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    • 1. 发明授权
    • Measuring device
    • 测量工具
    • US08323572B2
    • 2012-12-04
    • US13445186
    • 2012-04-12
    • Masaya NakataniLevent YobasJulien Reboud
    • Masaya NakataniLevent YobasJulien Reboud
    • G01N27/00
    • G01N27/44756B01L3/5027B01L2200/0694B01L2300/0816B01L2300/0867B01L2400/0472
    • A measuring device includes a first substrate; and a second substrate bonded on the first substrate. The second substrate has at least two inflow ports, at least two outflow ports, and an injection port. The two inflow ports, the two outflow ports, and the injection port penetrate the second substrate. The first substrate includes partition wall portions opposing to each other, and forming a first cavity between the partition wall portions, and forming at least two second cavities close against one of the partition wall portions. Each second cavity is provided adjacent to the first cavity. Through holes are provided in the respective partition wall portions to connect the first cavity and the second cavity to each other, and the through holes are adapted to capture an object to-be-tested introduced in the first cavity.
    • 测量装置包括第一基板; 以及接合在第一基板上的第二基板。 第二基板具有至少两个流入端口,至少两个流出端口和注入端口。 两个流入口,两个流出口和注入口穿透第二基底。 第一基板包括彼此相对的分隔壁部分,并且在分隔壁部分之间形成第一空腔,并且形成至少两个紧邻其中一个分隔壁部分的第二腔。 每个第二腔被设置成与第一腔相邻。 通孔设置在相应的隔壁部分中,以将第一腔和第二腔彼此连接,并且通孔适于捕获引入到第一腔中的被测物体。
    • 5. 发明申请
    • MICROFLUIDIC DEVICE FOR ANALYZING THE STATUS OF A PARTICLE
    • 用于分析颗粒状态的微流体装置
    • US20100015008A1
    • 2010-01-21
    • US12294205
    • 2007-03-23
    • Wee Liat OngLevent YobasKim Cheong TangAjay AgarwalNagarajan Ranganathan
    • Wee Liat OngLevent YobasKim Cheong TangAjay AgarwalNagarajan Ranganathan
    • G01N27/00G01N33/00B29B15/10
    • G01N33/48728B01L3/5027
    • The present invention provides a device for analyzing the status of a biological entity. The device comprises a base substrate having a recess defined therein by two opposing lateral walls and a base wall, a filler member having at least a portion thereof occupying the recess, and a channel defined in the portion of the filler member occupying the recess, wherein the channel comprises a first aperture and a second aperture, the first aperture being arranged on a first lateral wall of the filler member, and the second aperture being arranged on a second lateral wall of the filler member, said first lateral wall of the filler member being arranged in opposing relationship with the second lateral wall of the filler member, and at least a portion of the first and the second lateral walls of the filler member being at least substantially perpendicular to the opposing lateral walls defining the recess.
    • 本发明提供了一种用于分析生物实体的状态的装置。 该装置包括基底,其具有通过两个相对的侧壁和底壁限定的凹部,填充构件具有占据凹部的至少一部分,以及限定在占据凹部的填充构件的部分中的通道,其中 所述通道包括第一孔和第二孔,所述第一孔布置在所述填充构件的第一侧壁上,并且所述第二孔布置在所述填充构件的第二侧壁上,所述填充构件的所述第一侧壁 被布置成与填充构件的第二侧壁相对的关系,并且填充构件的第一和第二侧壁的至少一部分至少基本上垂直于限定凹部的相对侧壁。
    • 7. 发明申请
    • MEASURING DEVICE
    • 测量工具
    • US20120213671A1
    • 2012-08-23
    • US13445186
    • 2012-04-12
    • Masaya NAKATANILevent YobasJulien Reboud
    • Masaya NAKATANILevent YobasJulien Reboud
    • G01N27/22G01N35/08
    • G01N27/44756B01L3/5027B01L2200/0694B01L2300/0816B01L2300/0867B01L2400/0472
    • A measuring device includes a first substrate; and a second substrate bonded on the first substrate. The second substrate has at least two inflow ports, at least two outflow ports, and an injection port. The two inflow ports, the two outflow ports, and the injection port penetrate the second substrate. The first substrate includes partition wall portions opposing to each other, and forming a first cavity between the partition wall portions, and forming at least two second cavities close against one of the partition wall portions. Each second cavity is provided adjacent to the first cavity. Through holes are provided in the respective partition wall portions to connect the first cavity and the second cavity to each other, and the through holes are adapted to capture an object to-be-tested introduced in the first cavity.
    • 测量装置包括第一基板; 以及接合在第一基板上的第二基板。 第二基板具有至少两个流入端口,至少两个流出端口和注入端口。 两个流入口,两个流出口和注入口穿透第二基底。 第一基板包括彼此相对的分隔壁部分,并且在分隔壁部分之间形成第一空腔,并且形成至少两个紧邻其中一个分隔壁部分的第二腔。 每个第二腔被设置成与第一腔相邻。 通孔设置在相应的隔壁部分中,以将第一腔和第二腔彼此连接,并且通孔适于捕获引入到第一腔中的被测物体。