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An acoustofluidic trap and transfer approach for organizing a high density single cell array

We demonstrate a hybrid microfluidic system that combines fluidic trapping and acoustic switching to organize an array of single cells at high density. The fluidic trapping step is achieved by balancing the hydrodynamic resistances of three parallel channel segments forming a microfluidic trifurcation, the purpose

Authors:   Korine A. Ohiri; Sean T. Kelly; Jeffrey D. Motschman; Kevin H. Lin; Kris C. Wood; Benjamin B. Yellen
Journal:   Lab on a Chip
DOI:   10.1039/C8LC00196K
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