• DocumentCode
    493275
  • Title

    Effects of channel surface finish on blood flow in microfluidic devices

  • Author

    Prentner, S. ; Allen, D.M. ; Larcombe, L. ; Marson, S. ; Jenkins, K. ; Saumer, M.

  • Author_Institution
    Precision Eng. Centre, Cranfield Univ., Cranfield
  • fYear
    2009
  • fDate
    1-3 April 2009
  • Firstpage
    51
  • Lastpage
    54
  • Abstract
    The behaviour of blood flow in relation to microchannel surface roughness has been investigated. Special attention was focused on the techniques used to fabricate the microchannels and on the apparent viscosity of the blood as it flowed through these microchannels. For the experimental comparison of smooth and rough surface channels, each channel was designed to be 10 mm long and rectangular in cross-section with aspect ratios of ges 100:1 for channel heights of 50 and 100 mum. Polycarbonate was used as the material for the device construction. The shims, which created the heights of the channels, were machined from poly(ethylene terephthalate). Surface roughnesses of the channels were varied from Rz of 60 nm to 1.8 mum. Whole horse blood and filtered water were used as the test fluids and differential pressures ranged from 200 to 5000 Pa. The defibrinated horse blood was further treated to prevent coagulation. The results indicate that a roughness above an unknown value lowers the apparent viscosity of blood dramatically due to boundary effects. Furthermore, the roughness seemed to influence both water and whole blood almost equally. A set of design rules for channel fabrication is also presented in accordance with the experiments performed.
  • Keywords
    haemodynamics; microchannel flow; polymers; surface finishing; surface roughness; viscosity; blood flow; channel surface finish; horse blood; microfluidic devices; polycarbonate; pressure 200 Pa to 5000 Pa; size 10 mm; size 100 mum; size 50 mum; surface roughness; viscosity; Blood flow; Building materials; Horses; Microchannel; Microfluidics; Rough surfaces; Surface finishing; Surface roughness; Surface treatment; Viscosity;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Design, Test, Integration & Packaging of MEMS/MOEMS, 2009. MEMS/MOEMS '09. Symposium on
  • Conference_Location
    Rome
  • Print_ISBN
    978-1-4244-3874-7
  • Type

    conf

  • Filename
    4919479