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    • 1. 发明授权
    • Centrifuge and separation vessel therefore
    • 因此离心和分离容器
    • US09101925B2
    • 2015-08-11
    • US13199111
    • 2011-08-19
    • John R. ChapmanRodney SparksPhilip H. Coelho
    • John R. ChapmanRodney SparksPhilip H. Coelho
    • B01L3/00G01N33/49A61M1/36
    • B04B5/0414A61M1/3693B01D21/262B01L3/5021B01L2300/0851B01L2400/0409B04B1/00B04B5/02G01N33/491
    • The centrifugation vessel includes an outer wall containing an interior space. A dam defines a barrier which divides the interior space into at least two regions including a catch basin defining a higher gee region and a reservoir defining a lower gee region. These regions are joined together over the dam. The dam includes a face which is preferably tapered to enable optimization of speed of separation of a sample placed within the vessel. The vessel is usable in a biological sample processing method by having the higher gee region of the vessel configured to have an elongate form and the volume optimized for collection of a higher density fraction of the sample. Supply and withdrawal tubes extend into the regions for reliable extraction and separate collection of differing density fractions after separation by centrifugation.
    • 离心容器包括包含内部空间的外壁。 大坝定义了将内部空间分成至少两个区域的屏障,所述至少两个区域包括限定更高的gee区域的捕集池和限定较低的gee区域的储存器。 这些地区通过大坝连接在一起。 大坝包括一个优选为锥形的面,以便优化放置在容器内的样品的分离速度。 容器可用于生物样品处理方法,其中容器的较高的gee区域被配置为具有细长形状,并且针对样品的较高密度部分收集而优化的体积。 供应和取出管延伸到区域以进行可靠的提取,并通过离心分离后分离收集不同密度的馏分。