Micro-particle Electrical Conduction through Human Blood

被引:0
|
作者
Abdalla, S. [1 ]
Al-Ghamdi, A. A. [1 ]
Marzouki, F. [1 ]
机构
[1] King Abdulaziz Univ, Fac Sci, Dept Phys, POB 80203, Jeddah 21589, Saudi Arabia
关键词
blood; electrode polarization; alpha dispersion; permittivity-Human Blood - Complex permittivity; DIELECTRIC-SPECTROSCOPY; D-GLUCOSE; CELLS; SUSPENSIONS; ERYTHROCYTE; FIELDS;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The electric properties of human blood is vital. This is normal because this viable fluid have huge quantity of unexplored domains about its properties. For example, only few authors have examined the correlation between the electrode polarization and the dielectric alpha dispersion of micro-dipoles present in bio-fluids such as human blood. Even, there is no other authors have reported the presence of alpha dispersion in blood. After the application of ac- field, it is shown that in addition to the presence of electrode polarization; alpha, beta and gamma dispersions are present and can carry out the energy through blood. A model is presented in which different micro-components through blood play an essential role in transferring the energy between the electrodes. The electrode polarization through blood can completely mask the alpha dispersion which may explain why this latter has never been detected through blood. The presented model has successfully fitted to some recent published experimental results that confirm the micro-particle electric conduction and show the presence of alpha dispersion in blood. This will improve diagnostic-medical applications of metallic electrodes as micro biosensors and potential different therapeutic-medical applications.
引用
收藏
页码:416 / 419
页数:4
相关论文
共 50 条
  • [41] Micro-flow measurement with a laser diode micro-particle image velocimetry
    Pan, CT
    Chuang, HS
    Cheng, CY
    Yang, CT
    SENSORS AND ACTUATORS A-PHYSICAL, 2004, 116 (01) : 51 - 58
  • [42] Micro-particle deposition and lobar distribution of mass flow in human upper respiratory tract model
    HUANG JianHua1 & ZHANG LianZhong1
    2 State Key Laboratory of Loess and Quaternary Geology
    Science Bulletin, 2011, (Z1) : 380 - 385
  • [44] Crystallization of acetaminophen micro-particle using supercritical carbon dioxide
    Guanghua Li
    Junho Chu
    Eun-Seok Song
    Kyung Ho Row
    Kyong-Hwan Lee
    Youn-Woo Lee
    Korean Journal of Chemical Engineering, 2006, 23 : 482 - 487
  • [45] Micro-particle deposition and lobar distribution of mass flow in human upper respiratory tract model
    Huang JianHua
    Zhang LianZhong
    CHINESE SCIENCE BULLETIN, 2011, 56 (4-5): : 380 - 385
  • [46] Dynamics modeling and analysis of a micro-particle based shooting and harvesting system for blood vessel cleaning and enlargement
    Li, Huaming
    Zhang, Mingjun
    Tan, Jindong
    2006 IEEE/RSJ INTERNATIONAL CONFERENCE ON INTELLIGENT ROBOTS AND SYSTEMS, VOLS 1-12, 2006, : 1261 - +
  • [47] Ohmic Curing of Silver Micro-Particle Inks Printed on Thermoplastics
    Tricot, F.
    Venet, C.
    Beneventi, D.
    Curtil, D.
    Chaussy, D.
    Vuong, T. P.
    Broquin, J. E.
    Reverdy-Bruas, N.
    JOURNAL OF ELECTRONIC MATERIALS, 2021, 50 (11) : 6183 - 6195
  • [48] Modeling and Development of a Magnetically Actuated System for Micro-particle Manipulation
    Niu, Fuzhou
    Ma, Weicheng
    Li, Xiangpeng
    Chu, Henry K.
    Yang, Jie
    Ji, Haibo
    Sun, Dong
    2014 IEEE 14TH INTERNATIONAL CONFERENCE ON NANOTECHNOLOGY (IEEE-NANO), 2014, : 127 - 130
  • [49] Efficient computation of micro-particle dynamics including wall effects
    Longest, PW
    Kleinstreuer, C
    Buchanan, JR
    COMPUTERS & FLUIDS, 2004, 33 (04) : 577 - 601
  • [50] The effect of incident angle on the rebound behavior of micro-particle impacts
    Xie, Jun
    Zhu, Zhengren
    Yang, Tianhua
    Dong, Ming
    Li, Rundong
    JOURNAL OF AEROSOL SCIENCE, 2021, 155