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    • 2. 发明授权
    • Iontophoresis system and its control process of current
    • 离子电渗系统及其电流控制过程
    • US6141582A
    • 2000-10-31
    • US163
    • 1998-05-05
    • Kenji MoriKatsuhiro NakamuraNaruhito HigoNoriyuki Kuzumaki
    • Kenji MoriKatsuhiro NakamuraNaruhito HigoNoriyuki Kuzumaki
    • A61N1/32A61N1/30
    • A61N1/044A61N1/0436A61N1/0448A61N1/325
    • An iontophoresis system and its control process for current are proposed, which system can decrease variation in drug delivery quantity due to the individual difference of impedance of skin or mucosal membrane, and avoid any decrease of the delivery quantity of drug in a donor device, thereby to obtain excellent medicinal effect, safety, reliability, and productivity, comprising said donor device, a reference device, a current detection unit for measuring as an effective current value the difference between the value of an applied current passing between the donor and reference devices during application of pulse voltage/current and the value of a discharged current whose electric charge which the living body has been equipped with is released by a short-circuit formed between said donor and reference devices when the application of pulse voltage/current is suspended, and a feedback control unit of making the amplitude of the pulse voltage/current variable to control the effective current value. The control process for current of the iontophoresis system of the present invention comprises an effective current measurement step of measuring said effective current value and a feedback control step of controlling said effective current value.
    • PCT No.PCT / JP96 / 02286 Sec。 371日期:1998年5月5日 102(e)日期1998年5月5日PCT提交1996年8月12日PCT公布。 公开号WO97 / 07853 日期1997年3月6日提出了离子电渗系统及其电流控制过程,由于皮肤或粘膜阻抗的个体差异,该系统可以减少药物输送量的变化,避免药物输送量的下降 供体装置,从而获得优异的药物效果,安全性,可靠性和生产率,包括所述供体装置,参考装置,电流检测单元,用于将作为有效电流值的施加电流的值 施加脉冲电压/电流时的供体和参考装置以及当所述供体和参考装置之间形成的短路而释放出具有活体的电荷的放电电流的值,当施加脉冲电压/ 电流被暂停,并且使得脉冲电压/电流的幅度可变的反馈控制单元控制t 他有效的当前价值。 本发明的离子电渗系统的电流控制过程包括测量所述有效电流值的有效电流测量步骤和控制所述有效电流值的反馈控制步骤。
    • 3. 发明授权
    • Iontophoresis electrode and iontophoresis device using the electrode
    • 离子电渗电极和离子电渗装置使用电极
    • US6006130A
    • 1999-12-21
    • US750712
    • 1997-02-24
    • Naruhito HigoKenji MoriKazuya KatagaiKatsuhiro Nakamura
    • Naruhito HigoKenji MoriKazuya KatagaiKatsuhiro Nakamura
    • A61N1/04A61N1/05A61N1/30
    • A61N1/0436A61N1/05A61N1/30
    • This invention relates to an iontophoresis electrode which is applicable to mucous membranes and oral mucous membranes, and especially capable of sticking directly on human oral mucous membranes and excellent in efficiently administering medicine and extremely easy to handle and lightweight.An iontophoresis electrode (Ka) of this invention comprises a backing layer (1) and, a conductive layer for current dispersion (2) made of silver or silver chloride that laminated on the backing layer (1) and, a spacer layer (3) of film, sheet, or cloth shape which is made of dried polymer layer with water soluble and swelling properties and laminated on the conductive layer for current dispersion, and can be sticked to the oral mucous membrane.
    • PCT No.PCT / JP95 / 01193 Sec。 371日期1997年2月24日 102(e)日期1997年2月24日PCT提交1995年6月15日PCT公布。 WO95 / 35132 PCT出版物 日期1995年12月28日本发明涉及一种适用于粘膜和口腔粘膜的离子电渗电极,特别是能够直接粘贴在人体口腔粘膜上,优异的高效投药,极易处理,重量轻。 本发明的离子电渗电极(Ka)包括背衬层(1)和层压在背衬层(1)上的由银或氯化银制成的用于电流分散(2)的导电层,以及间隔层(3) 由具有水溶性和溶胀性的干燥聚合物层制成的薄膜,片材或布料形状,层压在导电层上用于电流分散,并且可以粘贴到口腔粘膜上。
    • 5. 发明授权
    • Iontophoresis device structure
    • 离子电渗装置结构
    • US06259946B1
    • 2001-07-10
    • US09331766
    • 1999-09-27
    • Naruhito HigoKazutaka InoueKenji Mori
    • Naruhito HigoKazutaka InoueKenji Mori
    • A61N130
    • A61N1/044A61N1/0436
    • It is the object of the present invention to provide an iontophoresis device structure which has excellent contouring ability at its site of attachment, has very high safety, is of high quality with high product yields, and can be produced with fewer production steps to improve working efficiency and increase productivity to allow mass production at low cost. The iontophoresis device structure of the present invention has a construction provided with a cup-shaped support including a concave part, at least one electrification hole formed in the concave part, an electrode layer laid on the flat part of the rim of the concave part, and an electrolyte layer or drug-holding layer fitted into the concave part.
    • 本发明的目的是提供一种离子电渗装置结构,其在其附着部位具有优异的轮廓能力,具有非常高的安全性,具有高质量和高产率的离子电渗装置结构,并且可以用较少的生产步骤生产以改善工作 提高效率并提高生产率,以便以低成本批量生产。 本发明的离子电渗装置结构具有设置有杯状支撑体的结构,所述杯状支撑体包括凹部,在所述凹部中形成的至少一个带电孔,设置在所述凹部的边缘的平坦部分上的电极层, 以及装配到凹部中的电解质层或药物保持层。
    • 6. 发明授权
    • Iontophoresis system
    • 离子电渗系统
    • US07018345B2
    • 2006-03-28
    • US10727582
    • 2003-12-05
    • Kenji MoriNaruhito Higo
    • Kenji MoriNaruhito Higo
    • A61B5/00
    • A61N1/30
    • The present invention provides an iontophoresis system for non-invasively taking a physiological substance out of the living body, the system being suitably used for the mucous membrane. The present iontophoresis system non-invasively takes a physiological substance out of a living body. The system includes a plurality of electrode structures and a power supply device connected to the electrode structures. At least one of the electrode structures has a physiological substance extraction pad applied to the mucous membrane. In the present system, the time to apply electric energy to the living body by the power supply device is set between 30 seconds and 20 minutes. The physiological substance extraction pad which is provided in the electrode structure is applicable to the mucous membrane of the mouth and can be used, for example, to monitor glucose in the living body or an amount of drug administered.
    • 本发明提供了一种离子电渗系统,用于非生物地将生理物质从活体中取出,该系统适合用于粘膜。 本离子电渗系统非侵入性地将生理物质从活体中取出。 该系统包括多个电极结构和连接到电极结构的电源装置。 电极结构中的至少一个具有应用于粘膜的生理物质提取垫。 在本系统中,通过电源装置向生物体施加电能的时间设定为30秒〜20分钟。 设置在电极结构体内的生理物质提取垫适用于口腔粘膜,例如可以用于监测生物体内的葡萄糖或给药量。