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    • 1. 发明申请
    • MANIPULATION OF PARTICLES IN CHANNELS
    • 管道中的颗粒的操作
    • US20120080360A1
    • 2012-04-05
    • US13262079
    • 2010-04-08
    • Howard A. StoneMara G. PrentissPierre StriehlEfraim Feinstein
    • Howard A. StoneMara G. PrentissPierre StriehlEfraim Feinstein
    • B03C1/32B81B7/00B03C1/00
    • B03C1/288B03C1/01
    • Systems and methods for the manipulation of particles within channels such as microfluidic channels are provided. In one set of embodiments, magnets are positioned around a channel. As a fluid containing magnetic and non-magnetic particles flows through the channel, the magnetic field created by the magnets can be used to transport the magnetic and/or non-magnetic particles to desired locations within the channel, which may useful in some cases for causing some separation of the particles. For example, the magnetic field may be used to transport magnetic or non-magnetic particles from a core fluid to a surrounding sheath fluid. In some cases, the magnetic field is used to transport non-magnetic particles to a small volume within the channel (e.g., a single-file row within the channel). The systems and methods described herein may find application in a variety of fields including, for example, continuous sorting of cells, removal of targeted cells from a stream of blood, or the arrangement of non-magnetic particles in channels for analysis.
    • 提供了用于操纵诸如微流体通道的通道内的颗粒的系统和方法。 在一组实施例中,磁体围绕通道定位。 当含有磁性和非磁性颗粒的流体流过通道时,由磁体产生的磁场可用于将磁性和/或非磁性颗粒传输到通道内的所需位置,这在某些情况下可能有用 导致颗粒的一些分离。 例如,磁场可以用于将磁性或非磁性颗粒从芯流体输送到周围的鞘液。 在一些情况下,磁场用于将非磁性颗粒传输到通道内的小体积(例如,通道内的单个文件行)。 本文所述的系统和方法可以应用于各种领域,包括例如细胞的连续分选,从血液流中去除靶细胞,或者在通道中排列非磁性粒子进行分析。
    • 6. 发明授权
    • Manipulation of particles in channels
    • 在通道中操纵颗粒
    • US08689981B2
    • 2014-04-08
    • US13262079
    • 2010-04-08
    • Howard A. StoneMara G. PrentissPierre StriehlEfraim Feinstein
    • Howard A. StoneMara G. PrentissPierre StriehlEfraim Feinstein
    • B03C1/00
    • B03C1/288B03C1/01
    • Systems and methods for the manipulation of particles within channels such as microfluidic channels are provided. In one set of embodiments, magnets are positioned around a channel. As a fluid containing magnetic and non-magnetic particles flows through the channel, the magnetic field created by the magnets can be used to transport the magnetic and/or non-magnetic particles to desired locations within the channel, which may useful in some cases for causing some separation of the particles. For example, the magnetic field may be used to transport magnetic or non-magnetic particles from a core fluid to a surrounding sheath fluid. In some cases, the magnetic field is used to transport non-magnetic particles to a small volume within the channel (e.g., a single-file row within the channel). The systems and methods described herein may find application in a variety of fields including, for example, continuous sorting of cells, removal of targeted cells from a stream of blood, or the arrangement of non-magnetic particles in channels for analysis.
    • 提供了用于操纵诸如微流体通道的通道内的颗粒的系统和方法。 在一组实施例中,磁体围绕通道定位。 当含有磁性和非磁性颗粒的流体流过通道时,由磁体产生的磁场可用于将磁性和/或非磁性颗粒传送到通道内的所需位置,这在某些情况下可能有用 导致颗粒的一些分离。 例如,磁场可以用于将磁性或非磁性颗粒从芯流体输送到周围的鞘液。 在一些情况下,磁场用于将非磁性颗粒传输到通道内的小体积(例如,通道内的单个文件行)。 本文所述的系统和方法可以应用于各种领域,包括例如细胞的连续分选,从血液流中去除靶细胞,或者在通道中排列非磁性粒子进行分析。