Vahid Beheshti Seresht

Vahid is a Ph.D. student in the Department of industrial Engineering, Swanson School of Engineering at the University of Pittsburgh. He received his master’s degree from Sharif University of Technology, Tehran in 2021 and bachelor's degree from Amikabir University of Technology, Tehran in 2018. His research areas of interest include design and mechanics analysis of the metallic medical devices.

  • Beheshti Seresht, H., Emerick, T.D., Chauhan, G., Ibrahim, M.S., Jung, Y., Lee, J.K., & Chun, Y. (2026). A novel low-profile self-expanding epidural lead array system that is fully collapsible, deployable, and retrievable. Pain Med, 27(3), 268-278.Oxford University Press (OUP). doi: 10.1093/pm/pnaf124.
  • Beheshti Seresht, H., Akhlaghi, P., Ashouri Sharafshadeh, S., Aghajanzadeh, M.S., & Mehdinavaz Aghdam, R. (2025). Mechanical Characterization of Amniotic-Based Scaffolds Containing Silk Fibroin and Sodium Alginate Nanofibers. J Biomed Mater Res B Appl Biomater, 113(2), e35539.Wiley. doi: 10.1002/jbm.b.35539.
  • Beheshti Seresht, H., Ashouri Sharafshadeh, S., Akhlaghi, P., Aghajanzadeh, M.S., & Aghdam, R.M. (2025). Material properties of amniotic-based scaffolds: experimental and numerical evaluation of hyperelastic model. Mechanics of Soft Materials, 7(1), 3.Springer Nature. doi: 10.1007/s42558-025-00067-6.
  • Ibrahim, M.S., Seresht, H.B., Kum, C.H., Cho, J.H., Jin, G., An, S.H., Ye, S., Kim, S., Wagner, W.R., & Chun, Y. (2025). Novel laser-textured grooves extended to the sidewall edges of CoCr surfaces for rapid and selective endothelialization following coronary artery stenting. Biomaterials, 321, 123299.Elsevier. doi: 10.1016/j.biomaterials.2025.123299.
  • Seresht, H.B., Aghajanzadeh, M.S., Imani, R., & Haghbin Nazarpak, M. (2024). Structural relaxation in a Schiff base-crosslinked aldehyde modified xanthan gum/gelatin hydrogel: Experimental and numerical validation using linear poroelasticity model. POLYMERS FOR ADVANCED TECHNOLOGIES, 35(4).Wiley. doi: 10.1002/pat.6402.