• Fatemeh Kazemi Sabet, Arash Bahrami, and Amir H. Bahrami, Compartmentalizing and sculpting nanovesicles by phase-separated aqueous nanodroplets, RSC Advances, 2022, 12, 32035.
  • Alizadeh Haghighi, Elnaz, Arash Karaei Shiraz, Amir H. Bahrami, Membrane-mediated Interactions between Disk-like Inclusions Adsorbed on Vesicles, Frontiers in Physics, 1029, 2022.
  • André Ferreira Castro, Lothar Baltruschat, Tomke Stürner, Amir H. Bahrami, Peter Jedlicka, Gaia Tavosanis, Hermann Cuntz„ Achieving functional neuronal dendrite structure through sequential stochastic growth and retraction, Elife , 9, e60920.
  • Arash Bahrami, Amir H. Bahrami, Vesicle constriction by rings of Janus nanoparticles and aggregates of curved proteins, Nanotechnology, 2019, 30(34), 345101.
  • J. Schoeneberg, Mark R. Pavlin, S. Yan, M. Righini, Il-Hyung Lee, Lars-Anders Carlson, Amir H. Bahrami, D. H. Goldman, Gerhard Hummer, Carlos Bustamante, and James H. Hurley, ATP-dependent force generation and membrane scission by ESCRT-III and Vps4, Science, 2018, 362, 1423–1428.
  • Amir H. Bahrami and Thomas Weikl, Curvature-mediated assembly of Janus nanoparticles on small membrane vesicles, Nano Letters, 2018, 18, 1259-1263. 
  • Amir H. Bahrami and Gerhard Hummer, Formation and Stability of Lipid Membrane Nanotubes, ACS Nano , 2017, 12, 9558-9565.
  • Amir H. Bahrami, M. G. Lin, X. Ren, J. Hurley, and Gerhard Hummer, Scaffolding the cup-shaped double membrane in autophagy, PLOS Computational Biology , PLOS Comput Biol 2017, 13(10): e1005817.
  • Amir H. Bahrami, Reinhard Lipowsky, and Thomas R. Weikl, The role of membrane curvature for the wrapping of nanoparticles, Soft Matter, 2016, 12, 581-587. 
  • Roberto Covino, Stephanie Ballweg, Claudius Stordeur, Jonas B. Michaelis, Kristina Puth, Florian Wernig, Amir Bahrami, Andreas M. Ernst, Gerhard Hummer, and Robert Ernst, A Eukaryotic Sensor for Membrane Lipid Saturation, Molecular Cell, 2016, 1, 49-59.
  • Emily M. Curtis, Amir H. Bahrami, Thomas R. Weikl, and Carol K. Hall, Modeling nanoparticle wrapping or translocation in bilayer membranes, Nanoscale, 2015, 7, 14505-14514. 
  • Amir H. Bahrami, M. Raatz, J. Agudo-Canalejo, R. Michel, Emily M. Curtis, Carol K. Hall, M. Gradzielski, Reinhard Lipowsky, Thomas R. Weikl, Wrapping of nanoparticles by membranes, Advances in Colloid and Interface Science, 2014, 208, 214-224. 
  • Amir H. Bahrami, Orientational changes and impaired internalization of ellipsoidalnanoparticles by vesicle membranes, Soft Matter (on the cover), 2013, 9, 8642-8646.
  • Amir H. Bahrami, Reinhard Lipowsky, and Thomas Weikl, Tubulation and Aggregation of Spherical Nanoparticles Adsorbed on Vesicles, Physical Review Letters (suggested by the editor), 2012, 109, 188102. 
  • Amir H. Bahrami, M. Jalali, Vesicle Deformations by Clusters of Transmembrane Proteins, The Journal of Chemical Physics, 2011, 134, 085106. 
  • Amir H. Bahrami, M. Jalali, Spontaneous Motion of Immiscible Liquids in Nanotubes: Non- Equilibrium Molecular Dynamics Simulation, The Journal of Chemical Physics, 2010, 132, 024702. 
  • A. Meghdari, Amir H. Bahrami, A Biomechanical Model to Analyze Normal, Degenerated, and fused Cervical Spines Using IAR Concept, Iranian Journal of Science and Technology, 2004.
  • A. Meghdari, Amir H. Bahrami, Mathematical modelling of normal, degenerated, and fused cervical spines using IAR concept, Proceeding of the 10th Mechanical Engineering conference of The Iranian Society of Mechanical Engineers, Tehran, 2002, 604-610.