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    • 1. 发明授权
    • Experimental instrument for examining permeability of a flowing cornea
and an experimental unit using said experimental instrument
    • 用于检查流动角膜的渗透性和使用所述实验仪器的实验单元的实验仪器
    • US5694196A
    • 1997-12-02
    • US408024
    • 1995-03-21
    • Yoshiaki HiraiKakuji Tojo
    • Yoshiaki HiraiKakuji Tojo
    • G01N13/04B01F13/08G01N13/00G01N15/08A61B3/00F04B17/00
    • G01N13/00B01F13/0818
    • An experimental instrument for examining permeability of a flowing cornea is used for imitating a lacrimal layer in the front part of a cornea or the back part of the cornea (an aqueous humor) by means of storing a various kinds of solutions comprises a cell body including a stirring part of a cylindrical wall and a bottom surface at a bottom part thereof, a constant temperature tank which surrounds the cell body all around a sample membrane setting part which is protrusively arranged at an outer surface of the call body and can set a sample membrane such as a contact lens used as a cornea or a corneal model, an outflow tube which is protrusively arranged at an outer surface of the stirring part and makes a solution in the cell body discharge, an inflow tube which is protrusively arranged at an upper part of the cell body and makes the solution flow inside of the cell body, a magnet rotator which is arranged inside the stirring part of the cell body, and a magnet stirrer which makes the magnet rotator inside the cell body rotate by means of magnetic force.
    • 用于检查流动角膜的渗透性的实验仪器用于通过存储各种溶液来模拟角膜前部或角膜后部(房水)中的泪液层,其包括细胞体,包括 一个圆筒壁的搅拌部分和一个底部的底面,一个恒温罐,围绕一个试样膜设置部分围绕着电池体,该样品膜设置部分突出地布置在呼叫体的外表面,并可以设置样品 诸如用作角膜或角膜模型的隐形眼镜的膜,突出地布置在搅拌部分的外表面并使细胞体排出的溶液的流出管,突出地布置在上部的流入管 电池体的一部分,使溶液流入电池体内部,配置在电池体的搅拌部内的磁铁旋转体,使磁铁搅拌器 电池体内的磁铁旋转体通过磁力旋转。
    • 3. 发明授权
    • Micro flow controlling pump
    • 微流量控制泵
    • US5599175A
    • 1997-02-04
    • US352379
    • 1994-12-08
    • Kakuji TojoYoshiaki Hirai
    • Kakuji TojoYoshiaki Hirai
    • F04B35/00F04D13/02F04D29/22F04B17/00
    • F04D29/2211F04D13/024
    • A micro-flow controlling pump according to the present invention is used for controlling a micro-flow of a liquid in an experiment using a chemical agent for examining permeability of a membrane, reaction of a flow system, reflux of vital tissues, or the like. The micro-flow controlling pump includes: a pump body formed to have a cylindrical wall and a bottom surface, and be provided with an outflow tube formed at an outer surface of the cylindrical wall; a cover body formed to be detachably attached to the pump body and be provided with an inflow tube; a magnet rotator arranged inside the pulp body having criss-crossing blade parts; and a magnet stirrer arranged outside the pump body, having magnetic force by which the magnet rotator in the pump body can be rotated.
    • 根据本发明的微流量控制泵用于使用用于检查膜的渗透性,流动系统的反应,重要组织的回流等的化学试剂来控制液体的微流量 。 微流控制泵包括:形成为具有圆筒壁和底面的泵体,并且在该圆筒壁的外表面上设置有流出管; 盖体,其形成为可拆卸地附接到所述泵体并设置有流入管; 布置在纸浆本体内的具有十字交叉叶片部分的磁体旋转器; 以及设置在泵体外部的磁力搅拌器,其具有通过该磁力使得泵体中的磁体旋转体能够旋转的磁力。
    • 5. 发明授权
    • Transdermal varapamil delivery device
    • 透皮诺帕米尔输送装置
    • US4690683A
    • 1987-09-01
    • US751126
    • 1985-07-02
    • Yie W. ChienKakuji Tojo
    • Yie W. ChienKakuji Tojo
    • A61K9/00A61K9/70A61K31/275
    • A61K9/7069A61K31/275A61K9/7084
    • A transdermal drug delivery device for administering 5-[(3,4-dimethoxyphenethyl) methylamino]-2-(3,4-dimethoxyphenyl)-2-isopropylvaleronitrile comprising a permeable matrix of silicone elastomer or other bioacceptable lipophilic polymer material having an effective cardiovascular affecting amount of active drug and an effective drug release promoting amount of a transport enhancing agent dispersed therein. The back of the matrix is covered with an occlusive backing and the face of the matrix is covered with a biocompatible adhesive such as a silicone adhesive also having a transport enhancing agent dispersed therein. A supply of skin permeation enhancing agent may be provided adjacent the adhesive layer such that the skin of a patient to whom the device is applied is pretreated with permeation enhancing agent. Particularly preferred skin permeation and transport enhancing agents include N,N-diethyl-m-toluamide, isopropyl myristate and similar compounds.
    • 一种用于施用5 - [(3,4-二甲氧基苯乙基)甲基氨基] -2-(3,4-二甲氧基苯基)-2-异丙基戊腈的透皮药物递送装置,其包含有机硅弹性体的可渗透基质或其它具有有效心血管的生物可接受的亲脂性聚合物材料 影响分散在其中的活性药物的量和有效的药物释放促进量的运输增强剂。 基质的背面被闭塞背衬覆盖,并且基质的表面覆盖有生物相容性粘合剂,例如分散有运输增强剂的硅氧烷粘合剂。 可以在粘合剂层附近提供皮肤渗透增强剂的供应,使得施用该装置的患者的皮肤用渗透增强剂预处理。 特别优选的皮肤渗透和运输增强剂包括N,N-二乙基 - 间甲苯甲酰胺,肉豆蔻酸异丙酯和类似化合物。
    • 6. 发明授权
    • Drug-releasing system of biodegradable polymer type
    • 可生物降解聚合物类型的药物释放系统
    • US07850993B2
    • 2010-12-14
    • US10468585
    • 2002-02-21
    • Kakuji TojoYoshiko Fujikawa
    • Kakuji TojoYoshiko Fujikawa
    • A61K9/14
    • A61K47/34A61K9/0024A61K9/204A61K9/2095
    • A method for producing compression-melt molded product using polylactic acid powder is described. The method comprises the steps of: 1) heat-melting polylactic acid having a weight-average molecular weight of 3,000-40,000 at 140-220° C., 2) allowing the melted polylactic acid to cool down to solidify at an ordinary or a lower temperature, 3) pulverizing the solidified polylactic acid at an ordinary temperature into powder, and 4) compressing the powder or a mixture powder prepared by addition of another ingredient, e.g., a biologically active compound, to the carrier powder in a mold at an ordinary temperature to cause the polylactic acid to melt into a molded product of a predetermined shape.
    • 描述了使用聚乳酸粉末制造压缩 - 熔融模制产品的方法。 该方法包括以下步骤:1)在140-220℃下将重均分子量为3,000-40,000的聚乳酸加热熔融,2)使熔融的聚乳酸冷却至常压或 3)将常温下固化的聚乳酸粉碎成粉末,4)将粉末或将其它成分例如生物活性化合物加入制备的混合粉末压制成模具中的载体粉末 常温使聚乳酸熔化成预定形状的成型体。