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    • 1. 发明授权
    • System and method for performing microfluidic manipulation
    • 用于执行微流体操作的系统和方法
    • US08377277B2
    • 2013-02-19
    • US12255962
    • 2008-10-22
    • Jun XieWei-Cheng TianShashi ThutupalliLi ZhuAnthony John MurrayErin Jean Finehout
    • Jun XieWei-Cheng TianShashi ThutupalliLi ZhuAnthony John MurrayErin Jean Finehout
    • B01D57/02
    • G01N27/44791
    • Electrophoresis systems and methods comprise an electrophoresis device, wherein the electrophoresis comprises a loading channel, a separation channel, and an injection channel. The loading channel is in fluid communication with a first and second sample port. The separation channel is connected to the loading channel to form a first intersection, and an injection channel connected to the separation channel to form a second intersection and in fluid communication with a first reservoir, and wherein the separation channel is in fluid communication with a second reservoir. The electrophoresis system further comprises two electrodes coupled to the first sample port and the first reservoir, and the first sample port and the second reservoir, respectively, that are adapted to move the sample into the loading channel towards the first reservoir and form a sample plug in the separation channel, and to further move the sample plug into the separation channel towards the second reservoir.
    • 电泳系统和方法包括电泳装置,其中电泳包括加载通道,分离通道和注射通道。 装载通道与第一和第二采样端口流体连通。 分离通道连接到装载通道以形成第一交叉点,以及连接到分离通道以形成第二交叉并与第一储存器流体连通的注入通道,并且其中分离通道与第二交换流体连通 水库 电泳系统还包括分别耦合到第一样品端口和第一储存器的两个电极以及适于将样品移动到装载通道中以朝向第一储存器形成样品塞的第一样品端口和第二储存器 在分离通道中,并且进一步将样品塞进入分离通道朝向第二储存器。
    • 2. 发明申请
    • SYSTEM AND METHOD FOR PERFORMING MICROFLUIDIC MANIPULATION
    • 用于执行微流控制的系统和方法
    • US20100096267A1
    • 2010-04-22
    • US12255962
    • 2008-10-22
    • Jun XieWei-Cheng TianShashi ThutupalliLi ZhuAnthony John MurrayErin Jean Finehout
    • Jun XieWei-Cheng TianShashi ThutupalliLi ZhuAnthony John MurrayErin Jean Finehout
    • G01N27/26
    • G01N27/44791
    • Electrophoresis systems and methods comprise an electrophoresis device, wherein the electrophoresis comprises a loading channel, a separation channel, and an injection channel. The loading channel is in fluid communication with a first and second sample port. The separation channel is connected to the loading channel to form a first intersection, and an injection channel connected to the separation channel to form a second intersection and in fluid communication with a first reservoir, and wherein the separation channel is in fluid communication with a second reservoir. The electrophoresis system further comprises two electrodes coupled to the first sample port and the first reservoir, and the first sample port and the second reservoir, respectively, that are adapted to move the sample into the loading channel towards the first reservoir and form a sample plug in the separation channel, and to further move the sample plug into the separation channel towards the second reservoir.
    • 电泳系统和方法包括电泳装置,其中电泳包括加载通道,分离通道和注射通道。 装载通道与第一和第二采样端口流体连通。 分离通道连接到装载通道以形成第一交叉点,以及连接到分离通道以形成第二交叉并与第一储存器流体连通的注入通道,并且其中分离通道与第二交换流体连通 水库 电泳系统还包括分别耦合到第一样品端口和第一储存器的两个电极以及适于将样品移动到装载通道中以朝向第一储存器形成样品塞的第一样品端口和第二储存器 在分离通道中,并且进一步将样品塞进入分离通道朝向第二储存器。
    • 3. 发明授权
    • Electrophoresis system and method
    • 电泳系统及方法
    • US07740748B2
    • 2010-06-22
    • US12258657
    • 2008-10-27
    • Wei-Cheng TianShashi ThutupalliLi ZhuAnthony John MurrayErin Jean FinehoutJun Xie
    • Wei-Cheng TianShashi ThutupalliLi ZhuAnthony John MurrayErin Jean FinehoutJun Xie
    • G01N27/447G01N27/453
    • B01D57/02B01L3/502715G01N27/44743
    • Electrophoresis systems and methods comprise an electrophoresis device, wherein the electrophoresis device comprises a loading channel, an injection channel, and a separation channel. The loading channel is in fluid communication with a first and second sample port. The injection channel is connected to the loading channel to form a first intersection. The separation channel is connected to the injection channel to form a second intersection and in fluid communication with a first and second reservoir, and wherein the injection channel is in fluid communication with a third reservoir. The electrophoresis system further comprises electrodes coupled to the first sample port and the third reservoir, and the first reservoir and the second reservoir, respectively, that are adapted to move the sample into the loading channel towards the third reservoir and form a sample plug in the second intersection, and to further move the sample plug into the separation channel towards the second reservoir.
    • 电泳系统和方法包括电泳装置,其中电泳装置包括装载通道,注射通道和分离通道。 装载通道与第一和第二采样端口流体连通。 注入通道连接到装载通道以形成第一交叉。 分离通道连接到注入通道以形成第二交叉并且与第一和第二储存器流体连通,并且其中注入通道与第三储存器流体连通。 电泳系统还包括分别耦合到第一样品端口和第三储存器的电极,以及分别适于将样品移动到装载通道中的第一储存器和第二储存器,以朝向第三储存器形成样品塞 并且将样品塞进一步朝向第二储存器移动到分离通道中。
    • 4. 发明申请
    • ELECTROPHORESIS SYSTEM AND METHOD
    • 电泳系统和方法
    • US20100101951A1
    • 2010-04-29
    • US12258657
    • 2008-10-27
    • Wei-Cheng TianShashi ThutupalliLi ZhuAnthony John MurrayErin Jean FinehoutJun Xie
    • Wei-Cheng TianShashi ThutupalliLi ZhuAnthony John MurrayErin Jean FinehoutJun Xie
    • B01D57/02
    • B01D57/02B01L3/502715G01N27/44743
    • Electrophoresis systems and methods comprise an electrophoresis device, wherein the electrophoresis device comprises a loading channel, an injection channel, and a separation channel. The loading channel is in fluid communication with a first and second sample port. The injection channel is connected to the loading channel to form a first intersection. The separation channel is connected to the injection channel to form a second intersection and in fluid communication with a first and second reservoir, and wherein the injection channel is in fluid communication with a third reservoir. The electrophoresis system further comprises electrodes coupled to the first sample port and the third reservoir, and the first reservoir and the second reservoir, respectively, that are adapted to move the sample into the loading channel towards the third reservoir and form a sample plug in the second intersection, and to further move the sample plug into the separation channel towards the second reservoir.
    • 电泳系统和方法包括电泳装置,其中电泳装置包括装载通道,注射通道和分离通道。 装载通道与第一和第二采样端口流体连通。 注入通道连接到装载通道以形成第一交叉。 分离通道连接到注入通道以形成第二交叉并且与第一和第二储存器流体连通,并且其中注入通道与第三储存器流体连通。 电泳系统还包括分别耦合到第一样品端口和第三储存器的电极,以及分别适于将样品移动到装载通道中的第一储存器和第二储存器,以朝向第三储存器形成样品塞 并且将样品塞进一步朝向第二储存器移动到分离通道中。