« Substrate catalysis enhances single-enzyme diffusion », Journal of the American Chemical Society, vol. 132, no 7, , p. 2110–1 (PMID20108965, PMCID2832858, DOI10.1021/ja908773a)
« Enzyme molecules as nanomotors », Journal of the American Chemical Society, vol. 135, no 4, , p. 1406–14 (PMID23308365, DOI10.1021/ja3091615)
« Catalytic nanomotors: autonomous movement of striped nanorods », Journal of the American Chemical Society, vol. 126, no 41, , p. 13424–31 (PMID15479099, DOI10.1021/ja047697z)
« Autonomous nanomotor based on copper-platinum segmented nanobattery », Journal of the American Chemical Society, vol. 133, no 50, , p. 20064–7 (PMID21961523, DOI10.1021/ja2082735)
« Coordination of groups of mobile autonomous agents using nearest neighbor rules », IEEE Transactions on Automatic Control, vol. 48, no 6, , p. 988–1001 (DOI10.1109/TAC.2003.812781, CiteSeerx10.1.1.128.5326) convergence proofs for the SPP model.
« Modelling collective cell motion: are on- and off-lattice models equivalent? », Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences, vol. 375, no 1807, , p. 20190378 (PMID32713300, PMCID7423376, DOI10.1098/rstb.2019.0378)
« Power-law distribution of landslides in an experiment on the erosion of a granular pile », Journal of Physics A: Mathematical and General, vol. 27, no 20, , L757–L763 (DOI10.1088/0305-4470/27/20/001, Bibcode1994JPhA...27L.757S)
« Key behavioural factors in a self-organised fish school model. », Annales Zoologici Fennici, Finnish Zoological and Botanical Publishing Board., vol. 45, no 5, , p. 415–428 (DOI10.5735/086.045.0505, S2CID16940460, lire en ligne [archive du ])
« Power-law distribution of landslides in an experiment on the erosion of a granular pile », Journal of Physics A: Mathematical and General, vol. 27, no 20, , L757–L763 (DOI10.1088/0305-4470/27/20/001, Bibcode1994JPhA...27L.757S)
« Substrate catalysis enhances single-enzyme diffusion », Journal of the American Chemical Society, vol. 132, no 7, , p. 2110–1 (PMID20108965, PMCID2832858, DOI10.1021/ja908773a)
« Enzyme molecules as nanomotors », Journal of the American Chemical Society, vol. 135, no 4, , p. 1406–14 (PMID23308365, DOI10.1021/ja3091615)
« Catalytic nanomotors: autonomous movement of striped nanorods », Journal of the American Chemical Society, vol. 126, no 41, , p. 13424–31 (PMID15479099, DOI10.1021/ja047697z)
« Autonomous nanomotor based on copper-platinum segmented nanobattery », Journal of the American Chemical Society, vol. 133, no 50, , p. 20064–7 (PMID21961523, DOI10.1021/ja2082735)
« Modelling collective cell motion: are on- and off-lattice models equivalent? », Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences, vol. 375, no 1807, , p. 20190378 (PMID32713300, PMCID7423376, DOI10.1098/rstb.2019.0378)
« Coordination of groups of mobile autonomous agents using nearest neighbor rules », IEEE Transactions on Automatic Control, vol. 48, no 6, , p. 988–1001 (DOI10.1109/TAC.2003.812781, CiteSeerx10.1.1.128.5326) convergence proofs for the SPP model.
« Key behavioural factors in a self-organised fish school model. », Annales Zoologici Fennici, Finnish Zoological and Botanical Publishing Board., vol. 45, no 5, , p. 415–428 (DOI10.5735/086.045.0505, S2CID16940460, lire en ligne [archive du ])
« Key behavioural factors in a self-organised fish school model. », Annales Zoologici Fennici, Finnish Zoological and Botanical Publishing Board., vol. 45, no 5, , p. 415–428 (DOI10.5735/086.045.0505, S2CID16940460, lire en ligne [archive du ])
« Key behavioural factors in a self-organised fish school model. », Annales Zoologici Fennici, Finnish Zoological and Botanical Publishing Board., vol. 45, no 5, , p. 415–428 (DOI10.5735/086.045.0505, S2CID16940460, lire en ligne [archive du ])