Ali akbar Sakhaeimanesh

  • Email: sakhaei AT eng.ui.ac.ir
  • Phone: +98-311-7932777 
  • Fax: +98-311-6682887
  • Address: Department of Biomedical Engineering,
    Faculty of Engineering, University of Isfahan,
    Hezar Jarib Ave., Isfahan, Iran
    Postal Code 81744

Educational History:

BS. in Mechanical Eng.
MS. in Biomedical Eng.
Ph.D. in Biomechanics.


Research Interests:

Biofluid, Cardiovascular System


Current Activities:

Preparing Papers for Presentation on European Society of Biomea
Preparing Standard of Direct Ophtalmoscope
Preparing Standard of Indirect Ophtalmoscope

Publications:

1- Sakhaeimanesh Ali A., Morsi Yos S. and Tansley Geoff D., 1995. In vitro Steady Flow Velocity and Shear Stress Measurements in the Vicinity of a Jellyfish Valve. Proceeding of the Twelfth Australasian Fluid Mechanics Conference, Volume 2: 887-890.

2- Sakhaeimanesh Ali A., Morsi Yos S. and Tansley Geoff D., 1996. An In vitro Comparative Study of the Jellyfish and Bjork Shily Valves Using Laser Anemometry. Proceeding of the Fourth Annual Mechanical Engineering Coference of ISME and Second Intenational Mechanical Engineering Conference. Volume 2: 327-334.

3- Sakhaeimanesh Ali A., Morsi Yos S. and Tansley Geoff D., 1996. Velocity and Shear Stress Distributions Downstream of a Jellyfish Valve in an Ellipsoid Shaped Valve Chamber. Book of Abstracts. 10th Conference of the European Society of Biomechanics. page 48.

4- Sakhaeimanesh Ali A.and Morsi Yos S., 1997. Velocity and Shear Stress Distribution Downstream of a Jellyfish Valve in a Model of Natural Aortic Root. Proceeding of the International Society for Optical Engineering, SPIE, Photothermal Therapies in Medicine, Volume 3193: 128-132.

5-A. Ali A. Sakhaeimanesh and Yos S. Morsi, 1999. Analysis of Regurgitation, Mean Systolic Pressure Drops and Energy Losses fot Two Artifical Aortic Valves. Journal of Medical Engineering and Technology, Volume 23(2): 63-68.

6- Y. S. Morsi, Ali Sakhaeimanesh and Brian R. Clyton, 1999. Measurements of Steady Flow Velocity and Turbulent Stress Downstream from Jellyfish and St. Vincent Aortic Heart Valves. Journal of Artificial Organs, Volume 2, 176-183.

7-A. A. Sakhaeimanesh and Yos S. Morsi, 2000. In Vitro Pulsatile Velocity and Turbulent Shear Stress Measurements Downstream of the Jellyfish Valve Using LDA Technique. Proceeding of the 12th Conference of the European Society of Biomechanics, P. 310.



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