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    • 1. 发明授权
    • Microfluidic systems and methods
    • 微流体系统和方法
    • US09157550B2
    • 2015-10-13
    • US12652735
    • 2010-01-05
    • Matthew B. WheelerDongshin KimDavid J. Beebe
    • Matthew B. WheelerDongshin KimDavid J. Beebe
    • C12M1/34F16K99/00C12M3/06C12M3/00A61B17/425B01L3/00
    • F16K99/0001A61B17/425B01L3/5085B01L2300/0829C12M21/06C12M23/16F16K99/0017F16K99/0028Y10T137/0318Y10T137/87249
    • Microfluidic systems and methods. A microfluidic device for in vitro fertilization comprises a substrate and a plurality of microchannels disposed in the substrate, including an inlet of at least two of the plurality of microchannels arranged on the substrate to align with a fluid-handling device. Another microfluidic system for assaying a plurality of cells comprises a substrate and a plurality of microfluidic channels comprising a source channel, a sink channel, and a cell chamber. An insert for a microfluidic system comprises a substrate configured to be inserted into a dish and a plurality of microscale wells disposed in the substrate. A microfluidic channel comprises a substrate and at least one microchannel having an open inlet, an open outlet, a channel, and an opening in the substrate disposed over a portion of the channel. A device for providing an amount of fluid for a fluidic system comprises a main reservoir, an aspiration well, tubing coupling the reservoirs, and a seal closing the main reservoir. Air tubing having a hydrophobic end extends into the at least one aspiration well.
    • 微流体系统和方法。 用于体外受精的微流体装置包括衬底和设置在衬底中的多个微通道,包括布置在衬底上的多个微通道中的至少两个的入口,以与流体处理装置对准。 用于测定多个细胞的另一个微流体系统包括底物和多个包含源通道,宿通道和细胞室的微流体通道。 用于微流体系统的插入件包括构造成插入盘中的衬底和设置在衬底中的多个微孔。 微流体通道包括基底和至少一个具有开放入口,开口的出口,通道和布置在通道的一部分上的基底中的开口的微通道。 用于为流体系统提供一定量的流体的装置包括主储存器,抽吸井,联接储存器的管道和封闭主储存器的密封件。 具有疏水端的空气管延伸到至少一个抽吸井中。
    • 2. 发明申请
    • MICROFLUIDIC SYSTEMS AND METHODS
    • 微流体系统和方法
    • US20100234674A1
    • 2010-09-16
    • US12652735
    • 2010-01-05
    • Matthew B. WheelerDongshin KimDavid J. Beebe
    • Matthew B. WheelerDongshin KimDavid J. Beebe
    • A61B17/43G03F7/20F16K11/20
    • F16K99/0001A61B17/425B01L3/5085B01L2300/0829C12M21/06C12M23/16F16K99/0017F16K99/0028Y10T137/0318Y10T137/87249
    • Microfluidic systems and methods. A microfluidic device for in vitro fertilization comprises a substrate and a plurality of microchannels disposed in the substrate, including an inlet of at least two of the plurality of microchannels arranged on the substrate to align with a fluid-handling device. Another microfluidic system for assaying a plurality of cells comprises a substrate and a plurality of microfluidic channels comprising a source channel, a sink channel, and a cell chamber. An insert for a microfluidic system comprises a substrate configured to be inserted into a dish and a plurality of microscale wells disposed in the substrate. A microfluidic channel comprises a substrate and at least one microchannel having an open inlet, an open outlet, a channel, and an opening in the substrate disposed over a portion of the channel. A device for providing an amount of fluid for a fluidic system comprises a main reservoir, an aspiration well, tubing coupling the reservoirs, and a seal closing the main reservoir. Air tubing having a hydrophobic end extends into the at least one aspiration well.
    • 微流体系统和方法。 用于体外受精的微流体装置包括衬底和设置在衬底中的多个微通道,其包括布置在衬底上的多个微通道中的至少两个的入口,以与流体处理装置对准。 用于测定多个细胞的另一个微流体系统包括底物和多个包含源通道,宿通道和细胞室的微流体通道。 用于微流体系统的插入件包括构造成插入盘中的衬底和设置在衬底中的多个微孔。 微流体通道包括基底和至少一个具有开放入口,开口的出口,通道和布置在通道的一部分上的基底中的开口的微通道。 用于为流体系统提供一定量的流体的装置包括主储存器,抽吸井,联接储存器的管道和封闭主储存器的密封件。 具有疏水端的空气管延伸到至少一个抽吸井中。
    • 6. 发明授权
    • Method and device for detecting a material
    • 用于检测材料的方法和装置
    • US07562562B2
    • 2009-07-21
    • US11745855
    • 2007-05-08
    • David J. BeebeDongshin Kim
    • David J. BeebeDongshin Kim
    • G01N33/48G01N3/08
    • G01N19/00G01N19/10G01N33/48
    • A method and device is provided for detecting a predetermined material. The device includes a first inner layer having first and second surfaces and a volume responsive to a first predetermined stimuli. A second inner layer has first and second surfaces. An adhesive bonds at least a portion of the first surface of the first inner layer to the first surface of the second inner layer with a bonding force. A change in the volume of the first layer generates an elastic force on the adhesive material. As a result, the first inner layer delaminates from the second inner layer in response to the elastic force overcoming the bonding force.
    • 提供了用于检测预定材料的方法和装置。 该装置包括具有第一和第二表面的第一内层和响应于第一预定刺激的体积。 第二内层具有第一和第二表面。 粘合剂通过结合力将第一内层的第一表面的至少一部分粘合到第二内层的第一表面。 第一层的体积变化在粘合剂材料上产生弹性力。 结果,第一内层响应于克服接合力的弹力而从第二内层分层。
    • 7. 发明申请
    • METHOD AND DEVICE FOR DETECTING A MATERIAL
    • 用于检测材料的方法和装置
    • US20080276718A1
    • 2008-11-13
    • US11745855
    • 2007-05-08
    • David J. BeebeDongshin Kim
    • David J. BeebeDongshin Kim
    • G01N3/08
    • G01N19/00G01N19/10G01N33/48
    • A method and device is provided for detecting a predetermined material. The device includes a first inner layer having first and second surfaces and a volume responsive to a first predetermined stimuli. A second inner layer has first and second surfaces. An adhesive bonds at least a portion of the first surface of the first inner layer to the first surface of the second inner layer with a bonding force. A change in the volume of the first layer generates an elastic force on the adhesive material. As a result, the first inner layer delaminates from the second inner layer in response to the elastic force overcoming the bonding force.
    • 提供了用于检测预定材料的方法和装置。 该装置包括具有第一和第二表面的第一内层和响应于第一预定刺激的体积。 第二内层具有第一和第二表面。 粘合剂通过结合力将第一内层的第一表面的至少一部分粘合到第二内层的第一表面。 第一层的体积变化在粘合剂材料上产生弹性力。 结果,第一内层响应于克服接合力的弹力而从第二内层分层。