Topological defects in epithelia govern cell death and extrusion TB Saw, A Doostmohammadi, V Nier, L Kocgozlu, S Thampi, Y Toyama, ... Nature 544 (7649), 212-216, 2017 | 745 | 2017 |
Active nematics A Doostmohammadi, J Ignés-Mullol, JM Yeomans, F Sagués Nature communications 9 (1), 3246, 2018 | 619 | 2018 |
The 2020 motile active matter roadmap G Gompper, RG Winkler, T Speck, A Solon, C Nardini, F Peruani, ... Journal of Physics: Condensed Matter 32 (19), 193001, 2020 | 438 | 2020 |
Stabilization of active matter by flow-vortex lattices and defect ordering A Doostmohammadi, MF Adamer, SP Thampi, JM Yeomans Nature communications 7 (1), 10557, 2016 | 193 | 2016 |
Onset of meso-scale turbulence in active nematics A Doostmohammadi, TN Shendruk, K Thijssen, JM Yeomans Nature communications 8 (1), 15326, 2017 | 188 | 2017 |
Defect-mediated morphologies in growing cell colonies A Doostmohammadi, S Thampi, JM Yeomans Physical Review Letters, 2016 | 164 | 2016 |
Emergence of active nematic behavior in monolayers of isotropic cells R Mueller, JM Yeomans, A Doostmohammadi Physical review letters 122 (4), 048004, 2019 | 147 | 2019 |
Dancing disclinations in confined active nematics TN Shendruk, A Doostmohammadi, K Thijssen, JM Yeomans Soft Matter 13 (21), 3853-3862, 2017 | 137 | 2017 |
Sustained oscillations of epithelial cell sheets G Peyret, R Mueller, J d’Alessandro, S Begnaud, P Marcq, RM Mège, ... Biophysical journal 117 (3), 464-478, 2019 | 128 | 2019 |
Bacteria solve the problem of crowding by moving slowly OJ Meacock, A Doostmohammadi, KR Foster, JM Yeomans, WM Durham Nature Physics 17 (2), 205-210, 2021 | 119 | 2021 |
Celebrating Soft Matter's 10th Anniversary: Cell division: a source of active stress in cellular monolayers A Doostmohammadi, SP Thampi, TB Saw, CT Lim, B Ladoux, ... Soft Matter 11 (37), 7328-7336, 2015 | 115 | 2015 |
Investigating the nature of active forces in tissues reveals how contractile cells can form extensile monolayers L Balasubramaniam, A Doostmohammadi, TB Saw, GHNS Narayana, ... Nature materials 20 (8), 1156-1166, 2021 | 110 | 2021 |
Low-Reynolds-number swimming at pycnoclines A Doostmohammadi, R Stocker, AM Ardekani Proceedings of the National Academy of Sciences 109 (10), 3856-3861, 2012 | 106 | 2012 |
Reconfigurable flows and defect landscape of confined active nematics J Hardoüin, R Hughes, A Doostmohammadi, J Laurent, T Lopez-Leon, ... Communications Physics 2 (1), 121, 2019 | 104 | 2019 |
Hydrodynamics of micro-swimmers in films AJTM Mathijssen, A Doostmohammadi, JM Yeomans, TN Shendruk Journal of Fluid Mechanics 806, 35-70, 2016 | 86 | 2016 |
Active micromachines: Microfluidics powered by mesoscale turbulence SP Thampi, A Doostmohammadi, TN Shendruk, R Golestanian, ... Science Advances 2 (7), e1501854, 2016 | 86 | 2016 |
Upstream swimming in microbiological flows AJTM Mathijssen, TN Shendruk, JM Yeomans, A Doostmohammadi Physical review letters 116 (2), 028104, 2016 | 83 | 2016 |
A numerical study of the dynamics of a particle settling at moderate Reynolds numbers in a linearly stratified fluid A Doostmohammadi, S Dabiri, AM Ardekani Journal of Fluid Mechanics 750, 5-32, 2014 | 74 | 2014 |
Polar jets of swimming bacteria condensed by a patterned liquid crystal T Turiv, R Koizumi, K Thijssen, MM Genkin, H Yu, C Peng, QH Wei, ... Nature Physics 16 (4), 481-487, 2020 | 72 | 2020 |
Topology and morphology of self-deforming active shells L Metselaar, JM Yeomans, A Doostmohammadi Physical review letters 123 (20), 208001, 2019 | 70 | 2019 |