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    • 34. 发明申请
    • SYSTEMS AND METHODS FOR PERITONEAL DIALYSIS HAVING POINT OF USE DIALYSIS FLUID PREPARATION INCLUDING TESTING THEREOF
    • 具有使用透析流体制剂的腹膜透析的系统和方法,包括对其进行测试
    • WO2017193065A1
    • 2017-11-09
    • PCT/US2017/031396
    • 2017-05-05
    • GAMBRO LUNDIA ABWELLINGS, Anders
    • WELLINGS, AndersWIESLANDER, AndersJANSSON, Olof
    • A61M1/16A61M1/28
    • A peritoneal dialysis system includes a disposable set, source(s) of concentrate(s), a water purifier, a sensor, and a control unit. The disposable set includes a water port, an inlet port, a drain port, a water line in fluid communication with the water port, a drain line in fluid communication with the drain port, and a container to hold a dialysis fluid prepared by mixing water and the concentrate(s). The source(s) of concentrate(s) are in fluid communication with the inlet port, and the water purifier is configured to purify water and feed the water towards the water port so the sensor can detect a fluid property. The control unit is configured to deliver dialysis fluid mixed in the disposable set to the drain line and water purified by the water purifier along the water line, into the disposable set, and out the drain line to push dialysis fluid to the sensor.
    • 腹膜透析系统包括一次性装置,浓缩物的来源,净水器,传感器和控制单元。 一次性装置包括水端口,入口端口,排水端口,与水端口流体连通的水管线,与排水端口流体连通的排水管线以及容纳透析流体的容器,所述透析流体通过混合水 和浓缩物。 一种或多种浓缩物源与入口端口流体连通,并且净水器被配置为净化水并将水供给到水端口,从而传感器可以检测流体性质。 控制单元被配置为将在一次性装置中混合的透析流体输送到排水管线,并且由水净化器沿着水管线净化的水进入一次性装置,并且排出排水管线以将透析流体推送到传感器。 p>
    • 36. 发明申请
    • SYSTEM AND METHOD FOR FILTRATION OF FLUIDS
    • 用于过滤流体的系统和方法
    • WO2017098001A1
    • 2017-06-15
    • PCT/EP2016/080487
    • 2016-12-09
    • GAMBRO LUNDIA AB
    • JANSSON, OlofERICSON, Björn
    • B01D63/04B01D61/28B01D61/30B01D61/58
    • B01D63/04A61M1/16A61M1/1621A61M1/34A61M1/3403A61M1/3437B01D61/28B01D61/30B01D61/58B01D2313/21
    • A filter device (10) for filtration of fluids, in particular for the dialysis of blood. The filter device (10) comprises a housing (12) having a first end (14) and a second end (16) and defining a fluid chamber (18) extending between the first end (14) and the second end (16). The filter device (10) further comprises a first lid (20) provided at the first end (14) of the housing(12) and comprising a first fluid port (22), a first compartment (24), a second compartment (26) and a first internal separating wall (28) separating the first compartment (24) from the second compartment (26).The filter device (10) further comprises a second lid (30) provided at the second end (16) of the housing (12) and comprising a second fluid port (32), a third fluid port (33), a third compartment (34), a fourth compartment (36) and a second internal separating wall (38) separating the third compartment (34) from the fourth compartment (36). The filter device (10) further comprises a plurality of hollow fibers (40) arranged within the housing (12), wherein each of the plurality of hollow fibers (40) comprises a semi-permeable membrane and defines a fluid channel extending longitudinally through an interior of the respective hollow fiber (40).The filter device (10) further comprises a first sealing means (42) which separates the fluid chamber (18) from the first and the second compartment (24, 26), the first sealing means (42) having a first longitudinal end facing away from the second lid (30).The filter device (10) further comprises a second sealing means (46) which separates the fluid chamber (18) from the third and the fourth compartment (34, 36),the second sealing means (46) having a second longitudinal end facing away from the first lid (20). Still further, the filter device (10) comprises a fourth fluid port (50) and a fifth fluid port (52) both provided at the fluid chamber (18) and located between the first longitudinal end of the first sealing means (42) and the second longitudinal end of the second sealing means (46).
    • 用于过滤流体的过滤装置(10),特别是用于血液透析的过滤装置(10)。 过滤装置(10)包括具有第一端(14)和第二端(16)并限定在第一端(14)和第二端(16)之间延伸的流体腔室(18)的壳体(12)。 过滤装置10还包括设置在壳体12的第一端部14并包括第一流体端口22,第一隔室24,第二隔室26的第一盖20, )和将所述第一隔室(24)与所述第二隔室(26)隔开的第一内部分隔壁(28)。所述过滤装置(10)还包括设置在所述壳体的第二端部(16) (32),第三流体端口(33),第三隔室(34),第四隔室(36)和第二内部隔离壁(38),所述第三隔室(34)与所述第三隔室(34) 从第四隔室(36)排出。 过滤装置(10)还包括布置在壳体(12)内的多根中空纤维(40),其中多根中空纤维(40)中的每一根包括半渗透膜并且限定纵向延伸穿过 (40)的内部。过滤装置(10)还包括将流体腔室(18)与第一和第二隔室(24,26)分开的第一密封装置(42),第一密封装置 (10)还包括第二密封装置(46),该第二密封装置将流体室(18)与第三和第四隔室(34)分隔开, ,第二密封装置(46)具有远离第一盖子(20)的第二纵向端部。 此外,过滤装置(10)包括均设置在流体室(18)处且位于第一密封装置(42)的第一纵向端部与第二密封装置(42)之间的第四流体端口(50)和第五流体端口 第二密封装置(46)的第二纵向端。
    • 40. 发明申请
    • A SYSTEM AND METHOD FOR PRODUCING FLUID FOR PERITONEAL DIALYSIS
    • WO2021156429A1
    • 2021-08-12
    • PCT/EP2021/052784
    • 2021-02-05
    • GAMBRO LUNDIA AB
    • VARTIA, ChristianLINDGREN, HenrikBORGQVIST, Per-OlofJANSSON, Olof
    • A61M1/16A61M1/28
    • A system (1) for producing fluid for peritoneal dialysis, PD, the system (1) comprising: a fluid path (2) including two or more PD concentrate connectors (3a, 3b, 3c) each connector configured to be connected to a source of PD concentrate fluid (4a, 4b, 4c), and an inlet connector (5a, 23a) configured to be connected to a fluid line (5, 11) arranged for transportation of effluent fluid from a patient; a forward osmosis- (FO-) unit (6) including a draw side (6a) and a feed side (6b) separated by a FO-membrane (6c), the FO-unit (6) fluidly connected to the fluid path (2), wherein the FO-unit (6) is configured to receive one or more PD concentrate fluids (4a, 4b) at the draw side (6a) and to receive the effluent at the feed side (6b), wherein water is transported from the effluent to the one or more PD concentrate fluids through the FO-membrane (6c) via an osmotic pressure gradient between the draw side (6a) and the feed side (6b), thereby diluting the one or more PD concentrate fluids into a diluted PD concentrate fluid; a concentration sensor (8) configured to sense the concentration of the diluted PD concentrate fluid or a weigh scale (72) to sense the weight of the diluted PD concentrate fluid; and a control arrangement (10) configured to control a flow rate of effluent fluid into the feed side (6b), control a flow rate of the one or more PD concentrate fluids (4a, 4b) into the draw side (6a) based on (i) the sensed concentration by the concentration sensor (8) or (ii) the sensed weight by the weigh scale (72) to yield the diluted PD concentrate fluid, and control a flow rate of a second or third concentrate (4c) into the diluted PD concentrate fluid to form a final PD fluid.