• DocumentCode
    1038892
  • Title

    Electronic gate detection for cell or particle counting and sizing in liquids: front-end characteristics, flow-dependent gate impedance, and its remediation

  • Author

    De Bisschop, Frank ; Vierendeels, Jan ; De Langhe, Chris

  • Author_Institution
    Phys. Dept., Ghent Univ.
  • Volume
    55
  • Issue
    4
  • fYear
    2006
  • Firstpage
    1160
  • Lastpage
    1168
  • Abstract
    The detection sensitivity and the sizing resolution of electronic gating are inherently limited by fluctuating gate impedance and flow-induced noise. Instabilities of this type, as shown, are due to varying flow patterns of the carrier liquid beyond the gate. Their effects, although largely hidden in dc-operated gating, cause broadening and shift of cell/particle-size distributions under measurement. RF-operated gating, more specifically the demodulation operation, is much more hindered. For an investigation of these effects, a physical model is proposed along with a procedure for the identification of the system parameters. A detector of dedicated concept is used for evaluating the model, and, more specifically, for investigating the impact of configurational and hydrodynamic parameters. Experiments prove that the origin of flow-dependent gate impedance is to be located inside a zone of only a few-micrometer extent at the gate outlet. This is confirmed by the calculated electric field patterns. On such grounds, electrode configurations are proposed that minimize the current density in the zone of hydrodynamic instability and, hence, the flow-induced noise. The same configurations also minimize the impedance of the gate as signal source, facilitating broadband operation, and multifrequency cell impedance measurements
  • Keywords
    biological techniques; cellular biophysics; electric sensing devices; hydrodynamics; particle counting; particle size measurement; two-phase flow; RF-operated gating; broadband operation; cell counting; cell sizing; demodulation operation; electronic gate detection; electronic gating; flow-dependent gate impedance; flow-induced noise; hydrodynamic parameter; multifrequency cell impedance measurement; particle counting; particle sizing; Biomedical measurements; Electrodes; Hydrodynamics; Immune system; Impedance; Liquids; Low-frequency noise; Noise level; Particle measurements; Pulse measurements; Biomedical equipment; biomedical measurements; biomedical signal detection; biomedical transducers; chemical transducers; chromatography; conductivity measurements; electrochemical devices;
  • fLanguage
    English
  • Journal_Title
    Instrumentation and Measurement, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9456
  • Type

    jour

  • DOI
    10.1109/TIM.2006.876571
  • Filename
    1658366