Porous Bead-Based Diagnostic Platforms: Bridging the Gaps in Healthcare
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Summary
This review article serves to explore for the first time the key intersection of multiplexed bead-based detection systems with integrated microfluidic structures alongside porous capture elements together with biomarker validation studies in the context of platform generation as suitable for near-patient testing.
- Type
- article
- Published
- 2012-11-09
- Cited by
- 33
- References
- 163
- Access
- Open access
- OpenAlex
- https://openalex.org/W23202219
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8994129
Keywords
Computer science
References
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- Programmable bio-nano-chip system: a flexible point-of-care platform for bioscience and clinical measurements
- Atom transfer radical polymerization of glycidyl methacrylate followed by amination on the surface of monodispersed highly crosslinked polymer microspheres and the study of cation adsorption
- Reconfigurable acquisition system with integrated optics for a portable flow cytometer.
- Nucleic acid detection based on the use of microbeads: a review
- Integration of an optical CMOS sensor with a microfluidic channel allows a sensitive readout for biological assays in point-of-care tests.
- Towards autonomous lab-on-a-chip devices for cell phone biosensing.
- Development of a Microsphere-Based System to Facilitate Real-Time Insulin Monitoring
- Cardiac ScoreCard: A Diagnostic Multivariate Index Assay System for Predicting a Spectrum of Cardiovascular Disease
- Programmable bio-nano-chip system: a flexible diagnostic platform that learns
- Micromechanical mass correlation spectroscopy for the characterization of nanoparticles and biomolecular complexes in fluid.
- New Functionalities for Paper-Based Sensors Lead to Simplified User Operation, Lower Limits of Detection, and New Applications.
- Challenges and opportunities for translating medical microdevices: insights from the programmable bio-nano-chip.
- Controlled Bulk Properties of Composite Polymeric Solutions for Extensive Structural Order of Honeycomb Polysulfone Membranes
- Programmable Bio-nanochip Platform: A Point-of-Care Biosensor System with the Capacity To Learn
- Simultaneous capture and sequential detection of two malarial biomarkers on magnetic microparticles
- Force spectroscopy predicts thermal stability of immobilized proteins by measuring microbead mechanics.
- Effects of protein properties on adsorption and transport in polymer‐grafted ion exchangers: A multiscale modeling study
- Integrated Instrumentation and Multivariate Index Assay System for Cardiovascular Health Assessment at the Point-of-Care
- Fabrication of Artificial Leaf to Develop Fluid Pump Driven by Surface Tension and Evaporation
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