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Microfluidics for Biosensing and Diagnostics
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Efforts to miniaturize sensing and diagnostic devices and to integrate multiple functions into one device have caused massive growth in the field of microfluidics and this integration is now recognized as an important feature of most new diagnostic approaches. These approaches have and continue to change the field of biosensing and diagnostics. In this Special Issue, we present a small collection of works describing microfluidics with applications in biosensing and diagnostics.

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Keywords

  • acoustofluidics
  • aminoglycosides
  • biomolecules
  • Biosensor
  • cavitation
  • CMOS biosensor
  • colorimetry
  • conformational states
  • diagnostic
  • dielectrophoretic immobilization
  • droplet
  • dynamic flow
  • finite difference method
  • GMR sensor
  • History of engineering & technology
  • hybrid integration
  • initiation of flow
  • lab-on-chip
  • microdroplets
  • microfluidic
  • microfluidic probe
  • Microfluidics
  • micromixing
  • Microsoft Excel
  • Navier–Stokes
  • numerical techniques
  • optical absorbance
  • opto-mechanics
  • photo-isomerisation
  • photokinetics
  • point-of-care
  • Poiseuille flow
  • salivary potassium
  • Sampling
  • size and mobility traps (SMT)
  • Taylor dispersion
  • Technology, engineering, agriculture
  • Technology: general issues
  • therapeutic drug monitoring (TDM)
  • time dependent flow
  • whole cell

Links

DOI: 10.3390/books978-3-0365-0063-8

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