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    • 5. 发明授权
    • Particle-based microfluidic device for providing high magnetic field gradients
    • 用于提供高磁场梯度的基于粒子的微流体装置
    • US08551333B2
    • 2013-10-08
    • US12594179
    • 2008-04-07
    • Adam Yuh LinTak Sing Wong
    • Adam Yuh LinTak Sing Wong
    • B03C1/02C12M1/00
    • B03C1/288B01L3/502761B01L3/502776B01L2200/0652B01L2400/043B03C1/01B03C2201/18
    • A microfluidic device for manipulating particles in a fluid has a device body that defines a main channel therein, in which the main channel has an inlet and an outlet. The device body further defines a particulate diverting channel therein, the particulate diverting channel being in fluid connection with the main channel between the inlet and the outlet of the main channel and having a particulate outlet. The microfluidic device also has a plurality of microparticles arranged proximate or in the main channel between the inlet of the main channel and the fluid connection of the particulate diverting channel to the main channel. The plurality of microparticles each comprises a material in a composition thereof having a magnetic susceptibility suitable to cause concentration of magnetic field lines of an applied magnetic field while in operation. A microfluidic particle-manipulation system has a microfluidic particle-manipulation device and a magnet disposed proximate the microfluidic particle-manipulation device.
    • 用于操纵流体中的颗粒的微流体装置具有在其中限定主通道的装置主体,其中主通道具有入口和出口。 装置主体还在其中限定了颗粒转向通道,颗粒转移通道与主通道的入口和出口之间的主通道流体连接并且具有微粒出口。 微流体装置还具有多个微粒,其布置在主通道的入口附近或主通道中,以及颗粒转向通道与主通道的流体连接之间。 多个微粒各自包含其组成中的材料,其具有在操作中适合于引起施加磁场的磁场线浓度的磁化率。 微流控粒子处理系统具有微流控粒子处理装置和靠近微流控粒子处理装置设置的磁体。
    • 6. 发明申请
    • Particle-Based Microfluidic Device for Providing High Magnetic Field Gradients
    • 用于提供高磁场梯度的基于粒子的微流控器件
    • US20100044232A1
    • 2010-02-25
    • US12594179
    • 2008-04-07
    • Adam Yuh LinTak Sing Wong
    • Adam Yuh LinTak Sing Wong
    • B01D43/00
    • B03C1/288B01L3/502761B01L3/502776B01L2200/0652B01L2400/043B03C1/01B03C2201/18
    • A microfluidic device for manipulating particles in a fluid has a device body that defines a main channel therein, in which the main channel has an inlet and an outlet. The device body further defines a particulate diverting channel therein, the particulate diverting channel being in fluid connection with the main channel between the inlet and the outlet of the main channel and having a particulate outlet. The microfluidic device also has a plurality of microparticles arranged proximate or in the main channel between the inlet of the main channel and the fluid connection of the particulate diverting channel to the main channel. The plurality of microparticles each comprises a material in a composition thereof having a magnetic susceptibility suitable to cause concentration of magnetic field lines of an applied magnetic field while in operation. A microfluidic particle-manipulation system has a microfluidic particle-manipulation device and a magnet disposed proximate the microfluidic particle-manipulation device.
    • 用于操纵流体中的颗粒的微流体装置具有在其中限定主通道的装置主体,其中主通道具有入口和出口。 装置主体还在其中限定了颗粒转向通道,颗粒转移通道与主通道的入口和出口之间的主通道流体连接并且具有微粒出口。 微流体装置还具有多个微粒,其布置在主通道的入口附近或主通道中,以及颗粒转向通道与主通道的流体连接之间。 多个微粒各自包含其组成中的材料,其具有在操作中适合于引起施加磁场的磁场线浓度的磁化率。 微流控粒子处理系统具有微流控粒子处理装置和靠近微流控粒子处理装置设置的磁体。