216
References
Peruani F, Schimansky-Geier L, and Bär M, 2010. Cluster dynamics and cluster size distributions
in systems of self-propelled particles, Eur. Phys. J. Spec. Top. 191: 173–185
Peshkov A, Bertin E, Ginelli F, and Chaté H, 2014. Boltzmann-Ginzburg-Landau approach for
continuous descriptions of generic Vicsek-like models, Eur. Phys. J. Spec. Top. 223: 1315–1344
Pieuchot L, . . . , Anselme K (16 coauthors), 2018. Curvotaxis directs cell migration through cellscale curvature landscapes, Nat. Commun. 9: 3995
Pikovsky A, Rosenblum M, and Kurths J, 2001. Synchronization. A universal concept in nonlinear
sciences, Cambridge University Press
Pilz da Cunha M, Debije MG, and Schenning APHJ, 2020. Bioinspired light-driven soft robots
based on liquid crystal polymers, Chem. Soc. Rev. 49; 6568–6578
Pismen LM, 1999. Vortices in nonlinear fields, Oxford University Press
Pismen LM, 2006. Patterns and Interfaces in Dissipative Dynamics, Springer, Berlin
Pismen LM, 2013. Dynamics of defects in an active nematic layer, Phys. Rev. E 88: 050502(R)
Pismen LM and Simakov DSA, 2011. Genesis of two-dimensional patterns in cross-gradient fields,
Phys. Rev. E 84: 061917
Pismen LM, 2014. Physicists probing active media: What is the measure of success? Eur. Phys. J.
Spec. Top. 223: 1243–1246
Plygawko AT, Kan S, and Campbell K, 2020. Epithelial-mesenchymal plasticity: emerging parallels
between tissue morphogenesis and cancer metastasis, Phil. Trans. R. Soc. B 375: 20200087
Pohl O and Stark H, 2014. Dynamic Clustering and Chemotactic Collapse of Self-Phoretic Active
Particles, Phys. Rev. Lett. 112: 238303
Popescu MN, Uspal WE, Eskandari Z, and Dietrich S, 2018. Effective squirmer models for selfphoretic chemically active spherical colloids, Eur. Phys. J. E 41: 145
Popescu MN, 2020. Chemically Active Particles: From One to Few on the Way to Many, Langmuir
36: 6861–6870
Poujade M, Grasland-Mongrain E, Hertzog A, Jouanneau J, Chavrier P, Ladoux B, Buguin A, and
Silberzan P, 2007. Collective migration of an epithelial monolayer in response to a model wound,
Proc. Natl. Acad. Sci. USA 104: 15988–15993
Prost J, Jülicher F and Joanny J-F, 2015. Active gel physics, Nat. Phys. 11: 111–117
Purcell EM, 1977. Life at low Reynolds number, Am. J. Phys. 45: 3–11
Qiu T, Lee TC, Mark AG, Morozov KI, Munster R, Mierka O, Turek S, Leshansky AM, and Fischer
P, 2014. Swimming by reciprocal motion at low Reynolds number, Nat. Commun. 5: 5119
Quincke G, 1896. Uber Rotationen im Constanten Electrischen Felde, Ann. Phys. Chem. 59: 417
Quinlan ME, 2016. Cytoplasmic Streaming in the Drosophila Oocyte, Annu. Rev. Cell Dev. Biol.
32: 173–195
Radszuweit M, Engel H, and Bär M, 2014. An Active Poroelastic Model for Mechanochemical
Patterns in Protoplasmic Droplets of Physarum polycephalum, PLoS One 9: e99220
Rafiq NBM, . . . , Bershadsky AD (11 coauthors), 2019. A mechano-signalling network linking
microtubules, myosin IIA filaments and integrin-based adhesions, Nat. Mater. 18: 638–649
Ramaswamy S and Simha RA, 2006. The mechanics of active matter: Broken-symmetry hydrodynamics of motile particles and granular layers, Solid State Comm. 139: 617–622
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