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    • 121. 发明授权
    • Nonaqueous electrolyte secondary battery, nonaqueous electrolyte, and charging method therefor
    • 非水电解质二次电池,非水电解质及其充电方法
    • US08026000B2
    • 2011-09-27
    • US11656486
    • 2007-01-23
    • Masato IwanagaYukihiro OkiKoji AbeKazuhiro Miyoshi
    • Masato IwanagaYukihiro OkiKoji AbeKazuhiro Miyoshi
    • H01M6/04
    • H01M10/0567H01M4/131H01M4/485H01M4/505H01M4/525H01M10/0569H01M2300/004
    • A nonaqueous electrolyte secondary battery of the invention has a positive electrode having a positive electrode active material, a negative electrode, and a nonaqueous electrolyte having electrolyte salt in a nonaqueous solvent. The electric potential of the positive electrode active material is 4.4 to 4.6 V relative to lithium, and the nonaqueous electrolyte contains a compound expressed by structural formula (I) below. The quantity of compound added is preferably 0.1% to 2% by mass. Also, the positive electrode active material preferably comprises a mixture of a lithium-cobalt composite oxide which is LiCoO2 containing at least both zirconium and magnesium and a lithium-manganese-nickel composite oxide that has a layer structure and contains at least both manganese and nickel. Thanks to such structure, a nonaqueous electrolyte secondary battery can be provided that is charged to charging termination potential of 4.4 to 4.6 V relative to lithium and that has enhanced overcharging safety.[Chemical Formula 1]
    • 本发明的非水电解质二次电池具有正极,具有正极活性物质,负极和非水电解质,在非水溶剂中具有电解质盐。 正极活性物质的电位相对于锂为4.4〜4.6V,非水电解质含有下述结构式(I)表示的化合物。 化合物的添加量优选为0.1质量%〜2质量%。 此外,正极活性物质优选包含锂 - 钴复合氧化物的混合物,其为至少含有锆和镁的两种LiCoO 2和具有层结构并且至少包含锰和镍两者的锂锰镍复合氧化物的混合物 。 由于这样的结构,可以提供非水电解质二次电池,其相对于锂充电至4.4至4.6V的充电终止电位,并且具有增强的过充电安全性。 [化学式1]
    • 122. 发明授权
    • Method of preventing and treating brain infarction
    • 预防和治疗脑梗死的方法
    • US07976837B2
    • 2011-07-12
    • US11573429
    • 2005-06-17
    • Koji AbeJunichi Kawagoe
    • Koji AbeJunichi Kawagoe
    • A61K38/48
    • C07K14/705A61K45/06
    • The present invention is intended to clarify the relationship between PAR-2 and cerebral infarction and thereby provide an efficient method of preventing and treating cerebral infarction, as well as a pharmaceutical composition therefore. Namely, the present invention relates to a method of preventing and treating cerebral infarction by activating PAR-2 and/or promoting expression of PAR-2 gene. The present invention further relates to a pharmaceutical composition for preventing and treating cerebral infarction, comprising one, or two or more of the active ingredients selected from the group consisting of a PAR-2 activator and/or a PAR-2 gene expression promoter; as well as a pharmaceutically acceptable carrier. It further relates to a method of screening an active ingredient for preventing and treating cerebral infarction using as an indicator the PAR-2 activation promoted by a test substance.
    • 本发明旨在阐明PAR-2与脑梗死之间的关系,从而提供预防和治疗脑梗塞的有效方法,以及由此产生的药物组合物。 即,本发明涉及通过激活PAR-2和/或促进PAR-2基因的表达来预防和治疗脑梗死的方法。 本发明还涉及一种预防和治疗脑梗塞的药物组合物,其包含一种或两种以上选自PAR-2激活剂和/或PAR-2基因表达启动子的活性成分; 以及药学上可接受的载体。 本发明还涉及一种筛选用于预防和治疗脑梗死的活性成分的方法,所述方法使用由测试物质促进的PAR-2活化作为指标。
    • 123. 发明申请
    • PLASMA CVD DEVICE, DLC FILM, AND METHOD FOR DEPOSITING THIN FILM
    • 等离子体CVD装置,DLC膜和沉积薄膜的方法
    • US20110165057A1
    • 2011-07-07
    • US13001089
    • 2009-06-30
    • Yuuji HondaTakeharu KawabeHaruhito HayakawaKoji Abe
    • Yuuji HondaTakeharu KawabeHaruhito HayakawaKoji Abe
    • C01B31/06C23C16/24C23C16/26C23C16/455C23C16/458C23C16/50
    • C23C16/509H01J37/32091H01J37/32541H01J37/32706
    • To provide a plasma CVD device capable of increasing voltage VDC that is a DC component generated at the electrode during high-frequency discharge in CVD deposition. The plasma CVD device according to the present invention includes a chamber 1, a holding electrode 2 disposed in the interior of the chamber and adapted for holding a substrate on which a film is to be deposited, a high frequency power supply 8 connected electrically with the holding electrode, a counter electrode 12 disposed opposite to the substrate on which a film is to be deposited held by the holding electrode and connected with an earth power supply or a float power supply, a raw material gas supply mechanism for supplying a raw material gas into a space 13 between the counter electrode and the holding electrode, and an evacuation mechanism for evacuating the interior of the chamber, wherein the surface area “a” of the holding electrode and the surface area “b” of the counter electrode satisfy a formula below, b/a≧2.
    • 提供一种等离子体CVD装置,其能够增加在CVD沉积期间的高频放电期间在电极处产生的DC分量的电压VDC。 根据本发明的等离子体CVD装置包括室1,保持电极2,其设置在室的内部,并适于保持其上要沉积膜的基板;高频电源8,其与 保持电极,与由保持电极保持的薄膜所在的基板相对设置并与接地电源或浮动电源连接的对置电极12,用于供给原料气体的原料气体供给机构 进入对置电极和保持电极之间的空间13以及用于抽空室内部的抽空机构,其中保持电极的表面积“a”和对置电极的表面积“b”满足公式 以下,b /a≥2。
    • 127. 发明申请
    • Image Forming Apparatus and Process Unit
    • 图像形成装置和处理单元
    • US20100135689A1
    • 2010-06-03
    • US12625588
    • 2009-11-25
    • Koji AbeJunichi Hashimoto
    • Koji AbeJunichi Hashimoto
    • G03G15/00G03G21/16
    • G03G21/1867G03G21/1652G03G21/1671G03G2221/1654
    • A process unit and an image forming apparatus are provided. The process unit is slidably moutable on an apparatus main body of the image forming apparatus. The process unit includes plural photosensitive units which include photosensitive members, respectively, and are arranged at an interval, each of the photosensitive units including a unit contact, an electrode unit which electrically connects the photosensitive units to the apparatus main body. The electrode unit includes plural unit-side electrode members which come into contact with the unit contacts of the photosensitive units, respectively, a relay electrode member which comes into contact with the respective unit-side electrode members to electrically connect the respective unit-side electrode members, and a body-side electrode member which comes into contact with an apparatus main body contact provided in the apparatus main body.
    • 提供处理单元和图像形成装置。 处理单元可滑动地在图像形成装置的装置主体上开口。 处理单元包括分别包括感光构件的多个感光单元,并且间隔地布置,每个感光单元包括单元接触件,将感光单元电连接到设备主体的电极单元。 电极单元包括分别与感光单元的单元触点接触的多个单元侧电极构件,与各单元侧电极构件接触的中继电极构件,以将各单元侧电极 以及与设置在设备主体中的设备主体接触部接触的体侧电极部件。