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    • 1. 发明授权
    • Portable digital reader for urinalysis
    • 便携式数字读取器用于尿液分析
    • US08991238B2
    • 2015-03-31
    • US13390596
    • 2010-03-05
    • Dae Sik LeeHyun Woo SongByoung Goo JeonMin Joon KimMoon Youn JungSeon Hee Park
    • Dae Sik LeeHyun Woo SongByoung Goo JeonMin Joon KimMoon Youn JungSeon Hee Park
    • G01N21/00G01N33/493G01N21/84G01N15/06
    • G01N33/493G01N15/06G01N21/8483G01N2201/0221
    • The present invention relates to a portable digital reader for urinalysis. The portable digital reader for reading an analysis target chip including a plurality of test areas, comprises: a main body including a light emitting section having light emitting elements for radiating light, an integral optical splitter for uniformly distributing the light from the light emitting section to each test area of the analysis target chip, a light receiving section for receiving light reflected from the each test area so as to convert the same to electric signals, and a measuring section for measuring concentration according to the electric signals obtained from the light receiving section; a main supporting body having the analysis target chip and assembled with the main body; and an auxiliary supporting body assembled between the analysis target chip and the main supporting body, including a groove for assembling the analysis target chip, and assembled with the main supporting body to be exchanged after use. Therefore, it is possible to prevent the reader from being contaminated with superfluous urine by forming a portion contacting a strip chip to be exchangeable and disposing a moisture absorption material to a portion for introducing the strip chip.
    • 本发明涉及用于尿分析的便携式数字读取器。 用于读取包括多个测试区域的分析目标芯片的便携式数字读取器包括:主体,包括具有用于发光的发光元件的发光部分,用于将来自发光部分的光均匀分布的整体光分路器 分析目标芯片的每个测试区域,用于接收从每个测试区域反射的光以将其转换为电信号的光接收部分;以及根据从光接收部分获得的电信号来测量浓度的测量部分 ; 具有分析目标芯片并与主体组装的主支撑体; 以及组装在分析对象芯片和主支撑体之间的辅助支撑体,包括用于组装分析对象芯片的凹槽,并且与使用后要更换的主支撑体组装在一起。 因此,可以通过形成与条形芯片接触的部分来防止读取器被多余的尿污染,并且将吸湿材料设置在引导带状芯片的部分。
    • 4. 发明申请
    • PORTABLE DIGITAL READER FOR URINALYSIS
    • 便携式数字读数器
    • US20120152002A1
    • 2012-06-21
    • US13390596
    • 2010-03-05
    • Dae Sik LeeHyun Woo SongByoung Goo JeonMin Joon KimMoon Youn JungSeon Hee Park
    • Dae Sik LeeHyun Woo SongByoung Goo JeonMin Joon KimMoon Youn JungSeon Hee Park
    • G01N21/00
    • G01N33/493G01N15/06G01N21/8483G01N2201/0221
    • The present invention relates to a portable digital reader for urinalysis. The portable digital reader for reading an analysis target chip including a plurality of test areas, comprises: a main body including a light emitting section having light emitting elements for radiating light, an integral optical splitter for uniformly distributing the light from the light emitting section to each test area of the analysis target chip, a light receiving section for receiving light reflected from the each test area so as to convert the same to electric signals, and a measuring section for measuring concentration according to the electric signals obtained from the light receiving section; a main supporting body having the analysis target chip and assembled with the main body; and an auxiliary supporting body assembled between the analysis target chip and the main supporting body, including a groove for assembling the analysis target chip, and assembled with the main supporting body to be exchanged after use. Therefore, it is possible to prevent the reader from being contaminated with superfluous urine by forming a portion contacting a strip chip to be exchangeable and disposing a moisture absorption material to a portion for introducing the strip chip.
    • 本发明涉及用于尿分析的便携式数字读取器。 用于读取包括多个测试区域的分析目标芯片的便携式数字读取器包括:主体,包括具有用于发光的发光元件的发光部分,用于将来自发光部分的光均匀分布的整体光分路器 分析目标芯片的每个测试区域,用于接收从每个测试区域反射的光以将其转换为电信号的光接收部分;以及根据从光接收部分获得的电信号来测量浓度的测量部分 ; 具有分析目标芯片并与主体组装的主支撑体; 以及组装在分析对象芯片和主支撑体之间的辅助支撑体,包括用于组装分析对象芯片的凹槽,并且与使用后要更换的主支撑体组装在一起。 因此,可以通过形成与条形芯片接触的部分来防止读取器被多余的尿污染,并且将吸湿材料设置在引导带状芯片的部分。
    • 5. 发明授权
    • Method of manufacturing hollow microneedle structures
    • 制造中空微针结构的方法
    • US08202434B2
    • 2012-06-19
    • US12621594
    • 2009-11-19
    • Dae Sik LeeHyun Woo SongMoon Youn JungSeon Hee Park
    • Dae Sik LeeHyun Woo SongMoon Youn JungSeon Hee Park
    • B44C1/22
    • A61M37/0015A61M2037/0023A61M2037/003A61M2037/0046A61M2037/0053B29C33/3842B29L2031/7544B29L2031/756B81B2201/055B81C1/00111
    • Provided is a method of manufacturing a hollow microneedle structure. The method includes forming an injection mold having a through hole, filling the injection mold with a photoresist formed of a viscous material, and extruding the photoresist from the injection mold through the through hole, solidifying the extruded photoresist to form a needle-type photoresist structure, forming a seed layer on the surface of the photoresist structure, forming a metal plated layer on the seed layer, inclining an end tip of the photoresist structure having the metal plated layer, and removing the photoresist from the metal plated layer to form a hollow. Thus, the hollow microneedle structure can be manufactured to have such diameter, length, hardness, and inclination angle as to minimize pain. The hollow microneedle structure can be combined with an apparatus for detecting a biomaterial or injecting cosmetic substances or medicines, and variously applied.
    • 提供一种制造中空微针结构的方法。 该方法包括形成具有通孔的注射模具,用由粘性材料形成的光致抗蚀剂填充注射模具,并且通过通孔从注射模具中挤出光致抗蚀剂,固化挤出的光致抗蚀剂以形成针型光致抗蚀剂结构 在光致抗蚀剂结构的表面上形成种子层,在种子层上形成金属镀层,使具有金属镀层的光致抗蚀剂结构的末端倾斜,从金属镀层除去光致抗蚀剂,形成中空 。 因此,可以制造中空微针结构以具有使疼痛最小化的直径,长度,硬度和倾斜角度。 中空微针结构可以与用于检测生物材料或注射化妆品物质或药物的装置组合,并进行各种应用。