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    • 5. 发明授权
    • Micro fluidic system and a method of attaching a membrane to a tube
    • 微流体系统和将膜附接到管的方法
    • US08449772B2
    • 2013-05-28
    • US12064483
    • 2006-08-22
    • Holger DiracPer Brandt RasmussenArne Briest
    • Holger DiracPer Brandt RasmussenArne Briest
    • B01D63/00
    • A61M1/1678A61B5/14532A61B10/0045Y10T29/49401
    • A micro fluidic system comprising at least one tube (1), a membrane (3) and at least one fitting member (4). The fitting member (4) is positioned around the membrane (3) and an end part (2) of the tube(s) (1), thereby fitting the membrane (3) to the end part(s) (2). The fitting member(s) (4) is/are made from a shrinkable material, and it/they is/are fitted tightly around the membrane (3) end part(s) (2). This is obtained by causing the shrinkable material to shrink, e.g. by heating the material, while the fitting member (4) is positioned around the membrane (3) and the end part(s) (2). It is an advantage that the fitting member (4) is made from a shrinkable material because this provides the possibility of fitting the membrane (3) tightly to the end part(s) (2) in an easy and cost effective manner. The micro fluidic system is very suitable for use in a probe, such as a dialysis probe. Also claimed is a method of manufacturing the micro fluidic system.
    • 一种微流体系统,包括至少一个管(1),膜(3)和至少一个配件(4)。 装配构件(4)围绕膜(3)和管(1)的端部(2)定位,从而将膜(3)装配到端部(2)。 装配构件(4)由可收缩材料制成,并且/它们紧密地配合在膜(3)端部(2)周围。 这是通过使收缩材料收缩而获得的。 通过加热材料,同时装配构件(4)围绕膜(3)和端部(2)定位。 这是一种优点,即装配构件(4)由可收缩材料制成,因为这提供了以容易和成本有效的方式将膜(3)紧密地装配到端部(2)的可能性。 微流体系统非常适合用于探针,例如透析探针。 还要求保护的是制造微流体系统的方法。
    • 6. 发明申请
    • MICRO FLUIDIC SYSTEM AND A METHOD OF ATTACHING A MEMBRANE TO A TUBE
    • 微流体系统和将膜连接到管的方法
    • US20090218272A1
    • 2009-09-03
    • US12064483
    • 2006-08-22
    • Holger DiracPer Brandt RasmussenArne Briest
    • Holger DiracPer Brandt RasmussenArne Briest
    • B01D63/00B23P17/00
    • A61M1/1678A61B5/14532A61B10/0045Y10T29/49401
    • A micro fluidic system comprising at least one tube (1), a membrane (3) and at least one fitting member (4). The fitting member (4) is positioned around the membrane (3) and an end part (2) of the tube(s) (1), thereby fitting the membrane (3) to the end part(s) (2). The fitting member(s) (4) is/are made from a shrinkable material, and it/they is/are fitted tightly around the membrane (3) end part(s) (2). This is obtained by causing the shrinkable material to shrink, e.g. by heating the material, while the fitting member (4) is positioned around the membrane (3) and the end part(s) (2). It is an advantage that the fitting member (4) is made from a shrinkable material because this provides the possibility of fitting the membrane (3) tightly to the end parts) (2) in an easy and cost effective manner. The micro fluidic system is very suitable for use in a probe, such as a dialysis probe. Also claimed is a method of manufacturing the micro fluidic system.
    • 一种微流体系统,包括至少一个管(1),膜(3)和至少一个配件(4)。 装配构件(4)围绕膜(3)和管(1)的端部(2)定位,从而将膜(3)装配到端部(2)。 装配构件(4)由可收缩材料制成,并且/它们紧密地配合在膜(3)端部(2)周围。 这是通过使收缩材料收缩而获得的。 通过加热材料,同时装配构件(4)围绕膜(3)和端部(2)定位。 这是因为这样可以以容易且成本有效的方式将膜(3)紧密地装配到端部部件(2))的可能性,因此装配构件(4)由可收缩材料制成是有利的。 微流体系统非常适合用于探针,例如透析探针。 还要求保护的是制造微流体系统的方法。
    • 8. 发明申请
    • MICRO FLUID DEVICE WITH A MULTI LUMEN HOSE
    • 具有多个软管的微流体装置
    • US20100218834A1
    • 2010-09-02
    • US12524896
    • 2007-01-30
    • Per Brandt RasmussenPeter Gravesen
    • Per Brandt RasmussenPeter Gravesen
    • F16L3/01
    • B01L3/502715B01J2219/0081B01L3/565B01L2200/027B01L2200/0689B01L2300/0816Y10T137/8593
    • The invention provides a micro fluid device comprising a substrate with a channel forming a receiving cavity, an outer chamber, and an inner chamber, the device further comprising a multi lumen hose with a free end portion which is fixed in the receiving cavity. The multi lumen hose forming a first conduit and at least one second conduit located radially offset from the first conduit, and the outer chamber is in fluid communication with at least one second conduit, and the inner chamber is in fluid communication with the first conduit. The chambers are separated by an inner sealing member located between the substrate and the hose. To simplify the manufacturing of the device, the channel is formed by a groove in an upper surface of a body of the substrate, which groove closed by an essentially plane cover which is sealed to the upper surface.
    • 本发明提供了一种微流体装置,其包括具有形成容纳空腔的通道的衬底,外部腔室和内部腔室,该装置还包括多腔软管,其具有固定在容纳腔中的自由端部分。 所述多腔软管形成第一导管和位于径向偏离所述第一导管的至少一个第二导管,并且所述外室与至少一个第二导管流体连通,并且所述内室与所述第一导管流体连通。 这些室由位于基底和软管之间的内部密封构件分开。 为了简化装置的制造,通道由衬底的主体的上表面中的凹槽形成,该凹槽由基本上平面的盖封闭,该盖子被密封到上表面。
    • 9. 发明授权
    • Capillary carrier with leak supervision
    • 毛细管载体带有泄漏监控
    • US07520295B2
    • 2009-04-21
    • US10543676
    • 2004-01-24
    • Per Brandt RasmussenHeiko Arndt
    • Per Brandt RasmussenHeiko Arndt
    • F16L9/18F16L55/16
    • A61M5/16877A61M5/141Y10T137/5762
    • In a capillary carrier with an inlet and an outlet, a channel is formed and extends between the inlet and the outlet. At least one capillary tube is arranged within the channel, and sealing elements, by which the capillary tube is sealingly fixed to the channel, are arranged at least near an inlet portion and an outlet portion of the capillary tube. An area is formed limited by a part of the channel, the sealing elements and the exterior of the capillary tube, which is in connection with the exterior of the carrier through a fluid communication pad, whereby a possible fluid leak across the sealing elements will be led to this area, and from there to the exterior of the carrier.
    • 在具有入口和出口的毛细管载体中,形成通道并在入口和出口之间延伸。 至少一个毛细管布置在通道内,并且毛细管密封地固定到通道的密封元件至少布置在毛细管的入口部分和出口部分附近。 一个区域由通道的一部分,密封元件和毛细管的外部限制,毛细管的外部通过流体连通垫与载体的外部连接,从而跨过密封元件的可能的流体泄漏将是 导致这个地区,从那里到承运人的外部。