaHiroshi NakamuraHisakazu Uesaka
    • Hideo MoritaTokuro DoiYukichi SaitoMotoshi TamuraDaisuke AkiyamaHiroshi NakamuraHisakazu Uesaka
    • H04J317
    • H04W76/25H04W76/19H04W88/16H04W92/02H04W92/24
    • Control of a packet communications network in a fixed network used by a mobile communications network is performed. (1) A communication hold mode is set for a user when the traffic volume of the user's transmission or reception of a packet per fixed time period is less than a predetermined value. The communication hold mode is defined as “although the network resources are released once, a mobile station and a gateway center at an interface with an external network behave to the user side and the external side as though the communication hold mode were maintained”. (2) When the user in the communication hold mode restarts the transmission of a packet, the mobile station automatically carries out a recall processing without the intervention of the user, and re-establishes the communication up to the gateway carrier. (3) When the gateway center restarts receiving a packet to the user in the communication hold mode, the gateway center carries out the incoming recall processing without the intervention of the external network, and re-establishes the communication all the way to the mobile station. (4) To accomplish the incoming recall processing, the mobile station makes a location registration when it roams across location registration areas after a transition into the communication hold mode.
    • 执行由移动通信网络使用的固定网络中的分组通信网络的控制。 (1)当用户每固定时间段的分组的传输或接收的业务量小于预定值时,为用户设置通信保持模式。 通信保持模式被定义为“虽然网络资源被释放一次,但是在与外部网络的接口处的移动站和网关中心表现为用户侧和外部,就像保持通信保持模式一样”。 (2)当通信保持模式下的用户重新启动分组的传输时,移动台自动进行召回处理,而无需用户的干预,并重新建立到网关运营商的通信。 (3)当网关中心在通信保持模式下重新开始向用户收到数据包时,网关中心不进行外部网络干预,进行呼入召回处理,并将通信重新建立到移动台 。 (4)为了完成进入的召回处理,移动台在转换到通信保持模式之后在位置登记区域漫游时进行位置登录。