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A blood cell deformability detector: the application of microfluidic flow cells in a blood rheology analyser

机译:血细胞可变形性检测器:微流体流动细胞在血液流变分析仪中的应用

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The author concludes that a filter structure with monitoring at many points along each pore would be advantageous. The author has implemented this with a planar topology that can be envisaged as either an array of micropipettes or a two dimensional filter matrix. The array consists of a number of flow channels, similar in both length and cross sectional area (but not, as yet, profile) to their physiological equivalents. By adopting this topology the author retains the advantages of preceding techniques and largely circumvent their respective disadvantages. Flow cell reproducibility is a function of the fabrication technology adopted, microengineering techniques are thus eminently suitable. So far the system has been developed to provide steady state analysis of flowing cells. However prototype entrance structures and flow constrictions have also been developed to provide for dynamic measurements of cell entry phenomena. The devices are fabricated by bulk micromachining. The flow channels have a nominal width and depth of 4 /spl mu/m and length of 90 /spl mu/m.
机译:作者得出结论,在每个孔隙沿着许多点监测的过滤器结构是有利的。作者已经实现了一个具有平面拓扑的平面拓扑,可以设想为微移器阵列或二维滤波器矩阵。该阵列由许多流动通道组成,在其生理等同物中的长度和横截面积(但不是,尚未概述)中类似的流动通道。通过采用这种拓扑,作者保留了前面的技术的优势,并且在很大程度上规避了各自的缺点。流动电池再现性是所采用的制造技术的函数,因此微型工程技术非常适合。到目前为止,系统已经开发出来提供对流动细胞的稳态分析。然而,还开发了原型入口结构和流量约束,以提供细胞进入现象的动态测量。这些装置由散装微机器制造。流动通道具有标称宽度和深度为4 / SPL MU / M和长度为90 / SPL MU / m。

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