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3D Printed Microfluidic Actuation System for Multi-step Paper-based Assays

Authors :
Mark Bailly
Sumeyra Agambayev
Jennifer Blain Christen
Source :
2019 IEEE Healthcare Innovations and Point of Care Technologies, (HI-POCT).
Publication Year :
2019
Publisher :
IEEE, 2019.

Abstract

We present a novel 3D printed Microfluidic Actuation System for lateral flow assay in low resource settings. The system is used to deliver reagents for multi-step assays from blisters placed into cavities in the 3D printed assembly. The system is operated by manually depressing the blister housing and rotating to the next blister location. This is repeated for each step in the assay to enable a simple and repeatable method of delivering specified volumes to the assay at arbitrary time intervals as required by the assay. The blisters provide for robust storage while maintaining consistent aliquots for the assay. We characterize the percent of the total volume delivered to the lateral flow assay from the blisters including the volume dispensed at given time intervals.

Details

Database :
OpenAIRE
Journal :
2019 IEEE Healthcare Innovations and Point of Care Technologies, (HI-POCT)
Accession number :
edsair.doi...........975233efd5d88e34c242c133f93b800f
Full Text :
https://doi.org/10.1109/hi-poct45284.2019.8962668