214
References
Mueller J, . . . , Small, JV (13 coauthors), Electron Tomography and Simulation of Baculovirus
Actin Comet Tails Support a Tethered Filament Model of Pathogen Propulsion, PLoS Biology, 12:
e1001765
Müller WA, 1997. Developmental Biology, Springer-Verlag, New York
Mullins WW and Sekerka RF, 1963. Morphological stability of a particle growing by diffusion or
heat flow, J. Appl. Phys. 34: 323–329
Murray JD, 1980. A pattern formation mechanism and its application to mammalian coat markings,
Lect. Notes in Biomathematics, 39: 360–399, Springer-Verlag, Berlin
Murray JD, 1989. Mathematical Biology, Springer, Berlin (3rd ed., 2002/2003)
Murrell M, Oakes PW, Lenz M, and Gardel ML, 2015. Forcing cells into shape: the mechanics of
actomyosin contractility, Nat. Rev. Molec. Cell Biol. 16: 486–498
Nadell CD, Foster KR, and Xavier JB, 2010. Emergence of spatial structure in cell groups and the
evolution of cooperation, PLoS Comput. Biol. 6: e1000716
Nagai K, Sumino Y, and Yoshikawa K, 2007. Regular self-motion of a liquid droplet powered by
the chemical Marangoni effect, Coll. Surf. B: Biointerfaces 56: 197–200
Nagai T, Kawasaki K, and Nakamura K, 1988. Vertex Dynamics of Two-Dimensional Cellular
Patterns, J. Phys. Soc. Jpn. 57: 2221–2224
Nagai T and Honda H, 2001. A dynamic cell model for the formation of epithelial tissues, Phil.
Mag. 81: 699–719
Nagy M, Akos Z, Biro D, and Vicsek T, 2010. Hierarchical group dynamics in pigeon flocks. Nature
464: 890–894
Narayan V, Menon N, and Ramaswamy S, 2006. Nonequilibrium steady states in a vibrated-rod
monolayer: tetratic, nematic, and smectic correlations, J. Stat. Mech. Theor. Exp. P01005
Narayan V, Ramaswamy S, and Menon N, 2007. Long-Lived Giant Number Fluctuations in a
Swarming Granular Nematic, Science 317: 105
Nasouri B and Golestanian R, 2020. Exact Phoretic Interaction of Two Chemically Active Particles,
Phys. Rev. Lett. 124: 168003
Nédélec F, Surrey T, Maggs AC, and Leibler S, 1997. Self-organization of microtubules and motors,
Nature 389: 305–308
Needleman D and Dogic Z, 2017. Active matter at the interface between materials science and cell
biology, Nature Rev. Mater. 2: 17048
Nikolić DL, Boettiger AN, Bar-Sagi D, Carbeck JD, and Shvartsman SY, 2006. Role of boundary conditions in an experimental model of epithelial wound healing, Am. J. Physiol. 291: C68–C75
Nishiguchi D, Aranson IS, Snezhko A, and Sokolov A, 2018. Engineering bacterial vortex lattice
via direct laser lithography, Nat. Commun. 9: 4486
Noll N, Streichan SJ, and Boris I. Shraiman BI, 2020. Method for Image-Based Inference of Internal
Stress in Epithelial Tissues, Phys. Rev. X 10: 011072
Noor N, Shapira A, Edri R, Gal I, Wertheim L, and Dvir T, 2019. 3D Printing of Personalized Thick
and Perfusable Cardiac Patches and Hearts, Adv. Sci. 6: 1900344
Notbohm J, Banerjee S, Utuje KJ, Gweon B, Jang H, Park Y, Shin J, Butler JP, Fredberg JJ, and
Marchetti MC, 2016. Cellular contraction and polarization drive collective cellular motion, Biophys. J. 110: 2729–2738
References
Mueller J, . . . , Small, JV (13 coauthors), Electron Tomography and Simulation of Baculovirus
Actin Comet Tails Support a Tethered Filament Model of Pathogen Propulsion, PLoS Biology, 12:
e1001765
Müller WA, 1997. Developmental Biology, Springer-Verlag, New York
Mullins WW and Sekerka RF, 1963. Morphological stability of a particle growing by diffusion or
heat flow, J. Appl. Phys. 34: 323–329
Murray JD, 1980. A pattern formation mechanism and its application to mammalian coat markings,
Lect. Notes in Biomathematics, 39: 360–399, Springer-Verlag, Berlin
Murray JD, 1989. Mathematical Biology, Springer, Berlin (3rd ed., 2002/2003)
Murrell M, Oakes PW, Lenz M, and Gardel ML, 2015. Forcing cells into shape: the mechanics of
actomyosin contractility, Nat. Rev. Molec. Cell Biol. 16: 486–498
Nadell CD, Foster KR, and Xavier JB, 2010. Emergence of spatial structure in cell groups and the
evolution of cooperation, PLoS Comput. Biol. 6: e1000716
Nagai K, Sumino Y, and Yoshikawa K, 2007. Regular self-motion of a liquid droplet powered by
the chemical Marangoni effect, Coll. Surf. B: Biointerfaces 56: 197–200
Nagai T, Kawasaki K, and Nakamura K, 1988. Vertex Dynamics of Two-Dimensional Cellular
Patterns, J. Phys. Soc. Jpn. 57: 2221–2224
Nagai T and Honda H, 2001. A dynamic cell model for the formation of epithelial tissues, Phil.
Mag. 81: 699–719
Nagy M, Akos Z, Biro D, and Vicsek T, 2010. Hierarchical group dynamics in pigeon flocks. Nature
464: 890–894
Narayan V, Menon N, and Ramaswamy S, 2006. Nonequilibrium steady states in a vibrated-rod
monolayer: tetratic, nematic, and smectic correlations, J. Stat. Mech. Theor. Exp. P01005
Narayan V, Ramaswamy S, and Menon N, 2007. Long-Lived Giant Number Fluctuations in a
Swarming Granular Nematic, Science 317: 105
Nasouri B and Golestanian R, 2020. Exact Phoretic Interaction of Two Chemically Active Particles,
Phys. Rev. Lett. 124: 168003
Nédélec F, Surrey T, Maggs AC, and Leibler S, 1997. Self-organization of microtubules and motors,
Nature 389: 305–308
Needleman D and Dogic Z, 2017. Active matter at the interface between materials science and cell
biology, Nature Rev. Mater. 2: 17048
Nikolić DL, Boettiger AN, Bar-Sagi D, Carbeck JD, and Shvartsman SY, 2006. Role of boundary conditions in an experimental model of epithelial wound healing, Am. J. Physiol. 291: C68–C75
Nishiguchi D, Aranson IS, Snezhko A, and Sokolov A, 2018. Engineering bacterial vortex lattice
via direct laser lithography, Nat. Commun. 9: 4486
Noll N, Streichan SJ, and Boris I. Shraiman BI, 2020. Method for Image-Based Inference of Internal
Stress in Epithelial Tissues, Phys. Rev. X 10: 011072
Noor N, Shapira A, Edri R, Gal I, Wertheim L, and Dvir T, 2019. 3D Printing of Personalized Thick
and Perfusable Cardiac Patches and Hearts, Adv. Sci. 6: 1900344
Notbohm J, Banerjee S, Utuje KJ, Gweon B, Jang H, Park Y, Shin J, Butler JP, Fredberg JJ, and
Marchetti MC, 2016. Cellular contraction and polarization drive collective cellular motion, Biophys. J. 110: 2729–2738
