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Soft Matter|April 25, 2015
Bending elasticity of vesicle membranes studied by Monte Carlo simulations of vesicle thermal shape fluctuationsSamo Penič, Aleš Iglič, Isak Bivas, et al.Frontiers in Cell and Developmental Biology|June 16, 2023
Modelling how curved active proteins and shear flow pattern cellular shape and motilityShubhadeep Sadhukhan, Samo Penič, Aleš Iglič, et al.Scientific Reports|October 31, 2023
Investigation of nano- and microdomains formed by ceramide 1 phosphate in lipid bilayersDominik Drabik, Mitja Drab, Samo Penič, et al.International Journal of Molecular Sciences|March 3, 2021
On the Role of Curved Membrane Nanodomains, and Passive and Active Skeleton Forces in the Determination of Cell Shape and Membrane BuddingLuka Mesarec, Mitja Drab, Samo Penič, et al.Journal of Colloid and Interface Science|July 21, 2023
Surfactin molecules with a cone-like structure promote the formation of membrane domains with negative spontaneous curvature and induce membrane invaginationsŽiga Pandur, Samo Penič, Aleš Iglič, et al.Biophysical Journal|September 10, 2021
A Monte Carlo study of giant vesicle morphologies in nonequilibrium environmentsMitja Drab, Žiga Pandur, Samo Penič, et al.Soft Matter|June 26, 2019
Theoretical study of vesicle shapes driven by coupling curved proteins and active cytoskeletal forcesMiha Fošnarič, Samo Penič, Aleš Iglič, et al.Frontiers in Molecular Biosciences|May 25, 2023
Theoretical model of membrane protrusions driven by curved active proteinsYoav Ravid, Samo Penič, Yuko Mimori-Kiyosue, et al.European Biophysics Journal : EBJ|May 11, 2017
On the role of external force of actin filaments in the formation of tubular protrusions of closed membrane shapes with anisotropic membrane componentsLuka Mesarec, Wojciech Góźdź, Samo Kralj, et al.Soft Matter|September 12, 2025
Coupling anisotropic curvature and nematic order: mechanisms of membrane shape remodelingYoav Ravid, Samo Penič, Luka Mesarec, et al.Pageof 2