A Microfluidic Chip for Single-Cell Capture Based on Stagnation Point Flow and Boundary Effects
Long Cheng,
Xiao Lv,
Wenchao Zhou
et al.
Abstract:The capture of individual cells using microfluidic chips represents a widely adopted and efficient approach for investigating the biochemical microenvironment of singular cells. While conventional methods reliant on boundary effects pose challenges in precisely manipulating individual cells, single-cell capture grounded in the principle of stagnation point flow offers a solution to this limitation. Nevertheless, such capture mechanisms encounter inconsistency due to the instability of the flow field and stagna… Show more
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