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Chamber for separating a particle mixture according to the countercurrent centrifugation method

机译:根据逆流离心法分离颗粒混合物的腔室

摘要

In counterstream centrifugation technology, in addition to the centrifugal force, forces of a centripetally directed flow of liquid act on a mixture of particles. An equilibrium of forces is established as a function of the size and density of the particles. By changing the force ratios, particles of different sizes and density can be isolated from the liquid flowing off in centripetal fashion. The geometric profile of the separating area, the so-called separating chamber, is decisive for the selectivity of separation. By virtue of eddy effects of the liquid flow and by virtue of non-uniform distribution of flow, the separation selectivity is unfavourably influenced in previously known separating chambers. In the described separating chamber, a uniform flow behaviour and a uniform distribution of the particles in the separating chamber are achieved by means of a central inlet opening which is aligned in the longitudinal direction of the chamber and by means of a constantly increasing cross-section of the chamber. As a result, the precise, non-damaging separation of large amounts of a mixture of living cells is made possible.
机译:在逆流离心技术中,除了离心力之外,向心流动的液体的力还作用在颗粒混合物上。根据颗粒的大小和密度来建立力的平衡。通过改变力比,可以将不同大小和密度的颗粒与向心流动的液体隔离开来。分离区域的几何轮廓,即所谓的分离腔,对分离的选择性起决定性作用。由于液体流动的涡流效应和由于流动的不均匀分布,在先前已知的分离室中不利地影响了分离选择性。在所述的分离室中,通过在分离室的纵向上对准的中心入口和通过不断增加的横截面,实现了分离室内颗粒的均匀流动特性和均匀分布。的房间。结果,可以精确,无损地分离大量活细胞混合物。

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