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References
Ihle T, 2014. Towards a quantitative kinetic theory of polar active matter, Eur. Phys. J. Spec. Top.,
223: 1293–1314
Ihle T and Chou Y-L, 2014. Discussion on Ohta et al, “Traveling bands in self-propelled soft
particles”, Eur. Phys. J. Spec. Top. 223: 1409–1415
Illukkumbura R, Bland T, Goehring NW, 2020. Patterning and polarization of cells by intracellular
flows’ Curr. Opinion Cell Biol. 62: 123–134
Ingber DE, 1997. Tensegrity: The architectural basis of cellular mechanotransduction, Annu. Rev.
Physiol. 59: 575–599
Ingber DE, 2018. From mechanobiology to developmentally inspired engineering, Phil. Trans. R.
Soc. B 373: 20170323
Ioannou F, Dawi MA, Tetley RJ, Mao Y, and Muñoz JJ, 2020. Development of a New 3D Hybrid
Model for Epithelia Morphogenesis, Front. Bioeng. Biotechnol. 8: 405
Ionov L, 2013. Biomimetic Hydrogel-Based Actuating Systems, Adv. Funct. Mater. 23, 4555–4570
Irvine K and Wieschaus E, 1994. Cell intercalation during Drosophila germ-band extension and its
regulation by pair-rule segmentation genes, Development 120: 827–841
Ishikawa T and Pedley TJ, 2008. Coherent Structures in Monolayers of Swimming Particles, Phys.
Rev. Lett. 100: 088103
Jemielita M, Wingreen NS, and Bassler BL, 2018. Quorum sensing controls Vibrio cholerae multicellular aggregate formation, eLife 7: e42057
Jikeli JF, . . . , Kaupp UB (10 coauthors), 2015. Sperm navigation along helical paths in 3D chemoattractant landscapes, Nat. Commun. 6: 7985
Joanny, J-F, Jülicher F, Kruse K, and Prost J, 2007. Hydrodynamic theory for multi-component
active polar gels, New J. Phys. 9: 422
Jülicher F and Prost J, 2009. Generic theory of colloidal transport, Eur. Phys. J. E 29: 27–36
Kaiser A, Sokolov A, Aranson IS, and Löwen H, 2015. Motion of two micro-wedges in a turbulent
bacterial bath, Eur. Phys. J. Spec. Top. 224: 1275–1286
Kaiser A, Snezhko A, and Aranson IS, 2017. Flocking ferromagnetic colloids, Sci. Adv. 3: e1601469
Karsenti E, Nédélec F, and Surrey F, 2006. Modelling microtubule patterns, Nat. Cell Biol. 8:
1204–1211
Katyal N, Dey S, and Das D, 2020. Coarsening dynamics in the Vicsek model of active matter, Eur.
Phys. J. E 43: 10
Kaupp UB and Alvarez L, 2016. Sperm as microswimmers – navigation and sensing at the physical
limit, Eur. Phys. J. Spec. Top. 225: 2119–2139
Keller EF and Segel LA, 1971. Traveling Bands of Chemotactic Bacteria: A Theoretical Analysis,
J. Theor. Biol. 30: 235–248
Khoromskaia D and Alexander GP, 2017. Vortex formation and dynamics of defects in active
nematic shells, New J. Phys. 19: 103043
Kim JH, . . . , Fredberg JJ (13 coauthors), 2013. Propulsion and navigation within the advancing
monolayer sheet, Nat. Mater. 12: 856–863
Kléman M and Lavrentovich OD, 2003. Soft Matter Physics: An Introduction, Springer-Verlag,
New York
Klughammer N, Bischof J, Schnellbächer ND, Callegari A, Péter Lénáńrt P, and Schwarz US, 2018.
Cytoplasmic flows in starfish oocytes are fully determined by cortical contractions, PLoS Comput.
Biol. 14: e1006588
References
Ihle T, 2014. Towards a quantitative kinetic theory of polar active matter, Eur. Phys. J. Spec. Top.,
223: 1293–1314
Ihle T and Chou Y-L, 2014. Discussion on Ohta et al, “Traveling bands in self-propelled soft
particles”, Eur. Phys. J. Spec. Top. 223: 1409–1415
Illukkumbura R, Bland T, Goehring NW, 2020. Patterning and polarization of cells by intracellular
flows’ Curr. Opinion Cell Biol. 62: 123–134
Ingber DE, 1997. Tensegrity: The architectural basis of cellular mechanotransduction, Annu. Rev.
Physiol. 59: 575–599
Ingber DE, 2018. From mechanobiology to developmentally inspired engineering, Phil. Trans. R.
Soc. B 373: 20170323
Ioannou F, Dawi MA, Tetley RJ, Mao Y, and Muñoz JJ, 2020. Development of a New 3D Hybrid
Model for Epithelia Morphogenesis, Front. Bioeng. Biotechnol. 8: 405
Ionov L, 2013. Biomimetic Hydrogel-Based Actuating Systems, Adv. Funct. Mater. 23, 4555–4570
Irvine K and Wieschaus E, 1994. Cell intercalation during Drosophila germ-band extension and its
regulation by pair-rule segmentation genes, Development 120: 827–841
Ishikawa T and Pedley TJ, 2008. Coherent Structures in Monolayers of Swimming Particles, Phys.
Rev. Lett. 100: 088103
Jemielita M, Wingreen NS, and Bassler BL, 2018. Quorum sensing controls Vibrio cholerae multicellular aggregate formation, eLife 7: e42057
Jikeli JF, . . . , Kaupp UB (10 coauthors), 2015. Sperm navigation along helical paths in 3D chemoattractant landscapes, Nat. Commun. 6: 7985
Joanny, J-F, Jülicher F, Kruse K, and Prost J, 2007. Hydrodynamic theory for multi-component
active polar gels, New J. Phys. 9: 422
Jülicher F and Prost J, 2009. Generic theory of colloidal transport, Eur. Phys. J. E 29: 27–36
Kaiser A, Sokolov A, Aranson IS, and Löwen H, 2015. Motion of two micro-wedges in a turbulent
bacterial bath, Eur. Phys. J. Spec. Top. 224: 1275–1286
Kaiser A, Snezhko A, and Aranson IS, 2017. Flocking ferromagnetic colloids, Sci. Adv. 3: e1601469
Karsenti E, Nédélec F, and Surrey F, 2006. Modelling microtubule patterns, Nat. Cell Biol. 8:
1204–1211
Katyal N, Dey S, and Das D, 2020. Coarsening dynamics in the Vicsek model of active matter, Eur.
Phys. J. E 43: 10
Kaupp UB and Alvarez L, 2016. Sperm as microswimmers – navigation and sensing at the physical
limit, Eur. Phys. J. Spec. Top. 225: 2119–2139
Keller EF and Segel LA, 1971. Traveling Bands of Chemotactic Bacteria: A Theoretical Analysis,
J. Theor. Biol. 30: 235–248
Khoromskaia D and Alexander GP, 2017. Vortex formation and dynamics of defects in active
nematic shells, New J. Phys. 19: 103043
Kim JH, . . . , Fredberg JJ (13 coauthors), 2013. Propulsion and navigation within the advancing
monolayer sheet, Nat. Mater. 12: 856–863
Kléman M and Lavrentovich OD, 2003. Soft Matter Physics: An Introduction, Springer-Verlag,
New York
Klughammer N, Bischof J, Schnellbächer ND, Callegari A, Péter Lénáńrt P, and Schwarz US, 2018.
Cytoplasmic flows in starfish oocytes are fully determined by cortical contractions, PLoS Comput.
Biol. 14: e1006588
