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    • 1. 发明专利
    • Centrifugal separator
    • 离心分离器
    • JP2007167855A
    • 2007-07-05
    • JP2007057440
    • 2007-03-07
    • Gambro Incガンブロ、 インコーポレイテッド
    • HLAVINKA DENNISFELT THOMAS J
    • B04B5/04G01N33/48A61M1/02A61M1/36G01N1/10G01N1/28
    • A61M1/3693A61M1/3696A61M2202/0427B04B5/0442B04B2005/045B04B2005/0471
    • PROBLEM TO BE SOLVED: To provide a centrifugal separator, which can substantially eliminate one or more of restrictions and disadvantages involved in the conventional related technique, and to provide a centrifugal separation method. SOLUTION: A first outlet port 56, a second outlet port 58, a third outlet port 60, and an interfacial control outlet port 61 are positioned at various radial positions for removing materials of which the density is varied on a rotor 12. The second outlet port 58 is disposed more distant from a rotating axial line A-A than the first outlet port 56, the third outlet port 60, and the interfacial control outlet port 61. A component H having higher density such as blood red cells is separated from a separation vessel 28. The third outlet port 60 is disposed near the rotating axial line A-A as compared with the first outlet port 56, the second outlet port 58, and the interfacial control unit 61, and the minimum-density component separated within the separation vessel 28, for example, plasma, is removed. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种离心分离器,其基本上可以消除常规相关技术中涉及的一个或多个限制和缺点,并提供离心分离方法。 解决方案:第一出口端口56,第二出口端口58,第三出口端口60和界面控制出口端口61定位在各种径向位置,用于移除在转子12上密度变化的材料。 第二出口58布置成比第一出口56,第三出口60和界面控制出口61更远离旋转轴线AA。具有较高密度的组分H如血红细胞从 分离容器28.与第一出口56,第二出口58和界面控制单元61相比,第三出口60设置在旋转轴线AA附近,并且在分离期间分离的最小密度分量 容器28例如等离子体被去除。 版权所有(C)2007,JPO&INPIT
    • 3. 发明专利
    • Method for separating fluid component
    • 分离流体组分的方法
    • JP2007209768A
    • 2007-08-23
    • JP2007057445
    • 2007-03-07
    • Gambro Incガンブロ、 インコーポレイテッド
    • HLAVINKA DENNISFELT THOMAS J
    • A61M1/02G01N33/48A61M1/36B04B5/04G01N1/10G01N1/28
    • A61M1/3693A61M1/3696A61M2202/0427B04B5/0442B04B2005/045B04B2005/0471
    • PROBLEM TO BE SOLVED: To provide a method for separating fluid components substantially removing one or more of restrictions and faults of conventional related arts. SOLUTION: A method is provided for reducing the aggregation of platelets of blood components under separation. This method includes that the blood components are introduced in a rotating separation vessel to layer the blood components in the separation vessel and form a radial external layer containing red blood cells, an intermediate layer containing at least the platelets, and a radial internal layer containing low-density substances. The radial external layer containing the red blood cells is retained between the intermediate layer and a radial external wall and/or the radial internal layer containing the low-density substances is retained between the intermediate layer and a radial internal wall of the separation vessel for substantially limiting contact between the platelets and at least one of the radial internal wall and the external wall of the separation vessel. This constitution can reduce the aggregation of the platelets. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于分离基本上去除传统相关技术的一个或多个限制和故障的流体组分的方法。 解决方案:提供一种减少分离时血液成分血小板聚集的方法。 该方法包括将血液成分引入旋转分离容器中以分层分离容器中的血液成分,形成含有红细胞的径向外层,至少含有血小板的中间层,以及含有低血压的径向内层 密度物质。 含有红细胞的径向外层保留在中间层和径向外壁之间,和/或包含低密度物质的径向内层保留在分离容器的中间层和径向内壁之间,基本上 限制血小板与分离容器的径向内壁和外壁中的至少一个之间的接触。 这种构成可以减少血小板聚集。 版权所有(C)2007,JPO&INPIT
    • 4. 发明专利
    • Technique for priming and recirculating fluid through dialysis machine
    • 通过DIALYSIS机器预处理和再循环流体的技术
    • JP2007105489A
    • 2007-04-26
    • JP2006333948
    • 2006-12-12
    • Gambro Incガンブロ、 インコーポレイテッド
    • BRUGGER JAMESHENDRICKSON DAN LEEHOVLAND ROY SVEN
    • A61M1/14A61M1/36A61M39/10
    • A61M1/3643A61M1/3644A61M1/3646A61M1/3647A61M39/10A61M2205/123
    • PROBLEM TO BE SOLVED: To provide a method for automatically priming and recirculating sterile fluid through an extracorporeal circuit of a dialysis machine having a blood pump, a dialyzer, and a blood tubing set including an arterial line for drawing blood from a patient and a venous line for returning the blood to the patient.
      SOLUTION: The dialysis machine selectively opens and closes clamps 40 and 72 on the arterial and venous lines 36 and 77 and further operates a waste valve leading to a waste drain 86. A connector attaches both the arterial and venous lines 33 and 66 to the waste valve during a priming procedure. The dialysis machine automatically operates the blood pump 34, the clamps 40 and 72 and the waste valve to flush the dialyzer 54 and the blood tubing set with the sterile fluid, direct the used fluid down the waste drain 86, and recirculate additional sterile fluid through the extracorporeal circuit.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于通过具有血泵,透析器和血液管组的透析机的体外循环自动引发和再循环无菌液体的方法,所述血液泵,透析器和血管组包括用于从患者抽取血液的动脉线 以及用于将血液返回到患者的静脉线。 解决方案:透析机选择性地打开和关闭动脉和静脉线36和77上的夹具40和72,并进一步操作导致废液排放口86的废气阀。连接器将动脉和静脉管路33和66两者相连 在启动过程中到废气阀。 透析机自动操作血液泵34,夹具40和72以及废气阀以冲洗透析器54和用无菌流体组合的血液管路,将废液排出废液排放口86,并将另外的无菌流体再循环通过 体外电路。 版权所有(C)2007,JPO&INPIT