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    • 5. 发明授权
    • Centrifugation system with red blood cell barrier
    • 具有红细胞屏障的离心系统
    • US09533089B2
    • 2017-01-03
    • US14008651
    • 2012-03-28
    • Kyungyoon MinRichard I. BrownJohn T. FoleyBrian C. Case
    • Kyungyoon MinRichard I. BrownJohn T. FoleyBrian C. Case
    • A61M1/36B04B5/04
    • A61M1/3693A61M1/3696A61M2205/128A61M2205/3331A61M2205/3337B04B5/0442B04B2005/045C12N5/0634C12N5/0641C12N5/0644
    • Centrifugation systems and methods are provided for separating blood into its constituent parts. Inner and outer walls of a centrifuge each include a projection which extends toward the other wall. A separation chamber is received in the centrifuge between the walls, with the chamber including an inlet port for flowing blood into the chamber, a plasma outlet port for flowing plasma out of the chamber, and a red cell outlet port for flowing red blood cells out of the chamber. With the chamber received in the centrifuge between the walls, the first projection extends into the path of separated blood components flowing toward the plasma outlet port and prevents cellular blood components from flowing into the plasma outlet port. The second projection extends into the path of separated blood components flowing toward the red cell outlet port and prevents plasma from flowing into the red cell outlet port.
    • 提供离心系统和方法用于将血液分离成其组成部分。 离心机的内壁和外壁各自包括朝向另一壁延伸的突起。 分离室被容纳在离心机之间的壁之间,其中腔室包括用于使血液进入腔室的入口端口,用于使等离子体流出腔室的等离子体出口和用于使红细胞流出的红细胞出口 的房间。 随着室中的离心机容纳在壁之间,第一突出部延伸到分离的血液成分流向等离子体出口端口的路径中,并防止细胞血液成分流入等离子体出口。 第二突出部延伸到朝向红细胞出口流动的分离的血液成分的路径中,并防止血浆流入红细胞出口。
    • 10. 发明申请
    • PROCESSING CHAMBERS FOR USE WITH APHERESIS DEVICES
    • 加工中心与APHERESIS设备一起使用
    • US20090211962A1
    • 2009-08-27
    • US12392952
    • 2009-02-25
    • Kyungyoon MinRichard I. Brown
    • Kyungyoon MinRichard I. Brown
    • B01D33/74
    • A61M1/3693A61M1/0218A61M1/0231A61M1/3652A61M1/3696A61M1/38A61M2205/128
    • Processing chamber for use with apheresis devices are described herein. An example centrifugal processing chamber includes first and second lateral walls spaced at a distance from one another. Additionally, the example centrifugal processing chamber includes a channel at least partially defined by the first and second lateral walls. Further, the centrifugal processing chamber includes an inlet fluidly coupled to the channel to convey blood to the channel. Further still, the centrifugal processing chamber includes a first outlet fluidly coupled to the channel having a first opening adjacent the first lateral wall. The first outlet is to convey separated plasma from the channel. Additionally, the centrifugal processing chamber includes a second fluid outlet fluidly coupled to the channel having a second opening adjacent the second lateral wall. The second outlet is to convey separated red blood cells from the channel. Additionally, the processing chamber includes a barrier formed along the second lateral wall to intercept platelets. The first and second lateral walls are spaced such that the distance between the first and second lateral walls enables at least one therapeutic unit of single dose platelets to pool adjacent the barrier without spilling into the first outlet or the second outlet.
    • 本文描述了与分离装置一起使用的处理室。 一个示例性离心处理室包括彼此间隔一定距离的第一和第二侧壁。 另外,示例性离心处理室包括至少部分地由第一和第二侧壁限定的通道。 此外,离心处理室包括流体耦合到通道以将血液输送到通道的入口。 此外,离心处理室包括流体耦合到通道的第一出口,其具有与第一侧壁相邻的第一开口。 第一个出口是从通道传送分离的等离子体。 此外,离心处理室包括流体地联接到通道的第二流体出口,其具有邻近第二侧壁的第二开口。 第二个出口是从通道传送分离的红细胞。 另外,处理室包括沿着第二侧壁形成的屏障,以拦截血小板。 第一和第二侧壁间隔开,使得第一和第二侧壁之间的距离使得单剂量血小板的至少一个治疗单元能够在不渗入第一出口或第二出口的情况下相邻隔离池。