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A milestone toward clinical laboratory automation - measurement of dielectrophoretic force of femto-Newtons (10#x2212;15 Newtons) -

机译:临床实验室自动化的里程碑 - 测量毛细管 - 牛顿电泳力量(10 -15 Newtons) -

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If the nuclear folding and clefting characteristic of monocytoid cells are not present, the morphologic features observed under light microscopy may not be sufficient to clarify the diagnosis. Much more reliable methodology should be developed for the clinical examination. Dielectrophoresis (DEP) is the motion of a matter caused by polarization effects in a non-uniform electric field. The dielectrophoretic force would be the candidate to achieve the separation, handling and characterization of the biological cells in the medium. It is not so easy to measure this extremely small motive force, though it is very important. This paper describes the methodology to measure the dielectrophoretic force of several tens of femto-Newtons.
机译:如果不存在单粒细胞斑块细胞的核折叠和线谱特性,则在光学显微镜下观察到的形态学特征可能不足以澄清诊断。应为临床检查开发更可靠的方法。介电泳(DEP)是由非均匀电场中的极化效应引起的物质的运动。介电泳是候选培养基中达到分离,处理和表征的介质。衡量这个极小的动力是不容易的,尽管它非常重要。本文介绍了测量几十毫副牛顿的介电泳力的方法。

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