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    • 1. 发明授权
    • Separation apparatus and method
    • 分离装置及方法
    • US07918350B2
    • 2011-04-05
    • US12399545
    • 2009-03-06
    • Kyungyoon MinRichard I. BrownAlp AkonurJulie Moriarty
    • Kyungyoon MinRichard I. BrownAlp AkonurJulie Moriarty
    • B04B3/00B04B1/06B04B1/12B04B7/10B01D21/26B01D45/12
    • A61M1/3693A61M1/3696A61M1/38A61M2205/128B04B5/0442B04B2005/045
    • A separation apparatus and method are employed using a separation channel for rotation about an axis. Such channel includes radially spaced apart inner and outer side wall portions and an end wall portion. An inlet conveys fluid into the channel. A barrier is located in the channel intermediate of the inner and outer side wall portions. A first flow path communicates between upstream and downstream sides of the barrier. A collection region may be located downstream of the barrier for communication with the first flow path. An outer side wall section of the channel may be positioned radially outward of an upstream section thereof. The barrier may join the outer side wall portion along a substantial portion of an axial length of the channel. First and second exit flow paths may allow communication with the channel either upstream or downstream of the barrier or both.
    • 使用分离装置和方法来使用用于围绕轴线旋转的分离通道。 这种通道包括径向间隔开的内侧壁部分和外侧壁部分以及端壁部分。 入口将流体输送到通道中。 屏障位于内外侧壁部分的通道中间。 第一流动路径在屏障的上游侧和下游侧之间连通。 收集区域可以位于屏障的下游,用于与第一流动路径通信。 通道的外侧壁部分可以位于其上游部分的径向外侧。 屏障可以沿着通道的轴向长度的大部分连接外侧壁部分。 第一和第二出口流动路径可以允许在障碍物的上游或下游与两者的通道进行通信。
    • 2. 发明申请
    • SEPARATION APPARATUS AND METHOD
    • 分离装置和方法
    • US20090218277A1
    • 2009-09-03
    • US12399545
    • 2009-03-06
    • Kyungyoon MinRichard I. BrownAlp AkonurJulie Moriarty
    • Kyungyoon MinRichard I. BrownAlp AkonurJulie Moriarty
    • B01D17/038
    • A61M1/3693A61M1/3696A61M1/38A61M2205/128B04B5/0442B04B2005/045
    • A separation apparatus and method are employed using a separation channel for rotation about an axis. Such channel includes radially spaced apart inner and outer side wall portions and an end wall portion. An inlet conveys fluid into the channel. A barrier is located in the channel intermediate of the inner and outer side wall portions. A first flow path communicates between upstream and downstream sides of the barrier. A collection region may be located downstream of the barrier for communication with the first flow path. An outer side wall section of the channel may be positioned radially outward of an upstream section thereof. The barrier may join the outer side wall portion along a substantial portion of an axial length of the channel. First and second exit flow paths may allow communication with the channel either upstream or downstream of the barrier or both.
    • 使用分离装置和方法来使用用于围绕轴线旋转的分离通道。 这种通道包括径向间隔开的内侧壁部分和外侧壁部分以及端壁部分。 入口将流体输送到通道中。 屏障位于内外侧壁部分的通道中间。 第一流动路径在屏障的上游侧和下游侧之间连通。 收集区域可以位于屏障的下游,用于与第一流动路径通信。 通道的外侧壁部分可以位于其上游部分的径向外侧。 屏障可以沿着通道的轴向长度的大部分连接外侧壁部分。 第一和第二出口流动路径可以允许在障碍物的上游或下游与两者的通道进行通信。
    • 3. 发明授权
    • Separation apparatus and method
    • 分离装置及方法
    • US07297272B2
    • 2007-11-20
    • US10827603
    • 2004-04-19
    • Kyungyoon MinRichard I. BrownAlp Akonur
    • Kyungyoon MinRichard I. BrownAlp Akonur
    • B04B3/00B04B1/06B04B1/12B04B7/10B01D21/26B01D45/12
    • A61M1/3693A61M1/3696A61M1/38A61M2205/128B04B5/0442B04B2005/045
    • A separation apparatus and method are employed using a separation channel for rotation about an axis. Such channel includes radially spaced apart inner and outer side wall portions and an end wall portion. An inlet conveys fluid into the channel. A barrier is located in the channel intermediate of the inner and outer side wall portions. A first flow path communicates between upstream and downstream sides of the barrier. A collection region may be located downstream of the barrier for communication with the first flow path. An outer side wall section of the channel may be positioned radially outward of an upstream section thereof. The barrier may join the outer side wall portion along a substantial portion of an axial length of the channel. First and second exit flow paths may allow communication with the channel either upstream or downstream of the barrier or both.
    • 使用分离装置和方法来使用用于围绕轴线旋转的分离通道。 这种通道包括径向间隔开的内侧壁部分和外侧壁部分以及端壁部分。 入口将流体输送到通道中。 屏障位于内外侧壁部分的通道中间。 第一流动路径在屏障的上游侧和下游侧之间连通。 收集区域可以位于屏障的下游,用于与第一流动路径通信。 通道的外侧壁部分可以位于其上游部分的径向外侧。 屏障可以沿着通道的轴向长度的大部分连接外侧壁部分。 第一和第二出口流动路径可以允许在障碍物的上游或下游与两者的通道进行通信。
    • 4. 发明申请
    • Separation Apparatus and Method
    • 分离装置及方法
    • US20080087601A1
    • 2008-04-17
    • US11927033
    • 2007-10-29
    • Kyungyoon MinRichard BrownAlp Akonur
    • Kyungyoon MinRichard BrownAlp Akonur
    • B01D21/26
    • A61M1/3693A61M1/3696A61M1/38A61M2205/128B04B5/0442B04B2005/045
    • A separation apparatus and method are employed using a separation channel for rotation about an axis. Such channel includes radially spaced apart inner and outer side wall portions and an end wall portion. An inlet conveys fluid into the channel. A barrier is located in the channel intermediate of the inner and outer side wall portions. A first flow path communicates between upstream and downstream sides of the barrier. A collection region may be located downstream of the barrier for communication with the first flow path. An outer side wall section of the channel may be positioned radially outward of an upstream section thereof. The barrier may join the outer side wall portion along a substantial portion of an axial length of the channel. First and second exit flow paths may allow communication with the channel either upstream or downstream of the barrier or both.
    • 使用分离装置和方法来使用用于围绕轴线旋转的分离通道。 这种通道包括径向间隔开的内侧壁部分和外侧壁部分以及端壁部分。 入口将流体输送到通道中。 屏障位于内外侧壁部分的通道中间。 第一流动路径在屏障的上游侧和下游侧之间连通。 收集区域可以位于屏障的下游,用于与第一流动路径通信。 通道的外侧壁部分可以位于其上游部分的径向外侧。 屏障可沿着通道的轴向长度的大部分连接外侧壁部分。 第一和第二出口流动路径可以允许在障碍物的上游或下游与两者的通道进行通信。
    • 8. 发明授权
    • Simplified peritoneal equilibration test for peritoneal dialysis
    • 腹膜透析简化腹膜平衡试验
    • US08180574B2
    • 2012-05-15
    • US12498847
    • 2009-07-07
    • Ying-Cheng LoAlp AkonurSarah Stobo Prichard
    • Ying-Cheng LoAlp AkonurSarah Stobo Prichard
    • G01N33/48G06F19/00
    • A61M1/28A61M1/1619
    • A simplified peritoneal equilibration test (S-PET) is disclosed. Instead of a lengthy peritoneal equilibration test (PET), the simplified procedure requires no blood sample and may use data from as few as two or three samples to classify a peritoneal membrane of a user. Typically, a peritoneal membrane or peritoneum of a dialysis patient, or other person, is classed as a high transport membrane, high-average transport membrane, a low-average transport membrane or a low transporter membrane. The S-PET may be performed at home by a user without the need to submit a blood sample. Kits for analyzing the samples may be furnished for home use. The kits may use disposable strips, microfluidic analyzers or chemical reagents, or may alternatively include reusable analysis equipment, such as optical or conductivity analysis equipment.
    • 公开了一种简化的腹膜平衡试验(S-PET)。 代替长时间的腹膜平衡试验(PET),简化的程序不需要血液样品,并且可以使用少至两个或三个样品的数据来分类用户的腹膜。 通常,透析患者或其他人的腹膜或腹膜被分类为高运输膜,高平均运输膜,低平均运输膜或低转运膜。 S-PET可以由用户在家进行,而不需要提交血样。 用于分析样品的试剂盒可供家庭使用。 试剂盒可以使用一次性条,微流控分析仪或化学试剂,或者可以替代地包括可重复使用的分析设备,例如光学或电导率分析设备。