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    • 2. 发明申请
    • BLOOD PROCESSING APPARATUS WITH CONTROLLED CELL CAPTURE CHAMBER AND METHOD BACKGROUND OF THE INVENTION
    • 具有受控细胞室的血液加工装置和方法发明背景
    • US20070102374A1
    • 2007-05-10
    • US11163969
    • 2005-11-04
    • Jeremy Kolenbrander
    • Jeremy Kolenbrander
    • C02F1/38
    • A61M1/3693A61M1/3692A61M1/3696B04B5/0442B04B2005/0471
    • A centrifuge for separating blood components, and methods for controlling the centrifuge. The apparatus has a fluid separation chamber having a first frustro-conical segment and a second frustro-conical segment. The second segment has a taper such that particles are subjected to substantially equal and opposite centripetal and fluid flow forces. A camera observes fluid flow, and a controller controls the flow. White blood cells are selectively captured within the second segment and are periodically flushed out of the fluid separation chamber. The camera is used to determine the quantity of particles captured. A limited quantity of high density particles, such as red blood cells, may be captured within the first segment before capturing relatively low density particles, such as white blood cells, within the second segment.
    • 用于分离血液成分的离心机和用于控制离心机的方法。 该装置具有流体分离室,其具有第一截锥形段和第二截头圆锥段。 第二段具有锥形,使得颗粒经受基本相等且相对的向心和流体流动力。 摄像机观察流体流动,控制器控制流量。 白细胞被选择性地捕获在第二段内并被周期性地从流体分离室中冲出。 相机用于确定捕获的颗粒数量。 在第二段内捕获相对低密度的颗粒(例如白细胞)之前,可以在第一区段内捕获有限数量的高密度颗粒,例如红细胞。
    • 4. 发明授权
    • Method for processing a blood product with a bag set having a multi-way connector
    • 用具有多路连接器的袋装处理血液制品的方法
    • US07097774B2
    • 2006-08-29
    • US10627029
    • 2003-07-24
    • Niclas HögbergEmanuel HällgrenPeter Pihlstedt
    • Niclas HögbergEmanuel HällgrenPeter Pihlstedt
    • B01D21/26B04B7/12
    • A61M1/3693A61M1/0209A61M1/3696B04B5/0428B04B2013/006
    • The claimed invention refers to a centrifuge intended for processing blood and blood components and with its function based on the effective utilisation of ring type blood processing bags with associated secondary bags and other accessories. The most outstanding feature of the centrifuge, in accordance with the claimed invention, is that its rotor, at the same intended height of the ring bag (22) inner periphery, shows at least three supports (9–11) arranged along this periphery and intended to locate the ring bag's inner strengthened periphery edge on guide holes at the same time as the centrifuge and its rotor is equipped with a joint rotating inner lid (6) which includes a clamp function (7) that clamps ring bag (22) securely along and between supports (9–11). Furthermore, in the invention these supports (9–11) have, on the one hand, built-in valve functions for communication between the ring bag and the respective secondary bags can be actively controlled and, on the other hand, sterile welding functions for communication between ring bag (22) and the respective secondary bags when interruption and blocking is required.
    • 所要求保护的发明是指旨在用于处理血液和血液成分的离心机,并且其功能基于有效利用具有相关次级袋和其它附件的环型血液处理袋。 根据要求保护的发明,离心机的最突出的特征是其在环袋(22)内周边的相同预期高度处的转子显示出沿着这个周边布置的至少三个支撑件(9-11) 旨在将离心机和其转子配备有接合旋转内盖(6)的同时定位在引导孔上的环袋的内部加强的周边边缘,其包括夹紧功能(7),该夹紧功能(7)牢固地夹紧环形袋(22) 在支撑(9-11)之间和之间。 此外,在本发明中,这些支撑件(9-11)一方面可以主动地控制环袋和相应的次级袋之间的连通的内置阀功能,另一方面,用于 当需要中断和阻塞时,环袋(22)和各个次级袋之间的通信。
    • 5. 发明授权
    • Method for fluid separation devices using a fluid pressure balanced configuration
    • 使用流体压力平衡配置的流体分离装置的方法
    • US07094197B2
    • 2006-08-22
    • US10709079
    • 2004-04-12
    • Dennis J HlavinkaThomas J. Felt
    • Dennis J HlavinkaThomas J. Felt
    • B01D21/26
    • B04B5/0442A61M1/0231A61M1/3693A61M1/3696A61M1/38B04B5/0428B04B7/08B04B9/08B04B2005/045B04B2005/0464B04B2009/143
    • A method for separating a composite fluid into components in a centrifugal fluid separation system. The system includes a rotor that has a composite fluid containment area, an inlet channel, a peripheral separation channel, outlet channels and separated component collection areas, which together form a processing area. The separation channel may be semi-spiraled. The inlet channel may connect to the center of the separation channel and an outlet channel may connect to each end of the separation channel. The outlet channels have different heights. The ends of the separation channels may have different heights. The separation channels may have extensions. The rotor may have multiple processing areas. The collection areas may be pockets slanted radially outwardly and downwardly. A motor may produce a rotating magnetic field, which co-acts with a magnetically reactive material in the rotor. A disposable bag and tubing system may be used in a processing area of the rotor.
    • 一种将复合流体分离成离心流体分离系统中的组分的方法。 该系统包括具有复合流体容纳区域,入口通道,周边分离通道,出口通道和分离的部件收集区域的转子,它们一起形成处理区域。 分离通道可以是半螺旋的。 入口通道可以连接到分离通道的中心,并且出口通道可以连接到分离通道的每一端。 出口通道具有不同的高度。 分离通道的端部可以具有不同的高度。 分离通道可以具有扩展。 转子可以具有多个处理区域。 收集区域可以是径向向外和向下倾斜的袋。 电动机可以产生与转子中的磁反应性材料共同作用的旋转磁场。 可以在转子的处理区域中使用一次性袋和管道系统。