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    • 2. 发明申请
    • METHOD, SET, AND APPARATUS FOR OBTAINING PRINTS OF A PART OF THE HUMAN BODY
    • 用于获取人体部分印刷品的方法,设置和装置
    • US20080305240A1
    • 2008-12-11
    • US12191328
    • 2008-08-14
    • Yuichi TOMARU
    • Yuichi TOMARU
    • A61B5/117
    • A61B5/411A61B5/1172
    • A part of a human body is caused to contact the surface layer of a recording medium over which a plurality of metallic grains with an outside size of 200 nm or less are distributed. Then, secretions from the skin surface of the body part are caused to adhere to the surface layer of the recording medium to take the print of the body part. If light is irradiated to the recording medium, specific optical characteristics resulting from the surface structure of the recording medium are obtained, and therefore the color of the recording medium varies between a region having secretions and a region having no secretions. This renders it possible to record a visible print on the recording medium.
    • 使人体的一部分与外部尺寸为200nm以下的多个金属颗粒分布的记录介质的表层接触。 然后,使来自身体部分的皮肤表面的分泌物粘附到记录介质的表面层上以拍摄身体部位的印刷品。 如果光照射到记录介质上,则获得由记录介质的表面结构产生的特定光学特性,因此记录介质的颜色在具有分泌物的区域和不具有分泌物的区域之间变化。 这使得可以在记录介质上记录可视打印。
    • 3. 发明申请
    • MICROSTRUCTURE AND METHOD OF MANUFACTURING THE SAME
    • 微结构及其制造方法
    • US20090098344A1
    • 2009-04-16
    • US12249554
    • 2008-10-10
    • Yuichi TOMARU
    • Yuichi TOMARU
    • B32B3/00B44C1/22
    • G01N21/658Y10T428/24612
    • The method of manufacturing a microstructure having metal microbodies which generate an enhanced electric field includes forming, in a substrate, micropores each of which opens out on a surface of the substrate, has an inside diameter that varies in a depth direction, and has in a tip portion thereof a narrower, outwardly projecting recess, filling the micropores with metal to form the metal microbodies each having at a tip portion thereof a projection made of the metal filled into the outwardly projecting recess, and removing at least part of the substrate from a metal microbody tip portion side to expose at least the projection at the tip portion of each of the metal microbodies. The resulting microstructure has metallic nanostructural elements that generate an enhanced electric field by an antenna effect at their pointed tips.
    • 制造具有产生增强电场的金属微体的微结构的方法包括在基板中形成在基板的表面上开口的微孔,其内径在深度方向上变化,并且具有 其尖端部分具有较窄的向外突出的凹部,用金属填充微孔以形成金属微体,每个金属微体的尖端部分由填充到向外突出的凹部中的金属制成的突起,以及从基底的至少一部分去除基底 金属微细体尖端部分侧至少露出每个金属微体的尖端部分处的突起。 所得到的微结构具有金属纳米结构元件,通过天线效应在其尖端处产生增强的电场。