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    • 63. 发明申请
    • Drug administration method
    • 药物治疗方法
    • US20050123485A1
    • 2005-06-09
    • US10505205
    • 2003-02-18
    • Shigeki Suzuki
    • Shigeki Suzuki
    • A61B17/00A61K9/12A61M13/00A61L9/04A61K9/14
    • A61K9/12A61B17/00491A61M13/00A61M15/025A61M2202/066A61M2205/3331A61M2205/7518
    • A method of administering a drug whereby a fine drug powder can be accurately administered to a target site (in particular, a target site in the body cavity) via fluidization and spraying with a gas by using a micro tube. Concerning the administration mode, in particular, the drug alone or a biopolymer is administered or the biopolymer is employed as a carrier in the above method. More specifically speaking, a method of administering a fine drug powder which comprises finely milling one or more types fine particles of the drug and/or the biopolymer, blending them each other, fluidizing the blend with a gas, then transporting the fluidized matter in a micro tube by the gas stream and spraying the fine drug powder from the tip of the micro tube toward the target site. Further, an administration method which comprises concentrically providing a capillary tube in the micro tube, supplying an aqueous solution of the drug and/or the biopolymer from the capillary tube into the gas stream and then mixing it with other fine particles of the drug and/or the biopolymer under transportation by the gas.
    • 通过使用微管经由流化和喷雾气体,可以将药物粉末精确施用于目标部位(特别是体腔内的靶部位)的药物的给药方法。 关于给药方式,特别是单独使用药物或生物聚合物,或者在上述方法中使用生物聚合物作为载体。 更具体地说,一种施用精细药物粉末的方法,其包括将一种或多种类型的药物和/或生物聚合物细颗粒精细研磨,将它们彼此混合,使气体流化该共混物,然后将流化物质输送到 微管通过气流喷射细粉末从微管的尖端朝向目标位置。 此外,一种给药方法,其包括在微管中同心地提供毛细管,将药物和/或生物聚合物的水溶液从毛细管供给到气流中,然后将其与药物的其它细颗粒和/ 或由气体输送的生物聚合物。
    • 64. 发明授权
    • Spring biased liquid applicator with integral removable cap
    • 具有整体可拆卸盖的弹簧液体应用器
    • US5131777A
    • 1992-07-21
    • US476503
    • 1990-06-11
    • Junji KimuraShigeki Suzuki
    • Junji KimuraShigeki Suzuki
    • A45D34/04A61F13/40B05B11/00B05C17/00
    • B05B11/3077A45D34/04A45D34/043A61M35/006B05C17/002A45D2200/1018
    • A container of a liquid applicator containing a liquid, and an applicator member is held on the container for applying the liquid to an objective part. The applicator member is mounted for movement into and out of the container and a biasing member is provided to bias the applicator member outwardly of the container. When the applicator member is pressed into the container against the force of the biasing member, the liquid is caused to exude to the surface of the applicator member outside the container. Therefore, it is possible to provide a liquid applicator which has a container of any desired volume and made of a rigid and hard material and which allows only the liquid to exude to the outer surface of the container and be spread properly and effectively over an objective part.
    • PCT No.PCT / JP88 / 01234 Sec。 371 1990年6月11日第 102(e)日期1990年6月11日PCT提交1988年12月7日PCT公布。 出版物WO89 / 05695 日期:1989年6月29日。将含有液体的液体涂抹器的容器和涂抹器部件保持在容器上,以将液体施加到目标部件。 安装施加器构件用于移入和移出容器,并且设置偏置构件以将施涂器构件偏压到容器外部。 当施加器构件抵抗偏置构件的力被压入容器时,使液体渗透到容器外部的涂抹器构件的表面。 因此,可以提供一种具有任何所需体积的容器并由刚性和硬质材料制成的容器的液体涂抹器,并且仅允许液体渗透到容器的外表面并且在物镜上有效地扩散 部分。
    • 65. 发明授权
    • Packaging article inclusion-proofing device for end-sealing mechanism
    • 包装用品封口机构包装防止装置
    • US4964258A
    • 1990-10-23
    • US267945
    • 1988-11-07
    • Kiyoshi SekoMasato HatanoShigeki Suzuki
    • Kiyoshi SekoMasato HatanoShigeki Suzuki
    • B65B51/10B65B9/10B65B57/00B65B57/10B65B57/16
    • B65B57/16B65B57/10B65B9/067
    • A packaging article inclusion-proofing device for use with an end-sealing mechanism includes a motor for driving a conveyor for feeding packaging articles, with a predetermined space therebetween, into a packaging material which is disposed downstream and formed into a packaging tube, a motor for driving a series of rolls which deliver the packaging material, and a motor for driving an end-sealing mechanism for achieving end-sealing of the tubular packaging material. A deviation detecting sensor is provided for detecting any deviation of the packaging articles from a position at which they would normally be disposed during the end-sealing operation. A reference timing pulse generator generates predetermined reference timing pulses with respect to the feeding of the packaging articles. The motor drive for the end-sealing mechanism is stopped when a deviation timing signal, based upon a reference timing pulse, coincides with a deviation detection signal from the deviation detecting sensor, and the motor drive is restarted after a predetermined cycle time period elapses which would encompass all of the packaging articles disposed at the deviated positions, whereby proper synchronization of the articles, packaging material, and end-sealing is again achieved.
    • 一种与封端机构一起使用的包装物品夹杂物检测装置,包括:电动机,用于驱动输送机,用于将包装物料以预定的间隔供给到设置在下游并形成包装管的包装材料中;马达 用于驱动一系列提供包装材料的辊,以及用于驱动用于实现管状包装材料的端部密封的端部密封机构的马达。 设置偏差检测传感器,用于检测包封制品在终端密封操作期间通常被放置的位置的任何偏离。 参考定时脉冲发生器相对于包装物品的供给生成预定的参考定时脉冲。 当基于参考定时脉冲的偏差定时信号与来自偏差检测传感器的偏差检测信号相一致时,用于端部密封机构的电动机驱动器停止,并且在经过预定的周期时间段之后重新启动电动机驱动,其中, 将包括设置在偏离位置的所有包装物品,由此再次实现物品,包装材料和端部密封的适当同步。
    • 70. 发明授权
    • Fluid ejecting head and fluid ejecting apparatus
    • 流体喷射头和流体喷射装置
    • US08231205B2
    • 2012-07-31
    • US12047611
    • 2008-03-13
    • Shigeki Suzuki
    • Shigeki Suzuki
    • B41J2/045B41J2/165
    • B41J2/14274B41J2202/07
    • A fluid ejecting head includes a fluid storage chamber that temporarily stores a fluid, which is supplied from a fluid supply port, a plurality of pressure chambers, to which the fluid stored in the fluid storage chamber is supplied through a plurality of fluid supply paths, respectively, a plurality of driving elements that change pressure in the pressure chambers, respectively, and a plurality of nozzle openings, from which the fluids contained in the pressure chambers are ejected when the driving elements are driven, respectively. A specific driving element most distant from the fluid supply port among the driving elements has a maximum capability to discharge the air bubbles in the fluid from the nozzle opening among the driving elements.
    • 流体喷射头包括:液体储存室,其临时存储从流体供给口供给的流体,多个压力室,通过多个流体供给路径供给储存在流体容纳室中的流体, 分别改变压力室中的压力的​​多个驱动元件和分别在驱动元件被驱动时喷射包含在压力室中的流体的多个喷嘴开口。 驱动元件中最靠近流体供给口的特定驱动元件具有从驱动元件中的喷嘴开口排出流体中的气泡的最大能力。