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From Chips-in-Lab to Point-of-Care Live Cell Device: Development of a Microfluidic Device for On-Site Cell Culture and High-Throughput Drug Screening
Unravelling the Dynamics of Collective Cellular Response to Spatially Varying Environmental Stimuli Using a Laminar Flow Microfluidic Chip
A Stand-Alone Microfluidic Chip for Long-Term Cell Culture
Directional-to-Random Transition of Cell Cluster Migration
Gradient Nanoconfinement Facilitates Binding of Transcriptional Factor NF-$ąppa$B to Histone- and Protamine-DNA Complexes
Optically Fabricated Gradient Nanochannel Array to Access Translocation Dynamics of T4-phage DNA Through Nanoconfinement
Ultra-low and dynamic flow field generator composed by microfluidic peristaltic pump
Dynamic Intracellular Mechanical Cues Facilitate Collective Signaling Responses
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