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A novel model for blood impedance for indirect viscosity measurement Zu-yao Chang, Gerard C.M. Meijer and Gheorghe A.M. Pop Faculty of Electrical Engineering, Mathematics and Computer Science, Soz 2004.
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Structure Introduction Contents of Blood Measurement techniques Measurement setup Experimental results Conventional Model Novel Model Conclusions Soz 2004.
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Introduction Heart and arterial diseases death cause no 1. Source: Centraal Bureau voor de Statistiek
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Introduction Higher viscosity higher risk of blood-clot forming Good correlation between blood viscosity and blood impedance. Soz 2004.
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Introduction Soz 2004.
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Contents of Blood Plasma (volume 55%) Blood Cells (volume 45%) –Leukocytes (white blood cells) –Thrombocytes (platelets) –Erythrocytes (red blood cells) Soz 2004.
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Two-electrode measurement technique Measurement technique Four-electrode measurement technique Soz 2004. Z pol
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Measurement setup (4-electrodes) Z.Chang, 2003. LabVIEW Labview |Z|, Gain G, Phase Mathematical calculations HP4192A Gain Phase analyzer measurement circuit measurement cell Measurement cell Measurement circuit V osc Impedance of Blood
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Experimental results Nyquist Plot Ht=45% T=24 C Soz 2004. Polarization effects Blood Dielectric Properties of water
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Conventional Model Resistor R p : plasma resistance with non- conducting blood cells. Capacitor C m : cell- membrane capacitance. Resistor R i : interior cell- resistance. RpRp RiRi CmCm Where is the dielectric capacitance of water ? Soz 2004.
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Conventional Model Blood, Ht=45%, T=24ºC Nyquist plot of four-electrodes measurement conv. model <1.2 MHz conventional model full freq. range Soz 2004.
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Conventional Model Soz 2004. Nyquist plot of two-electrodes measurement Blood, Ht=45%, T=24ºC C li q Improved model total freq. fit
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Novel Model Resistor R p : plasma resistance with non- conducting blood cells. Resistor R i : interior cell- resistance. RpRp RiRi Soz 2004. Constant-Phase element C CPE_m : cell-membrane capacitance. C CPE_m C liq Capacitor C liq : dielectric capacitance.
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Novel Model Blood, Ht=45%, T=24ºC Nyquist plot of four-electrodes measurement Soz 2004. Conv. model, 3pnt Conventional model, all novel model
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Novel Model Nyquist plot of two-electrodes measurement Blood, Ht=45%, T=24ºC Soz 2004. Conventional model with C liq novel model
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Conclusions It is possible to predict blood viscosity via blood impedance. The validity of the early model of blood impedance is limited. A novel model of blood impedance is found and its validity verified until 100MHz. Soz 2004.
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Questions ? Soz 2004.
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