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    • 1. 发明授权
    • Method and apparatus for processing blood
    • 血液处理方法及装置
    • US4185629A
    • 1980-01-29
    • US843222
    • 1977-10-18
    • Herbert M. CullisJames H. DeVriesDavid A. LohrRodolfo R. RodriquezMichael B. Uffer
    • Herbert M. CullisJames H. DeVriesDavid A. LohrRodolfo R. RodriquezMichael B. Uffer
    • A61M1/02A61M1/36B04B5/04A61M5/00B04B11/00
    • A61M1/3693A61M1/3646A61M1/3696B04B5/0442A61M2205/3344A61M2205/3351A61M2205/3355
    • The blood processing method, and the apparatus for performing the steps of the method are utilized in separating whole blood into its components and include the steps of, or component parts of the apparatus for carrying out these steps of: pumping whole blood from a donor; passing the whole blood through a first chamber in a centrifuge device: centrifuging the whole blood in the centrifuge device to cause sedimentation of red blood cells from the whole blood in, and separation of platelet rich plasma from the whole blood in, the first chamber; pumping the separated platelet rich plasma from the first chamber and out of the centrifuge device where it is monitored and then back into the centrifuge device and through a second chamber in the centrifuge device where the platelet rich plasma is centrifuged to cause sedimentation of the platelets therein while passing the remaining blood fluid though the first chamber and back to the donor; recombining the plasma passed through the second chamber with the blood fluid passed through the first chamber for return to the donor; monitoring the platelet rich plasma outisde of the centrifuge device and sensing the presence of red blood cells in the platelet rich plasma; stopping and then reversing movement of the platelet rich plasma mixed with red blood cells when a mixture is sensed to return the mixture of platelet rich plasma mixed with red blood cells to the first chamber for separation of the blood components; adjusting the difference in volumetric flow rates of the pump for the whole blood pump and the pump for platelet rich plasma in response to the sensing of red blood cells; repeating the above steps until a desired volume of whole blood has been processed, and stopping operation of the centrifuge device and removing the second chamber with platelets therein from the apparatus.
    • 血液处理方法和用于执行该方法的步骤的装置用于将全血分离成其组分,并且包括用于执行以下步骤的装置的步骤或组成部分:从供体泵送全血; 将全血通过离心机装置中的第一腔室:离心机中的全血离心,使全血中的红细胞沉淀,并将富血小板血浆从全血中分离出来; 将分离的富含血小板的血浆从第一腔室抽出并离开被监测的离心机装置,然后回到离心机装置中并通过离心机装置中的第二腔室,其中富血小板血浆被离心以引起血小板的沉淀 同时使剩余的血液通过第一腔室并返回到供体; 将通过第二腔室的血浆与通过第一腔室的血液流体重新组合以返回供体; 监测离心机装置中富含血小板的血浆异常,并感测富血小板血浆中红细胞的存在; 当感测到混合物以使与红血细胞混合的富含血小板的血浆的混合物返回到第一腔室以分离血液成分时,停止然后反转与红细胞混合的富含血小板的血浆的运动, 响应于红细胞的感测,调整全血泵的泵的体积流量与富含血小板的血浆泵的差异; 重复上述步骤,直到已经处理了所需体积的全血,并且停止操作离心机装置并从该装置中除去具有血小板的第二腔室。
    • 2. 发明授权
    • Method and apparatus for separating whole blood into its components and
for automatically collecting one component
    • 用于将全血分离成其组分并自动收集一种组分的方法和装置
    • US4151844A
    • 1979-05-01
    • US850624
    • 1977-11-11
    • Herbert M. CullisAlmond, Anthony L.Michael B. UfferMirza A. KohjaRodolfo R. Rodgriguez
    • Herbert M. CullisAlmond, Anthony L.Michael B. UfferMirza A. KohjaRodolfo R. Rodgriguez
    • G01N33/48A61K35/14A61M1/02A61M1/36B04B5/04A61M5/00
    • B04B5/0442A61M1/3693A61M1/3696
    • The method, and the apparatus for carrying out the steps of the method, are utilized in the centrifugal liquid processing of whole blood wherein whole blood is withdrawn from a donor, passed through a fluid system and the blood is centrifuged to separate the same into at least three components. One component which is to be collected is withdrawn at a fixed rate of volumetric displacement while the other two components are withdrawn at variable rates of volumetric displacement. The other two components are recombined and returned to the donor. The withdrawal of the one component is optically monitored to determine whether or not either one of the other components is being mixed with the one component. When such a mixing is sensed, the rate of withdrawal of one of the other two components is increased while the rate of withdrawal of the other components is decreased thereby to ensure withdrawal of the desired one component, e.g., white blood cells with minimal contamination thereof with the other two components, e.g., red blood cells and plasma containing platelets. A given amount of the one component withdrawn is collected in a receptacle.
    • 该方法和用于实施该方法的装置用于全血的离心液体处理,其中全血从供体排出,通过流体系统,并将血液离心以将其分离成 至少三个组成部分。 要收集的一个组分以固定的体积位移速率取出,而另外两个组分以可变的体积位移速率取出。 另外两个组分被重组并返回给供体。 光学地监测一个组分的抽出,以确定其它组分中的任一个是否与一个组分混合。 当感测到这种混合时,其他两种组分之一的提取速率增加,而其它组分的抽出速率降低,从而确保所需的一种组分例如白细胞的最小污染 与其他两个组分,例如红细胞和血浆含血小板。 将给定量的一个组分撤回收集在容器中。
    • 3. 发明授权
    • Centrifugal liquid processing system
    • 离心液体处理系统
    • US4146172A
    • 1979-03-27
    • US843296
    • 1977-10-18
    • Herbert M. CullisJames H. DeVries
    • Herbert M. CullisJames H. DeVries
    • B04B5/00A61M1/02A61M1/36B04B5/04B04B5/02
    • B04B5/0428A61M1/3693A61M1/3696
    • An intervivos blood processing system for centrifugally separating red blood cell and platelet components from whole blood includes a separation chamber for separating red blood cell and white blood cell components, and a collection chamber for collecting platelet components. Each chamber is formed with closely-spaced sidewalls defining respective generally flat interior chambers therebetween and is mounted on a rotatably driven carriage substantially tilted from a parallel arrangement with respect to the carriage axis of rotation at a slight angle whereby the red blood cell component is caused to collect in shoulder regions of the separation chamber and the platelet component is caused to collect on the sidewalls of the collection chamber. The processing chambers are preferably each formed from sheets of flexible hemo-compatible plastic sealed about their periphery to define the chambers therebetween, and are received on the carriage between removable carrier plates having recesses which define the shape of the chambers under fluid pressure.
    • 用于从全血中离心分离红细胞和血小板成分的相互作用血液处理系统包括用于分离红细胞和白细胞成分的分离室和用于收集血小板成分的收集室。 每个室形成有紧密间隔的侧壁,其间限定相应的大致平坦的内部室,并且安装在可旋转地驱动的滑架上,该滑动架以相对于滑架的旋转轴线的平行布置基本上从稍微的角度倾斜,由此引起红细胞部件 收集在分离室的肩部区域,并且使血小板成分收集在收集室的侧壁上。 处理室优选地各自由柔性的可变血液相容的塑料片形成,围绕它们的周边密封以限定它们之间的腔室,并且被容纳在具有在流体压力下限定腔室的形状的凹部的可移除的载体板之间的滑架上。
    • 5. 发明授权
    • Method and system for fractionating a quantity of blood into the
components thereof
    • US4187979A
    • 1980-02-12
    • US944640
    • 1978-09-21
    • Herbert M. CullisEvelyn E. DorseyJames H. De Vries
    • Herbert M. CullisEvelyn E. DorseyJames H. De Vries
    • A61M1/36B04B5/04B04B15/12
    • B04B5/0442A61M1/3603A61M1/3692A61M1/3693A61M1/3696A61M2205/3306
    • The method, and system for carrying out the steps of the method, are utilized in taking whole blood from a supply of blood withdrawn from a donor or from a previously banked supply of whole blood in a container, centrifuging the blood in a centrifuge device to separate the whole blood into its components, and then collecting the components, namely red blood cells, white blood cells, platelets and plasma. The fractionation of the whole blood in the centrifuge device takes place in first, second and third separation chambers. The first chamber has a square shape and is positioned in the centrifuge device in a diamond position. Each corner of the first separation chamber has an opening. Whole blood is pumped into one side corner opening and red blood cells are withdrawn from the other side corner opening and returned to the container for recirculation through the first chamber. White blood cells, platelets and plasma are withdrawn from the upper corner opening and passed through the second chamber wherein white blood cells are separated by centrifugal force. The plasma and platelets are then withdrawn from the second chamber and passed through the third chamber wherein the platelets are separated from the plasma by centrifugal force. The plasma exiting from the third separation chamber is passed back into the bottom corner of the first chamber to cause a flow of plasma across the flow of whole blood and red blood cells to elute white blood cells and plateletstherefrom and to wash the red blood cells. By appropriate operation of electromechanically controlled clamps associated with tubing carrying the various blood components, plasma can be siphoned off into a plasma collection receptacle located outside the centrifuge device. After the red blood cells have been recirculated several times through the first separation chamber, the red blood cells then can be directed to a red blood cell collection receptacle by operation of other electromechanically controlled clamps.
    • 6. 发明授权
    • Centrifugal liquid processing apparatus with automatically positioned
collection port
    • 离心液体处理设备具有自动定位的收集口
    • US4120448A
    • 1978-10-17
    • US804697
    • 1977-06-08
    • Herbert M. Cullis
    • Herbert M. Cullis
    • B04B5/04B04B11/06
    • B04B5/0442B04B2005/045
    • An intervivos blood processor includes a processing chamber wherein whole blood is separated into its red blood cell, white blood cell and plasma components in the presence of a centrifugal force field. The white blood cell component is removed from the chamber by means of a tubing segment having a free floating end within the chamber and a density corresponding to the density of the white blood cell component. Since the free end of the tubing assumes the same position in the chamber as the white blood cell component the tubing collects only this component notwithstanding variations in the flow rate of the blood through the chamber and the centifugal force field applied to the chamber.
    • 间歇血液处理器包括处理室,其中在存在离心力场的情况下,全血分离成其红细胞,白细胞和血浆成分。 通过在腔室内具有自由浮动端的管段和与白细胞组分的密度相对应的密度将白细胞成分从腔室中除去。 由于管道的自由端与白细胞组件在腔室中呈现相同的位置,所以管道仅收集该部件,尽管血液通过腔室的流速和施加到腔室的离心力场的变化。
    • 9. 发明授权
    • Disposable centrifugal blood processing system
    • 一次性离心血液处理系统
    • US4636193A
    • 1987-01-13
    • US872822
    • 1986-06-11
    • Herbert M. Cullis
    • Herbert M. Cullis
    • A61M1/36B04B5/04B04B7/08
    • B04B5/0442A61M1/3693A61M1/3696B04B5/0428B04B2005/045B04B2005/0464
    • A continuous flow centrifugal processing system for separating whole blood into fractional components includes a centrifugal separator unit having a molded bowl-shaped outer shell dimensioned to fit within a rotatably-driven casing on an associated centrifuge apparatus. A bowl-shaped inner shell disposed within the outer shell forms therewith a thin separation channel radially spaced from the axis of rotation wherein fractions are separated from the whole blood under the influence of centrifugal force. A rotating seal carried on the processing chamber between ports in the chamber and the non-rotating portions of the system. The outer shell includes a relatively thin side wall portion which is inwardly biased toward a side wall portion on the inner shell when seated in the casing. A plurality of projections on the side walls limit inward deformation of the outer shell to maintain a very close concentric spacing between the shell members to facilitate rapid separation of blood flowing through the chamber. By reason of the shell members being molded, the processing chamber can be economically produced in large quantities for disposable one-time use.
    • 用于将全血分离成分数组分的连续流离心处理系统包括离心分离器单元,其具有模制的碗状外壳,其尺寸适于装配在相关联的离心机设备上的可旋转驱动的壳体内。 设置在外壳内的碗形内壳形成与旋转轴线径向间隔开的薄的分离通道,其中部分在离心力的作用下与全血分离。 旋转密封件承载在腔室中的端口与系统的非旋转部分之间的处理室中。 外壳包括相当薄的侧壁部,当坐在壳体中时,该侧壁部向内偏压到内壳上的侧壁部分。 侧壁上的多个突起限制外壳的向内变形,以保持壳体之间非常接近的同心间隔,以便于快速分离流过腔室的血液。 由于外壳构件被模制,处理室可以经济地大量生产用于一次性一次使用。