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    • 1. 发明授权
    • Thin film multilocular structure made of collagen, member for tissue regeneration containing the same, and method for producing the same
    • 由胶原制成的薄膜多腔结构体,含有该组织再生的构件,及其制造方法
    • US08388692B2
    • 2013-03-05
    • US12308854
    • 2007-06-29
    • Tatsuo NakamuraYuji InadaKeiji Shigeno
    • Tatsuo NakamuraYuji InadaKeiji Shigeno
    • A61F2/02
    • F26B5/00A61L27/24
    • A new structure made of collagen for improving promotion of nerve tissue regeneration, curing and regeneration of a defective part of a soft biological tissue and so on without using laminin or nerve growth factor (NGF), and a member for tissue regeneration including the same. The structure made of collagen has a thin film multilocular formation and is therefore a new structure different from a colloid form, a gel form, and a fiber form. When the new structure made of collagen is used as a member for tissue regeneration, surprisingly, promotion of regeneration, shortening of a treatment period, functional recovery, or the like of bodily tissue such as nerve tissue, subdermal tissue, submucosal tissue, membranous tissue, fat tissue, muscle tissue, skin tissue, and gingival tissue can be improved. When the structure is used in a patient having neuropathic pain, the member has an effect on the disappearance of the pain.
    • 用于改善促进神经组织再生,软生物组织的缺陷部分的固化和再生等而不使用层粘连蛋白或神经生长因子(NGF)的新型胶原蛋白,以及包括其的组织再生的成分。 由胶原构成的结构具有薄膜多层结构,因此是与胶体形式,凝胶形式和纤维形式不同的新结构。 当由胶原蛋白制成的新结构被用作组织再生的成员时,令人惊奇的是促进再生,缩短治疗期,功能恢复等身体组织如神经组织,皮下组织,粘膜下组织,膜组织 ,可以改善脂肪组织,肌肉组织,皮肤组织和牙龈组织。 当结构用于具有神经性疼痛的患者时,该成员对疼痛消失有影响。
    • 2. 发明申请
    • Thin Film Multilocular Structure Made of Collagen, Member for Tissue Regeneration Containing The Same, and Method for Producing The Same
    • 由胶原蛋白制成的薄膜多体结构,包含其的组织再生用部件及其制造方法
    • US20090280161A1
    • 2009-11-12
    • US12308854
    • 2007-06-29
    • Tatsuo NakamuraYuji InadaKeiji Shigeno
    • Tatsuo NakamuraYuji InadaKeiji Shigeno
    • A61K9/70C07K14/78A61K38/39
    • F26B5/00A61L27/24
    • The present invention provides a new structure made of collagen for improving promotion of nerve tissue regeneration, curing and regeneration of a defective part of a soft biological tissue and so on without using laminin or nerve growth factor (NGF), and a member for tissue regeneration including the same. The structure made of collagen according to the present invention has a thin film multilocular formation and therefore a new structure different from a colloid form, a gel form, and a fiber form. Therefore, when the new structure made of collagen according to the present invention is used as a member for tissue regeneration, surprisingly, promotion of regeneration, shortening of a treatment period, functional recovery, or the like of bodily tissue such as nerve tissue, subdermal tissue, submucosal tissue, membranous tissue, fat tissue, muscle tissue, skin tissue, and gingival tissue can be improved. Furthermore, when the structure according to the present invention is used to a patient having neuropathic pain, the member has an effect on the disappearance of the pain.
    • 本发明提供了一种用于改善促进神经组织再生,软生物组织的缺陷部分的固化和再生等而不使用层粘连蛋白或神经生长因子(NGF)的胶原蛋白的新结构,以及用于组织再生的成分 包括相同。 根据本发明的由胶原构成的结构具有薄膜多层形成,因此具有不同于胶体形式,凝胶形式和纤维形式的新结构。 因此,当将本发明的胶原蛋白的新结构用作组织再生的成分时,令人惊奇地,促进再生,缩短治疗期间,功能恢复等身体组织例如神经组织,皮下 组织,粘膜下组织,膜组织,脂肪组织,肌肉组织,皮肤组织和牙龈组织。 此外,当将根据本发明的结构用于具有神经性疼痛的患者时,该成员对疼痛消失具有影响。
    • 6. 发明申请
    • POWER GENERATION INPUT DEVICE AND ELECTRONIC-APPARATUS USING THE POWER GENERATION INPUT DEVICE
    • 发电输入装置和使用发电输入装置的电子装置
    • US20130010510A1
    • 2013-01-10
    • US13543562
    • 2012-07-06
    • Yuji InadaKatsutoshi Suzuki
    • Yuji InadaKatsutoshi Suzuki
    • H02M7/06
    • H01F7/122H01F7/14H02M7/068
    • First and second opposing ends are formed in a magnetic path forming member on which a power generation coil is wound. A rotating body has a permanent magnet, a first magnetization member and a second magnetization member. When an operating force does not act on an operating member, an end surface of the first magnetization member is opposed to the first opposing end via a gap and an end surface of the second magnetization member is opposed to the second opposing end via a gap. When the operating member is pressed, the rotating body rotates and when the force to the operating member is released, the operating member and the rotating body return. Since the rotating body and the magnetic path forming member do not come into contact with each other, the force required to operate the operating member is relatively weak and large electromotive force can be obtained.
    • 第一和第二相对端形成在其上缠绕有发电线圈的磁路形成部件中。 旋转体具有永磁体,第一磁化部件和第二磁化部件。 当操作力不作用在操作构件上时,第一磁化构件的端面经由间隙与第一相对端相对,并且第二磁化构件的端面经由间隙与第二相对端相对。 当按下操作构件时,旋转体旋转,并且当释放对操作构件的力时,操作构件和旋转体返回。 由于旋转体和磁路形成构件不会相互接触,所以操作操作构件所需的力相对较弱,并且可以获得大的电动势。
    • 10. 发明授权
    • Power generation input device and electronic-apparatus using the power generation input device
    • 发电输入装置和使用发电输入装置的电子装置
    • US08975766B2
    • 2015-03-10
    • US13543562
    • 2012-07-06
    • Yuji InadaKatsutoshi Suzuki
    • Yuji InadaKatsutoshi Suzuki
    • F02B63/04
    • H01F7/122H01F7/14H02M7/068
    • First and second opposing ends are formed in a magnetic path forming member on which a power generation coil is wound. A rotating body has a permanent magnet, a first magnetization member and a second magnetization member. When an operating force does not act on an operating member, an end surface of the first magnetization member is opposed to the first opposing end via a gap and an end surface of the second magnetization member is opposed to the second opposing end via a gap. When the operating member is pressed, the rotating body rotates and when the force to the operating member is released, the operating member and the rotating body return. Since the rotating body and the magnetic path forming member do not come into contact with each other, the force required to operate the operating member is relatively weak and large electromotive force can be obtained.
    • 第一和第二相对端形成在其上缠绕有发电线圈的磁路形成部件中。 旋转体具有永磁体,第一磁化部件和第二磁化部件。 当操作力不作用在操作构件上时,第一磁化构件的端面经由间隙与第一相对端相对,并且第二磁化构件的端面经由间隙与第二相对端相对。 当按下操作构件时,旋转体旋转,并且当释放对操作构件的力时,操作构件和旋转体返回。 由于旋转体和磁路形成构件不会相互接触,所以操作操作构件所需的力相对较弱,并且可以获得大的电动势。