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    • 153. 发明申请
    • IRON ORE SEPARATION DEVICE
    • 铁矿石分离装置
    • US20120325726A1
    • 2012-12-27
    • US13452420
    • 2012-04-20
    • Lucas LehtinenShawn HenriksenDavid ChappieTravis Edward CunninghamDanilo Bibancos
    • Lucas LehtinenShawn HenriksenDavid ChappieTravis Edward CunninghamDanilo Bibancos
    • B03C1/02B03C1/30
    • B03C1/286B03C1/03B03C2201/18
    • Slurries of magnetic and nonmagnetic particles in water are treated in a high intensity magnetic separator including at least one turntable that defines at least one circular channel therethrough in which a matrix material is positioned. Rotation of the turntable in a generally horizontal plane about a generally vertical virtual axis causes the circular channel(s) to rotate through a plurality of magnetic and nonmagnetic zones generated by magnet members. Treatment slurry is directed into the channel(s) in one or more of the magnetic zones as the turntable rotates. A tailings fraction passing through the channel(s) in a generally downward direction in the magnetic zones is collected in tailings launders. Magnetic particles attracted to the matrix material in the magnetic zones remain in the channel(s) until they pass into an adjacent nonmagnetic zone, where the magnetic particles are washed from the channel(s) into concentrate launders.
    • 在水中的磁性和非磁性颗粒的浆液在高强度的磁选机中进行处理,其包括至少一个限定了至少一个通过其中的基本材料定位的圆形通道的转台。 转盘在大致水平的平面中围绕大致竖直的虚拟轴线的旋转导致圆形通道旋转穿过由磁性部件产生的多个磁性和非磁性区域。 当转台旋转时,处理浆料被引导到一个或多个磁区中的通道中。 在磁性区域中通常通过通道(一个或多个)通常向下的尾矿馏分被收集在尾矿清洗机中。 吸引到磁性区域中的基质材料的磁性颗粒保留在通道中,直到它们进入相邻的非磁性区域,其中磁性颗粒从通道洗涤成浓缩洗涤剂。
    • 154. 发明申请
    • METHOD AND APPARATUS FOR SINGLE CELL ISOLATION AND ANALYSIS
    • 用于单细胞分离和分析的方法和装置
    • US20120315639A1
    • 2012-12-13
    • US13483422
    • 2012-05-30
    • GLENN YAGUANG DENGJie ZhangFang Tian
    • GLENN YAGUANG DENGJie ZhangFang Tian
    • G01N33/574C12Q1/68C12M1/42G01N33/566
    • G01N33/54333B03C1/0332B03C1/0335B03C1/284B03C1/286B03C1/288B03C2201/18B03C2201/26G01N33/538
    • A method and apparatus are disclosed here for rare target cell enrichment and isolation, where the captured target cells can be individually picked up and used for downstream analysis. This method and apparatus utilize antibodies conjugated microbeads to isolate target cells, use ON/OFF controls for the target cell capturing magnet and the release magnet, such that there is no need to change the cap of the capturing magnet and thus enabling automatic multiple rounds of capturing, washing and releasing cycles to increase the target cell detection sensitivity and reproducibility. A special filter is utilized to effectively remove more than 95% of free unbound microbeads, thus significantly improving the purity of the collected target cells and increasing the data quality of downstream analysis of the single target cells. Lastly, RNA expression patterns are proposed for identifying of certain target cells (e.g. circulating tumor cells and white blood cells).
    • 这里公开了用于稀有靶细胞富集和分离的方法和装置,其中捕获的靶细胞可以单独拾取并用于下游分析。 该方法和装置利用抗体缀合的微珠来分离靶细胞,使用靶细胞捕获磁体和释放磁体的ON / OFF控制,使得不需要改变捕获磁体的盖,因此使得能够自动多轮 捕获,洗涤和释放循环以增加靶细胞检测灵敏度和再现性。 利用特殊的过滤器有效去除95%以上的游离的未结合微珠,从而显着提高收集靶细胞的纯度,提高单靶细胞下游分析的数据质量。 最后,提出RNA表达模式用于鉴定某些靶细胞(例如循环肿瘤细胞和白细胞)。
    • 155. 发明申请
    • DEVICE AND METHOD FOR RECOVERING MAGNETIC PARTICLES TRAPPED ON A MAGNETIC PLUG
    • 用于回收磁性片上的磁性颗粒的装置和方法
    • US20120204910A1
    • 2012-08-16
    • US13504277
    • 2010-10-22
    • Fabrice Colladon
    • Fabrice Colladon
    • B08B5/00
    • B03C1/284B03C1/032B03C1/286
    • A device for recovering magnetic particles trapped on a magnetic plug, which includes a supporting end and a magnetized element for retaining the magnetic particles in a liquid resulting from the wear of parts with which the liquid has been in contact, the recovery device including a magnetization device and an enclosure having an opening, the enclosure to receive the magnetic plug via the opening such that the magnetized element is located inside the enclosure and the supporting end is located outside the enclosure. The opening is sized such that the supporting end blocks the opening. The device also includes an injection nozzle to inject a gaseous fluid inside the enclosure, the nozzle being oriented such that the flow of gaseous fluid expels the magnetic particles retained on the magnetized element toward the bottom of the enclosure. The magnetization device traps the particles urged toward the bottom of the enclosure.
    • 一种用于回收被捕获在磁性塞子上的磁性颗粒的装置,该装置包括支撑端和用于将磁性颗粒保持在由液体已经接触的部件的磨损所导致的液体中的磁化元件,该恢复装置包括磁化 装置和具有开口的外壳,所述外壳经由所述开口接收所述磁性塞,使得所述磁化元件位于所述外壳内并且所述支撑端位于所述外壳外部。 开口的尺寸使得支撑端阻挡开口。 该装置还包括注射喷嘴以在壳体内注入气体流体,喷嘴被定向为​​使得气态流体流将保留在磁化元件上的磁性颗粒朝向外壳的底部排出。 磁化装置捕获朝外壳的底部被推动的颗粒。
    • 160. 发明申请
    • METHOD AND APPARATUS FOR PROCESSING MIXTURE
    • 处理混合物的方法和装置
    • US20110278231A1
    • 2011-11-17
    • US13146134
    • 2010-01-22
    • Shigehiro Nishijima
    • Shigehiro Nishijima
    • C02F1/48
    • B03C1/286B03C2201/18B24B1/04
    • The processing method for a mixture according to the present invention is a method for processing a mixture having first particles made of a magnetic material or a nonmagnetic material and second particles made of a magnetic material or a nonmagnetic material wherein the second particles are mixed in a fluid medium containing the first particles, and comprises a dispersion step of dispersing aggregates of the first particles and the second particles present in the mixture, and a magnetic separation step of providing the first particles and second particles with a magnetic force a of different magnitudes by applying a magnetic field to the mixture in parallel with or after the dispersion step, thereby separating the first particles and the second particles from each other.
    • 根据本发明的混合物的处理方法是一种处理具有由磁性材料或非磁性材料制成的第一颗粒的混合物的方法和由磁性材料或非磁性材料制成的第二颗粒,其中第二颗粒混合在 包含第一颗粒的流体介质,并且包括分散步骤,分散存在于混合物中的第一颗粒和第二颗粒的​​聚集体,以及磁分离步骤,通过以下方式提供具有不同量值的磁力a的第一颗粒和第二颗粒: 在分散步骤中或之后与混合物施加磁场,从而将第一颗粒和第二颗粒彼此分离。