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International Journal of Applied Research
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ISSN Print: 2394-7500, ISSN Online: 2394-5869, CODEN: IJARPF

IMPACT FACTOR (RJIF): 8.4

Vol. 4, Issue 1, Part E (2018)

Mathematical model on two layered hepatic blood flow in capillaries due to hepatitis A

Mathematical model on two layered hepatic blood flow in capillaries due to hepatitis A

Author(s)
JP Singh, AK Agrawal, V Upadhyay, PN Pandey, and Mohd. Abdul Ahad
Abstract
The study of mathematical model of two phase blood flow in capillary in the case of hepatitis A infection presented here. P.N. Pandey and V. Upadhyay have considered the blood flow has two phased, one of which is that of red blood cells and other is plasma. According to Fahreaus-Lindqvist affect the blood flow in two separated layers while passing through capillaries. The plasma layer which flows along the surface of the capillaries contains almost no blood cells. The second layer the core layer containing blood cells which float in plasma along the axis of capillary. They have also applied the non-Newtonian power law model in bio fluid mechanical set-up. We have collected a clinical data in the case of Hepatitis A. The overall presentation is in tensorial form and solution technique adapted is analytical as well as numerical. The role of Hematocrit is explicit in the determination of blood pressure in case of Hepatitis A infection.
Pages: 289-296  |  976 Views  134 Downloads
How to cite this article:
JP Singh, AK Agrawal, V Upadhyay, PN Pandey,, Mohd. Abdul Ahad. Mathematical model on two layered hepatic blood flow in capillaries due to hepatitis A. Int J Appl Res 2018;4(1):289-296.
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