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    • 2. 发明授权
    • Intravascular obstruction removing wire and medical instrument
    • 血管内阻塞去除电线和医疗器械
    • US07575585B2
    • 2009-08-18
    • US11281358
    • 2005-11-18
    • Katsuya GotoTakashi KanekoTakeshi KanamaruMasahiro TakeuchiKeiji Okada
    • Katsuya GotoTakashi KanekoTakeshi KanamaruMasahiro TakeuchiKeiji Okada
    • A61M29/00A61B17/221
    • A61B17/221A61B2017/2212
    • An intravascular obstruction removing wire includes an elongate wire body, at least two non-branched wire portions having distal ends and proximal ends which are connected to a distal end of the wire main body, and a plurality of filament portions extending across the wire portions. The non-branched wire portions and the filament portions form a trapping portion. The trapping portion is deformable from a large-diameter state in which the non-branched portions branch to the distal end of the wire body forward in different directions and the filament portions are separated from each other, so that a space surrounded by the non-branched wire portions and the filament portions is formed to trap therein an obstruction in a blood vessel, to a small-diameter state in which the non-branched wire portions are positioned so that a distance between the wire portions is smaller than that of the wire portions in the large-diameter state.
    • 血管内梗阻去除线包括细长线体,至少两个非分支线部分,其具有连接到线主体的远端的远端和近端,以及延伸穿过线部分的多个细丝部分。 非分支线部分和细丝部分形成捕获部分。 捕获部从大直径状态变形,其中非分支部分向线体的远端分支到不同方向的前端,并且细丝部分彼此分离, 分支线部分和细丝部分形成为将血管中的梗阻捕获到非分支线部分定位的小直径状态,使得线部分之间的距离小于线的距离 大直径状态的部分。
    • 4. 发明授权
    • Battery pack
    • 电池组
    • US09356265B2
    • 2016-05-31
    • US13822512
    • 2011-10-06
    • Takashi KanekoTomofumi Yoshinaga
    • Takashi KanekoTomofumi Yoshinaga
    • H01M2/20H01M2/22H01M2/24H01M2/26H01M2/10
    • H01M2/1016H01M2/1022H01M2/1072H01M2/1077H01M2/206
    • In a battery pack (1), first and second battery stacks (3, 5) are connected to each other via a connection member (7), each battery stack being formed by arranging multiple individual batteries (11) in a row direction. The connection member (7) is formed by repeatedly connecting a first connection part (13) and a second connection part (15), the first connection part (13) extending from the first battery stack (3) to the second battery stack (5) in an orthogonal direction, in which one end portion (13b) thereof supports the first battery stack (3) and another end portion (13a) supports the second battery stack (5), the second connection part (15) extending from the end portion (13b) of the first connection part (13) on the first battery stack (3) side toward the second battery stack (5) in a direction oblique to the orthogonal direction in a plan view.
    • 在电池组(1)中,第一和第二电池堆(3,5)经由连接构件(7)彼此连接,每个电池堆通过在行方向上布置多个单独电池(11)而形成。 连接构件(7)通过重复地连接第一连接部(13)和第二连接部(15)而形成,第一连接部(13)从第一电池堆(3)延伸到第二电池堆(5) ),其中一个端部(13b)支撑第一电池堆(3),另一端部(13a)支撑第二电池堆(5),第二连接部(15)从端部 在第一电池堆(3)侧的第一连接部分(13)的部分(13b)朝向第二电池堆(5)沿平面图中的垂直方向倾斜的方向。
    • 5. 发明授权
    • Method for radiation sterilization of hydrophilic polymer-coated medical device
    • 亲水性高分子涂层医疗器械的放射线灭菌方法
    • US08968648B2
    • 2015-03-03
    • US12990993
    • 2009-04-30
    • Takashi Kaneko
    • Takashi Kaneko
    • A61L2/08A61M25/00A61M25/09
    • A61L2/08A61L2/087A61L2202/24A61M25/0017A61M25/002A61M25/0045A61M25/09A61M2025/0046
    • A radiation sterilization method of a disposable medical device and a manufacturing method are provided, which method comprising the steps of packaging a disposable medical device, which has applied thereto with hydrophilic polymer coating, with a gas permeable packaging material, controlling a product moisture content of the thus packaged medical device by maintaining the device in a given humidity atmosphere for not less than a time at which an equilibrated moisture content is reached, and subjecting, to radiation sterilization, the medical device whose product moisture content has been controlled, so that an eluted matter is reduced in amount and a sliding performance is ensured according to the radiation sterilization method of the hydrophilic polymer-coated, disposable medical device and the manufacturing method.
    • 提供了一次性医疗装置的放射线灭菌方法和制造方法,该方法包括以下步骤:将具有亲水性聚合物涂层的一次性医疗装置与透气性包装材料包装在一起,控制产品的含水量 通过将装置保持在给定的湿度气氛中不低于达到平衡的含水量的时间,并对其产品含水量已经被控制的医疗装置进行放射线灭菌,从而使得包装的医疗装置 根据亲水性聚合物涂覆的一次性医疗装置的放射线灭菌方法和制造方法,洗脱物质的量减少并且确保了滑动性能。
    • 9. 发明授权
    • External combustion engine
    • 外燃机
    • US08112981B2
    • 2012-02-14
    • US12321337
    • 2009-01-19
    • Shuzo OdaShinichi YatsuzukaYasunori NiiyamaTakashi KanekoMamoru Shimoda
    • Shuzo OdaShinichi YatsuzukaYasunori NiiyamaTakashi KanekoMamoru Shimoda
    • F02C5/00
    • F01K21/00
    • An external combustion engine comprising a pipe-shaped main container in which a working fluid is sealed flowably in a liquid state, a heated part formed at a location of one end of the main container and heating part of the working fluid in the main container in order to make it evaporate, a cooled part formed at a location next to the heated part toward the other end of the main container and cooling the vapor of the working fluid evaporated at the heated part in order to make it condense, an output unit communicated with the other end of the main container and converting the displacement of the liquid phase part of the working fluid to mechanical energy for output, and a controller alternately performing a heat storage mode making displacement of the liquid phase part of the working fluid stop in order to make the heated part store heat and an output mode allowing displacement of the liquid phase part of the working fluid and taking output from the output unit.
    • 一种外燃机,包括管状主容器,其中工作流体以液态可流动地密封,加热部分形成在主容器的一端的位置处,并且主容器中的工作流体的加热部分 为了使其蒸发,冷却部分形成在靠近加热部分的位置朝向主容器的另一端,并且冷却被加热部分蒸发的工作流体的蒸气以使其冷凝,输出单元连通 与主容器的另一端并将工作流体的液相部分的位移转换为机械能用于输出,并且控制器交替执行蓄热模式,以使工作流体液相部分的位移顺序 以使得加热部件存储热量和允许工作流体的液相部分的位移并从输出单元输出的输出模式。