Present technology and future trends in point-of-care microfluidic diagnostics.
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Summary
It is concluded that POC microfluidic diagnostics has a potential to improve patient treatment outcome and bring substantial savings in overall healthcare costs.
- Type
- review
- Published
- 2013-01-01
- Cited by
- 36
- References
- 99
- OpenAlex
- https://openalex.org/W2506308
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:32098645
Keywords
Microfluidics, Fluidics, Miniaturization, Point-of-care testing, Point of care
References
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- Biosensors for Protein Detection: A Review
- Molecular diagnosis of malaria in the field: development of a novel 1-step nucleic acid lateral flow immunoassay for the detection of all 4 human Plasmodium spp. and its evaluation in Mbita, Kenya.
- The centrifugal microfluidic Bio-Disk platform
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- Point-of-care molecular diagnostic systems--past, present and future.
- Inkjet-printed microfluidic multianalyte chemical sensing paper.
- The Digital Revolution: A New Paradigm for Microfluidics
- Applications of capillary electrophoresis on microchip.
- Integrated circuit/microfluidic chip to programmably trap and move cells and droplets with dielectrophoresis.
- Chaotic mixing using source–sink microfluidic flows in a PDMS chip
Cited by
- Diagnosing dengue virus infection: rapid tests and the role of micro/nanotechnologies.
- The impact of new trends in POCTs for companion diagnostics, non-invasive testing and molecular diagnostics
- Rapid absolute determination platform of nucleic acid for point-of-care testing
- Integrated Microfluidic Nucleic Acid Isolation, Isothermal Amplification, and Amplicon Quantification
- Comparing surface enhanced Raman spectroscopy from colloidal gold nanoparticles and nanocages
- Point of Care Technologies for HIV
- Point-of-care nucleic acid detection using nanotechnology.
- A transcriptomic reporter assay employing neutrophils to measure immunogenic activity of septic patients’ plasma
- Development and Applications of Portable Biosensors
- An integrated sample-in-answer-out microfluidic chip for rapid human identification by STR analysis.
- Target-Induced and Equipment-Free DNA Amplification with a Simple Paper Device.
- Microfluidic device fabrication utilizing virtual masks and photochemical etching
- Influence of Geometry and Surrounding Conditions on Fluid Flow in Paper-Based Devices
- Microfluidics-Based PCR for Fusion Transcript Detection.
- Generation of digitized microfluidic filling flow by vent control.
- Integrated dye lasers for all-polymer photonic Lab-on-a-Chip systems
- Fluorescence Detection of DNA Amplification in Porous Media for Point-of-Care Diagnostics
- Characterization of the photochemical etching process: an alternative microfluidic device fabrication method
- Surface-enhanced Raman spectroscopy competitive binding biosensor development utilizing surface modification of silver nanocubes and a citrulline aptamer
- Detection of aflatoxin B1 in food samples based on target-responsive aptamer-cross-linked hydrogel using a handheld pH meter as readout.
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