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    • 1. 发明申请
    • BIOLOGICAL INFORMATION MEASURING APPARATUS
    • 生物信息测量装置
    • US20120057164A1
    • 2012-03-08
    • US13227909
    • 2011-09-08
    • Shinichiro TEZUKAHitoshi HARA
    • Shinichiro TEZUKAHitoshi HARA
    • G01N21/55
    • G01N21/474A61B5/0068A61B5/14532A61B5/1455A61B5/489G01N21/39G01N2201/0697G02B21/0032G02B21/008G06K9/00033
    • Biological information measuring apparatus capable of automatically identifying a subject under test, and executing continuous measurement under a common measurement condition having selected a properly identified site at a high S/N ratio for relatively long hours as necessary, and also improving utilization efficiency of the output light of a laser. In the biological information measuring apparatus using a confocal optical system provided with a laser serving as a light source thereof, the biological information measuring apparatus comprises a laser drive means for effecting AC-driving so as to cause pulsed light to be outputted from the laser, and wherein the skin of a finger is discriminated from a nail thereof on the basis of a detection signal of the confocal optical system, and a portion of the skin, in a range of the nail epithelium of the finger to the first joint thereof, is indicated as a measurement region.
    • 生物信息测量装置能够自动识别被测试对象,并且在必要时在相当长的时间内以高S / N比选择了适当识别的位置的公共测量条件下执行连续测量,并且还提高了输出的利用效率 激光的光。 在使用设置有作为其光源的激光的共焦光学系统的生物信息测量装置中,生物信息测量装置包括用于进行AC驱动以从激光器输出脉冲光的激光驱动装置, 基于共聚焦光学系统的检测信号,将手指的皮肤与其指甲区分开,并且一部分皮肤在手指的指甲上皮与其第一关节的范围内是 表示为测量区域。
    • 2. 发明申请
    • THERMAL CONDUCTIVITY DETECTOR AND GAS CHROMATOGRAPH USING SAME
    • 热导率检测器和使用相同的气相色谱仪
    • US20120042712A1
    • 2012-02-23
    • US13211753
    • 2011-08-17
    • Naoki KishiHitoshi HaraTetsuya WatanabeKentaro Suzuki
    • Naoki KishiHitoshi HaraTetsuya WatanabeKentaro Suzuki
    • G01N30/02G01N25/18
    • G01N30/66G01N27/18G01N30/6095
    • The present invention provides a thermal conductivity detector capable of realizing high detection performance even with the use of a miniaturized heating element, and expanding an effective applicable temperature range of a heating element, and to provide a gas chromatograph using the same. The thermal conductivity detector comprises a flow-path through which a measurement gas is caused to flow, a heating element disposed inside the flow-path, the heating element being formed on the substrate, for detecting thermal conductivity of the measurement gas according to magnitude of an amount of heat taken away from the heating element by the measurement gas, wherein said heating element is provided with a beam including a part where the beam is folded at a predetermined angle, the part being formed at the central part of the beam.
    • 本发明提供即使使用小型化的加热元件也能够实现高检测性能并且扩大加热元件的有效适用温度范围的热导率检测器,并且提供使用该热传导检测器的气相色谱仪。 热导率检测器包括流过测量气体的流路,设置在流路内部的加热元件,加热元件形成在基板上,用于根据测量气体的大小检测热传导率 通过所述测量气体从所述加热元件取走的热量,其中所述加热元件设置有梁,所述梁包括所述梁以预定角度折叠的部分,所述部分形成在所述梁的中心部分。
    • 5. 发明申请
    • Medical information management system for medical institution
    • 医疗机构医疗信息管理系统
    • US20090027164A1
    • 2009-01-29
    • US11878445
    • 2007-07-24
    • Hitoshi Hara
    • Hitoshi Hara
    • H04B7/00
    • G06K17/00
    • According to the present invention, a medical information management system comprises an IC tag reader terminal for information from an IC tag storing the information on the medical item delivered; a first IC tag reader-writer terminal for writing to the IC tag attached to the shipping medical item; an IC card reader-writer terminal for writing and/or reading to/from an IC card storing information on the patient or the medical staff a second IC tag reader-writer terminal for writing and/or reading to/from an IC tag of the medical item being disposed to the patient; an order server for receiving the information transmitted from the IC card reader-writer terminal and the second IC tag reader-writer terminal; and a SPD server for receiving the information transmitted from the IC tag reader terminal, the first IC tag reader-writer terminal, and the order server and summing up the respective inventory.
    • 根据本发明,医疗信息管理系统包括IC标签读取器终端,用于从存储关于所递送的医疗用品的信息的IC标签的信息; 第一IC标签读写器终端,用于写入附于运送医疗项目的IC标签; 用于向/从IC卡写入和/或读取存储关于患者或医务人员的信息的IC卡读写器终端,用于向/从IC卡的IC标签写入和/或读取的第二IC标签读写器终端 医疗用品被放置到患者身上; 用于接收从IC卡读写器终端和第二IC标签读写器终端发送的信息的订单服务器; 以及SPD服务器,用于接收从IC标签读取器终端,第一IC标签读写器终端和订单服务器发送的信息,并对相应的库存进行加总。
    • 7. 发明申请
    • Communication system for indemnification insurance service
    • 赔偿保险服务通信系统
    • US20080215375A1
    • 2008-09-04
    • US11907706
    • 2007-10-16
    • Nobutoshi NakanoHitoshi HaraMineaki MatsumuraShinsuke Kawaguchi
    • Nobutoshi NakanoHitoshi HaraMineaki MatsumuraShinsuke Kawaguchi
    • G06Q40/00G06Q90/00
    • G06Q40/00G06Q10/00G06Q40/08
    • The object of the present invention is to provide a communication system for indemnification insurance service; the system contributes to rapid procedures to be performed from the occurrence of an accident to the arrival of a staff to the accident scene, including notification to the company of the indemnification insurance service, and certification of the location of the accident scene and the content of the insurance service of the insured, performed inside the company. The communication system for indemnification insurance service 1 comprises: a cell phone 2 with a built-in IC tag reader and a server 3, which are communicably connected with each other over the internet 4; and a management terminal 5 communicably connected with the server 3; and wherein the cell phone 2 comprises: a means 21 operable to read out information from the insurance IC tag 8, which is provided with the insurance card 6 possessed by the policyholder and stores insurance information; a means 22 for transmitting its cell phone number and the policyholder's name read out from the insurance IC tag 8, to the server 3 at a URL read out form the insurance IC tag 8; and a means 23 for receiving an authentication result from the server 3. Here, the means 21 is operable to re-read out the policyholder's name and the insurance policy number from the insurance IC tag 8, when the authentication result indicates being authenticated.
    • 本发明的目的是提供一种用于赔偿保险服务的通信系统; 该制度有助于从事故发生到工作人员到达事故现场的快速程序,包括通知赔偿保险服务公司,以及对事故现场的位置和内容的认证 被保险人的保险服务,在公司内进行。 赔偿保险服务通信系统1包括:具有内置IC标签读取器的手机2和通过因特网4彼此可通信地连接的服务器3; 以及与服务器3可通信地连接的管理终端5; 并且其中手机2包括:可操作用于从保险IC标签8读出信息的装置21,保险IC标签8设置有保单持有者拥有的保险卡6并存储保险信息; 将从保险IC标签8读出的手机号码和保单持有人的姓名传送到保险IC标签8读出的URL的服务器3的装置22; 以及用于从服务器3接收认证结果的装置23。 这里,当验证结果指示被认证时,装置21可操作以从保险IC标签8重新读出保单持有者的姓名和保险单号。
    • 8. 发明授权
    • Injection molding method using a plurality of control parameters
    • 使用多个控制参数的注射成型方法
    • US5346657A
    • 1994-09-13
    • US53651
    • 1993-04-29
    • Hitoshi HaraToru Okuda
    • Hitoshi HaraToru Okuda
    • B29C45/50B29C45/70B29C45/76B29C45/77
    • B29C45/76
    • An injection molding method using an injection molding machine in which a plurality of control parameters including the injection speed, injection pressure and the mold opening degree are controlled, from a moment immediately before filling up of the mold cavity with the resin, setting the parameters in an order determined in accordance with the characteristics demanded by the resin, such that, when the injection pressure is controlled as a commanding parameter, the injection speed is controlled as a subordinate parameter under a given restriction and, when the mold opening degree is controlled as the commanding parameter, the injection pressure is controlled as a subordinate parameter under a given restriction. According to this method, it is possible to control the injection molding operation on the basis of a plurality of control parameters in accordance with characteristics demanded by the resin in the mold which varies time to time, thus making it possible to maximize the packing degree while minimizing burrs and short shot.
    • 使用注射成型机的注射成型方法,其中从刚从树脂填充模腔之前的那一刻起控制包括注射速度,注射压力和模具开度的多个控制参数,将参数设置在 根据树脂要求的特性确定的顺序,使得当注射压力被控制为指令参数时,在给定的限制下将注射速度控制为下属参数,并且当将开模度控制为 指令参数,注射压力作为下属参数被控制在给定的限制之下。 根据该方法,可以根据多个控制参数来控制注射成型操作,这些控制参数根据模具中树脂所要求的特性随时间变化,从而使包装程度最大化 减少毛刺和短射。
    • 9. 发明授权
    • Component measurement apparatus
    • 元件测量装置
    • US08547535B2
    • 2013-10-01
    • US13040872
    • 2011-03-04
    • Shin-ichiro TezukaHitoshi Hara
    • Shin-ichiro TezukaHitoshi Hara
    • G01N33/48G02B7/04
    • G01N21/49A61B5/14532A61B5/1455G01N21/359
    • A component measurement apparatus includes a laser that emits non-collimated laser light, an objective lens that condenses the non-collimated laser light emitted from the laser in order for the laser light to illuminate internal tissue of an object of measurement without collimating the laser light, a half mirror that redirects reflected light reflected by the internal tissue of the object of measurement and refracted by the objective lens, a pin hole through which the reflected light redirected by the half mirror passes, a light-receiving element that receives the reflected light having passed through a pin hole, and a data analyzer section that measures a component of the object of measurement in accordance with data output from the light-receiving element.
    • 元件测量装置包括发射非准直激光的激光器,冷凝从激光器发射的非准直激光的物镜,以使激光照亮测量对象的内部组织而不使激光器 将由被测物体的内部组织反射的被物镜折射的反射光重定向的半反射镜,由半反射镜重定向的反射光穿过的针孔通过接受反射光的光接收元件 已经通过针孔的数据分析器部分,以及根据从光接收元件输出的数据来测量测量对象的分量的数据分析器部分。