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    • 1. 发明专利
    • Method for introducing aroma substance
    • AROMA物质介绍方法
    • JP2008043266A
    • 2008-02-28
    • JP2006222522
    • 2006-08-17
    • Transcutaneous Technologies Incトランスキュー・テクノロジーズ 株式会社
    • AKIYAMA HIDEOTSUJI KAZUYUKI
    • A01G7/00A01G7/06A01M29/00A01M29/12
    • PROBLEM TO BE SOLVED: To provide a method for introducing aroma substance by which the concentration and the components each of aroma substance dispersed from a plant 500 can be regulated into desired ones. SOLUTION: The method for introducing aroma substance introduces aroma substance to the plant 500 so as to make the aroma substance disperse from the plant 500, and is provided with the following: a preparation procedure for preparing an iontophoresis device 10 having an acting-side electrode structure 200 where the flavor substance is ionized to be held, and an acted-side electrode structure 300 holding electrolysis solution; a contact procedure for making at least part of the acting-side electrode structure 200 and the acted-side electrode structure 300 come into contact with the plant 500; and a power supply procedure for supplying power to the midway between the acting-side electrode structure 200 and the acted-side electrode structure 300. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种引入芳香物质的方法,通过该方法,可以将从植物500分散的各种香味物质的浓度和组分调节到期望的浓度。 解决方案:引入芳香物质的方法将芳香物质引入植物500,以使香料物质从植物500分散,并具有以下:制备离子电渗疗装置10的制备方法,其具有作用 其中香味物质被离子化以保持的电极结构200和保持电解溶液的作用侧电极结构300; 用于使作用侧电极结构200和作用侧电极结构300的至少一部分与工厂500接触的接触步骤; 以及用于向作用侧电极结构200和作用侧电极结构300之间的中途供电的电源程序。(C)2008,JPO&INPIT
    • 3. 发明专利
    • Iontophoresis apparatus
    • IOPOPHORESIS设备
    • JP2007268135A
    • 2007-10-18
    • JP2006099955
    • 2006-03-31
    • Transcutaneous Technologies Incトランスキュー・テクノロジーズ 株式会社
    • SHIZUMA KUMIKO
    • A61N1/30
    • PROBLEM TO BE SOLVED: To provide an iontophoresis apparatus which can prevent a drug ion from intruding into a living body caused by diffusion, when administration is not desired.
      SOLUTION: This iontophoresis apparatus comprises: a power source 12A; an action-side electrode 24 which is connected to the power source 12A so as to hold the drug ion to be administered; and a non-action-side electrode 44 which is connected to a pole, on the opposite side of the action-side electrode 24, of the power source 12A. The iontophoresis apparatus is equipped with a voltage controller which controls a voltage applied to the action-side electrode 24. The voltage identical in polarity with the drug ion is applied in the administration of the drug, and the voltage with polarity opposite to that of the drug ion is applied in the non-administration of the drug.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种可以防止药物离子侵入由扩散引起的生物体的离子电渗疗法,当不需要给药时。 该离子电渗疗法装置包括:电源12A; 动作侧电极24,其连接到电源12A以保持要施用的药物离子; 以及与动作侧电极24的相反侧的电极12A连接的非动作侧电极44。 离子电渗装置配备有电压控制器,其控制施加到动作侧电极24的电压。在药物的给药中施加与药物离子相同的极性的电压,并且极性与 在药物的非给药中应用药物离子。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Iontophoresis apparatus and photodynamic therapy system using iontophoresis apparatus
    • IOPOPHORESIS设备和使用IOPOPHORESIS设备的光电治疗系统
    • JP2007097689A
    • 2007-04-19
    • JP2005288811
    • 2005-09-30
    • Transcutaneous Technologies Incトランスキュー・テクノロジーズ 株式会社
    • KAWAKAMI HIROYOSHISHIBATA TSUTOMUAKIYAMA HIDEONAKAYAMA HATOOMATSUMURA TAKEHIKOMATSUMURA AKIHIKO
    • A61N1/30A61K31/409A61P35/00
    • PROBLEM TO BE SOLVED: To provide an iontophoresis apparatus which can administer photosensitive matter to only a malignant tumor cell. SOLUTION: The iontophoresis apparatus is equipped with an electrode 22A connected to a power source 12, an electrolyte holding section 26A which is arranged in the front of the electrode 22A and holds an electrolyte, an anion exchange membrane 28A which is arranged in the front of the electrolyte holding section 26A and passes an anion selectively, a liquid medicine holding section 30A which is arranged in the front of the anion exchange membrane 28A and holds a photosensitization reactant, a cation exchange membrane 32A which is arranged in the front of the liquid medicine holding section 30A and passes a cation selectively, a working side electrode structure 20A which is arranged in a part on the front side of the cation exchange membrane 32A and has at least a release-inhibiting layer 40 to control the release of the photosensitization reactant, and a position index which is formed in the working side electrode structure 20A and can specify the position of a pasting face 60A to a living body. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种可以将光敏物质仅施用于恶性肿瘤细胞的离子电渗疗法。 解决方案:离子电渗仪装置配备有连接到电源12的电极22A,布置在电极22A的前面并保持电解质的电解质保持部26A,阴离子交换膜28A 电解质保持部26A的前方,通过阴离子选择性地配置在阴离子交换膜28A的前方并保持有光敏性反应物的液体药剂保持部30A,配置在阴离子交换膜28A的前方的阳离子交换膜32A 液体药剂保持部30A选择性地通过阳离子,设置在阳离子交换膜32A的前侧的一部分中的工作侧电极结构20A,并具有至少一个释放抑制层40,以控制阳离子交换膜32A的释放。 光敏反应物和在工作侧电极结构20A中形成的位置指数,并且可以将粘贴面60A的位置指定为 活体。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Iontophoresis apparatus
    • IOPOPHORESIS设备
    • JP2007089821A
    • 2007-04-12
    • JP2005283112
    • 2005-09-28
    • Transcutaneous Technologies Incトランスキュー・テクノロジーズ 株式会社
    • MATSUMURA TAKEHIKOKANEMURA KIYOSHINAKAYAMA HATOOAKIYAMA HIDEOMATSUMURA AKIHIKO
    • A61N1/30A61N1/04
    • PROBLEM TO BE SOLVED: To provide an iontophoresis apparatus capable of receiving a procedural advantage for granting an approval and a registration on the safety and the efficacy executed by government organizations. SOLUTION: This iontophoresis apparatus is provided with a first conductivity type ion exchange membrane doped with first conductivity type medicine ions, and a voltage impressing member for impressing a voltage to the first ion exchange membrane; and the voltage impressing member includes an electrode, an electrolyte retaining section retaining electrolyte coming into contact with the electrode and a detachable impermeable separator disposed in the front face side of the electrolyte retaining section. This iontophoresis apparatus is constituted to dose the medicine ions in such a state that the separator is detached and the first ion exchange membrane is disposed in the front face side of the electrolyte retaining section. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种离子电渗仪器,能够获得批准和注册政府机构执行的安全性和效力的程序优势。 解决方案:该离子电渗仪设置有掺杂有第一导电型药物离子的第一导电型离子交换膜和用于向第一离子交换膜施加电压的电压施加构件; 并且电压施加构件包括电极,与电极接触的保持电解质的电解质保留部分和设置在电解质保持部的正面侧的可拆卸的不可渗透隔板。 该离子电渗疗法装置构成为以分离器分离的状态剂量药物离子,第一离子交换膜设置在电解质保持部的正面侧。 版权所有(C)2007,JPO&INPIT
    • 6. 发明专利
    • Low-frequency treating device
    • 低频处理装置
    • JP2007089776A
    • 2007-04-12
    • JP2005282222
    • 2005-09-28
    • Transcutaneous Technologies Incトランスキュー・テクノロジーズ 株式会社
    • AKIYAMA HIDEONAKAYAMA HATOOMATSUMURA TAKEHIKOMATSUMURA AKIHIKO
    • A61N1/36A61N1/04A61N1/30
    • PROBLEM TO BE SOLVED: To promote treating effect in a low-frequency treating device having a different electrode and an indifferent electrode. SOLUTION: The low-frequency treating device 10 has a different electrode pad 12, an indifferent electrode pad, and a low-frequency power source 16 connected to the different electrode pad 12 and the indifferent electrode pad, and further is equipped with an iontophoresis device 18 capable of being installed in the different electrode pad 12. The iontophoresis device 18 is constituted including: an action side electrode structure for administering a drug ion by iontophoresis; a non-action side electrode structure which becomes a counter electrode when administering the drug ion from the action side electrode structure; and a DC power source connected to the action side electrode structure and the non-action side electrode structure in different polarities. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:为了促进具有不同电极和无电极的低频处理装置的处理效果。 解决方案:低频处理装置10具有不同的电极焊盘12,无关电极焊盘和连接到不同电极焊盘12和无电极焊盘的低频电源16,并且还配备有 离子电渗疗装置18,其特征在于,具有:离子电渗疗法给予药物离子的动作侧电极结构体, 非作用侧电极结构,当从动作侧电极结构施用药物离子时成为对电极; 以及以不同极性连接到动作侧电极结构和非动作侧电极结构的DC电源。 版权所有(C)2007,JPO&INPIT
    • 7. 发明专利
    • Iontophoresis apparatus
    • IOPOPHORESIS设备
    • JP2007089664A
    • 2007-04-12
    • JP2005280336
    • 2005-09-27
    • Transcutaneous Technologies Incトランスキュー・テクノロジーズ 株式会社
    • NAKAYAMA HATOOTSUJI KAZUYUKIMATSUMURA TAKEHIKOAKIYAMA HIDEOMATSUMURA AKIHIKO
    • A61N1/30
    • PROBLEM TO BE SOLVED: To provide an iontophoresis apparatus which can be carried and can be used as a single unit. SOLUTION: This iontophoresis apparatus is equipped with a main body section 100 and a power source section 200 which is a separate body from the main body section 100. In this case, the main body section has a first electrode member 152, a second electrode member 154, a chemical holding section 124, and a pair of inputting electrodes 132 and 134 to which a voltage is fed. The first electrode member 152 is charged with a voltage having the same polarity as an ionized medicine. The second electrode member 154 is charged with a voltage having a different polarity from the first electrode member 152. The chemical holding section 124 holds the medicine in an electric field between the first electrode member 152 and the second electrode member 154. The power source section 200 has a power source and outputting electrodes 242 and 244 for feeding the output of the power source to the outside, and forms an electric potential difference between the inputting electrodes 132 and 134 through the outputting electrodes 242 and 244 when being fitted on the main body section 100. In an initial stage, the main body section 100 and the power source section 200 are packaged in a manner to be electrically and chemically isolated from each other. When the packaging is unpacked, and the power source section 200 is fitted on the main body section 100, the iontophoresis device becomes operable. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供可携带并可用作单个单元的离子电渗疗法装置。 解决方案:该离子电渗疗法装置具有主体部分100和与主体部分100分开的主体部分200。在这种情况下,主体部分具有第一电极部件152, 第二电极部件154,化学保持部124以及供给电压的一对输入电极132,134。 第一电极构件152以与离子化药物相同极性的电压进行充电。 第二电极部件154以与第一电极部件152的极性不同的电压进行充电。化学保持部124将药物保持在第一电极部件152和第二电极部件154之间的电场中。电源部 200具有电源,并且输出用于将电源的输出馈送到外部的电极242和244,并且当安装在主体上时通过输出电极242和244在输入电极132和134之间形成电位差 在初始阶段,主体部分100和电源部分200以彼此电气和化学隔离的方式被封装。 当包装被包装并且电源部分200装配在主体部分100上时,离子电渗疗装置变得可操作。 版权所有(C)2007,JPO&INPIT
    • 10. 发明专利
    • Iontophoresis apparatus
    • IOPOPHORESIS设备
    • JP2007050136A
    • 2007-03-01
    • JP2005238026
    • 2005-08-18
    • Transcutaneous Technologies Incトランスキュー・テクノロジーズ 株式会社
    • NAKAYAMA HATOOKANEMURA KIYOSHIMATSUMURA TAKEHIKOAKIYAMA HIDEOMATSUMURA AKIHIKO
    • A61N1/30
    • A61N1/0444A61N1/0448
    • PROBLEM TO BE SOLVED: To simplify manufacture processes, to automate manufacture, to perform mass production or to reduce a manufacture cost in an iontophoresis apparatus of a type that first conductivity type medicament ions are doped to a first conductivity type ion exchange membrane arranged on a biological interface or an iontophoresis apparatus of a type that two ion exchange membranes of an opposite conductivity type are interposed between an electrolyte holding part and a medicament liquid holding part including the first conductivity type medicament ions. SOLUTION: At least one electrode structure of the iontophoresis apparatus is constituted so as to be provided with a composite ion exchange membrane composed of the laminated body of the first ion exchange membrane of the first conductivity type / the second ion exchange membrane of the second conductivity type or the laminated body of the first ion exchange membrane of the first conductivity type / a semi-permeable membrane / the second ion exchange membrane of the second conductivity type, for which the respective membranes are integrally joined. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了简化制造工艺,自动化制造,进行批量生产或降低离子电渗疗法装置中的制造成本,其中第一导电型药物离子被掺杂到第一导电型离子交换膜 布置在生物界面或离子电渗疗法装置上,其类型是将两个相反导电类型的离子交换膜置于电解质保持部分和包含第一导电型药物离子的药物液体保持部分之间。 解决方案:离子电渗装置的至少一个电极结构构成为具有由第一导电型/第二离子交换膜的第一离子交换膜的层叠体构成的复合离子交换膜 第一导电型/第二导电类型的半透膜/第二离子交换膜的第一离子交换膜的第二导电类型或层叠体,各个膜整体接合。 版权所有(C)2007,JPO&INPIT