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    • 2. 发明授权
    • Electrical conductor for biomedical electrodes and biomedical electrodes
prepared therefrom
    • 用于制备生物医学电极和生物医学电极的电导体
    • US5924983A
    • 1999-07-20
    • US637677
    • 1996-04-29
    • Shunsuke TakakiMasanao Shikano
    • Shunsuke TakakiMasanao Shikano
    • A61B5/0408H01B1/22H01B1/24H01B5/14A61B5/04
    • H01B1/24H01B1/22
    • An electrical conductor and a biomedical electrode using the electrical conductor are disclosed. The electrical conductor has a flexible, non-conductive film and two different carbon-containing coatings on a major surface of the film. The electrical conductor coatings are a low porous carbon-containing coating and a high porous carbon-containing coating. The low porous carbon-containing coating contacts the film and the high porous carbon-containing coating contacts the low porous carbon-containing coating. A tab/pad style of biomedical electrode using the electrical conductor has a field of ionically conductive media containing electrolyte contacting the high porous carbon-containing coating. The electrolyte diffuses into the high porous carbon-containing coating for electrochemical advantages.
    • PCT No.PCT / US96 / 05938 Sec。 371日期:1996年4月26日 102(e)日期1996年4月26日PCT提交1996年4月29日PCT公布。 公开号WO97 / 41568 日期1997年11月6日公开了使用电导体的电导体和生物医学电极。 电导体在膜的主表面上具有柔性的非导电膜和两个不同的含碳涂层。 电导体涂层是低多孔含碳涂层和高多孔含碳涂层。 低多孔含碳涂层与膜接触,高多孔含碳涂层接触低多孔含碳涂层。 使用电导体的生物医学电极的标签/垫样式具有包含接触高多孔含碳涂层的电解质的离子导电介质的场。 电解质扩散到高多孔含碳涂层中以获得电化学优点。
    • 3. 发明申请
    • LIQUID DISPENSING CONTAINER
    • 液体分配容器
    • US20140031768A1
    • 2014-01-30
    • US14110451
    • 2012-04-04
    • Shunsuke Takaki
    • Shunsuke Takaki
    • A61F5/44A61M35/00
    • A61F5/4404A61M35/003B65D75/26B65D75/5855B65D75/5866
    • Disclosed is a container capable of dispensing a liquid contained in the container by drops while keeping the liquid in an uncontaminated state. Also disclosed is a method of dispensing a liquid by drops using the container, and a method of removing a stoma pouch flange using the container. The liquid storing container comprises a storage portion with a sealed periphery and a nozzle portion connected with the storage portion for dispensing a liquid contained in the storage portion by drops to the outside. The container has an enclosed inner space. Liquid is dispensed by drops by peeling apart a sealed nozzle tip portion that is oriented toward the tip of the nozzle portion to form a drop dispensing opening.
    • 公开了一种容器,其能够在保持液体处于未受污染状态的同时通过液滴分配容器中容纳的液体。 还公开了使用容器通过液滴分配液体的方法,以及使用该容器去除造口袋凸缘的方法。 液体储存容器包括具有密封周边的存储部分和与存储部分连接的喷嘴部分,用于通过液滴将包含在存储部分中的液体分配到外部。 容器具有封闭的内部空间。 通过剥离朝向喷嘴部分的尖端的密封的喷嘴尖端部分来形成液滴分配开口,液体由液滴分配。
    • 6. 发明授权
    • Temperature sensor for medical application
    • 温度传感器用于医疗应用
    • US5779365A
    • 1998-07-14
    • US436435
    • 1995-05-24
    • Shunsuke Takaki
    • Shunsuke Takaki
    • G01K11/32G01K13/00G01K11/00A61B5/00
    • G01K13/002G01K11/3206Y10S252/962
    • A small sized temperature sensor for measuring temperatures in the body and for measuring temperatures in an extracorporeal blood circulation circuit, wherein the possibility of electrical shock and the cost are reduced, while resolution and reliability are increased. The temperature sensor comprises a source of light, an optical fiber to receive light from the light source at one end of the optical fiber, a transducer positioned near the other end of the optical fiber, a reflection means for reflecting the irradiated light, and an arithmetic processing unit which calculates temperature based upon the reflected light measured. The transducer is made up of at least two polymers that have different temperature dependencies of refractive index and form a microphase separation structure, wherein the polymers are cured products made from a cationically polymerizable compound having epoxy groups and a radically polymerizable compound having radically unsaturated groups.
    • PCT No.PCT / US93 / 10719 Sec。 371日期:1995年5月24日 102(e)日期1995年5月24日PCT提交1993年11月8日PCT公布。 公开号WO94 / 12859 日期1994年6月9日一种用于测量体内温度和用于测量体外血液循环回路中的温度的小型温度传感器,其中降低了电击和成本的可能性,同时提高了分辨率和可靠性。 温度传感器包括光源,用于从光纤的一端接收来自光源的光的光纤,位于光纤另一端附近的换能器,用于反射照射的光的反射装置和 算术处理单元,其基于所测量的反射光来计算温度。 换能器由至少两种具有不同的折射率温度依赖性并形成微相分离结构的聚合物组成,其中聚合物是由具有环氧基的阳离子聚合性化合物和具有自由基不饱和基团的自由基聚合性化合物制成的固化产物。
    • 7. 发明授权
    • Method of measuring temperature
    • 温度测量方法
    • US06283632B1
    • 2001-09-04
    • US09455165
    • 1999-12-06
    • Shunsuke Takaki
    • Shunsuke Takaki
    • G01K1100
    • G01K11/3206G01K11/18
    • A method of measuring temperature including the steps of calibrating a sensor disposed near one end of an optical fiber, the sensor having a source of light which irradiates light, the optical fiber being positioned at one end to receive light from the source of light; a transducer positioned near the other end of the optical fiber, the transducer being made up of at least two polymers that have refractive indices with different temperature dependencies and form a microphase separation structure; a reflection element for reflecting the irradiated light; and an arithmetic processing unit which receives the reflected light by exposing the sensor to two or more sources of heat whose values are known; and exposing the sensor to the portion whose temperature is to be measured.
    • 一种测量温度的方法,包括校准设置在光纤一端附近的传感器的步骤,所述传感器具有照射光的光源,所述光纤位于一端以接收来自光源的光; 位于光纤另一端附近的换能器,换能器由具有不同温度依赖性的折射率的至少两种聚合物构成并形成微相分离结构; 用于反射照射的光的反射元件; 以及算术处理单元,其通过将传感器暴露于已知值的两个或更多个热源来接收反射光; 并将传感器暴露于要测量温度的部分。
    • 8. 发明授权
    • Biomedical conductor containing inorganic oxides and biomedical
electrodes prepared therefrom
    • 含有由其制备的无机氧化物和生物医学电极的生物医学导体
    • US5505200A
    • 1996-04-09
    • US189082
    • 1994-01-28
    • Shunsuke Takaki
    • Shunsuke Takaki
    • A61B5/0408A61B5/04
    • A61B5/04087
    • A biomedical electrical conductor having a thin, conformable layer of an inorganic oxide of low polarizability is disclosed. The inorganic oxide can be a manganese oxide, preferably manganese dioxide. The biomedical electrical conductor as a multi-layered composite also is disclosed, using the inorganic oxide layer in mechanical and electrical association with an electrically conductive component which is mechanically in association with a nonconductive polymeric film. The composite forms an essentially x-ray transparent, flexible conductor of low polarizability. Biomedical electrodes using the biomedical electrical conductor and methods of making and using the conductors and the electrodes are also disclosed.
    • 公开了一种生物医学电导体,其具有薄的,适形的低极化性的无机氧化物层。 无机氧化物可以是氧化锰,优选二氧化锰。 公开了作为多层复合材料的生物医学电导体,其使用机械和电联结的无机氧化物层与机械地与非导电聚合物膜结合的导电组分。 该复合物形成基本上具有低极化性的x射线透明柔性导体。 还公开了使用生物医学电导体的生物医学电极以及制造和使用导体和电极的方法。