
Shweta Bansal
Provost’s Distinguished Associate Professor of Biology
Georgetown University Continue Reading Shweta Bansal
Density-dependent network structuring within and across wild animal systems.
Theory predicts that high population density leads to more strongly connected spatial and social networks, but how local density drives individuals' positions within their networks is unclear. This gap reduces our ability to understand and predict density-dependent processes. Here we show that density drives greater network connectedness at the scale of individuals within wild animal populations. Across 36 datasets of spatial and social behaviour in >58,000 individual animals, spanning 30 species of fish, reptiles, birds, mammals and insects, 80% of systems exhibit strong positive relationships between local density and network centrality. However, >80% of relationships are nonlinear and 75% are shallower at higher values, indicating saturating trends that probably emerge as a result of demographic and behavioural processes that counteract density's effects. These are stronger and less saturating in spatial compared with social networks, as individuals become disproportionately spatially connected rather than socially connected at higher densities. Consequently, ecological processes that depend on spatial connections are probably more density dependent than those involving social interactions. These findings suggest fundamental scaling rules governing animal social dynamics, which could help to predict network structures in novel systems.
Nature ecology & evolution
Albery GF, Becker DJ, Firth JA, De Moor D, Ravindran S, Silk M, Sweeny AR, Vander Wal E, Webber Q, Allen B, Babayan SA, Barve S, Begon M, Birtles RJ, Block TA, Block BA, Bradley JE, Budischak S, Buesching C, Burthe SJ, Carlisle AB, Caselle JE, Cattuto C, Chaine AS, Chapple TK, Cheney BJ, Clutton-Brock T, Collier M, Curnick DJ, Delahay RJ, Farine DR, Fenton A, Ferretti F, Feyrer L, Fielding H, Foroughirad V, Frere C, Gardner MG, Geffen E, Godfrey SS, Graham AL, Hammond PS, Henrich M, Heurich M, Hopwood P, Ilany A, Jackson JA, Jackson N, Jacoby DMP, Jacoby AM, Ježek M, Kirkpatrick L, Klamm A, Klarevas-Irby JA, Knowles S, Koren L, Krzyszczyk E, Kusch JM, Lambin X, Lane JE, Leirs H, Leu ST, Lyon BE, MacDonald DW, Madsen AE, Mann J, Manser M, Mariën J, Massawe A, McDonald RA, Morelle K, Mourier J, Newman C, Nussear K, Nyaguthii B, Ogino M, Ozella L, Packer C, Papastamatiou YP, Paterson S, Payne E, Pedersen AB, Pemberton JM, Pinter-Wollman N, Planes S, Raulo A, Rodríguez-Muñoz R, Rudd L, Sabuni C, Sah P, Schallert RJ, Sheldon BC, Shizuka D, Sih A, Sinn DL, Sluydts V, Spiegel O, Telfer S, Thomason CA, Tickler DM, Tregenza T, VanderWaal K, Walmsley S, Walters EL, Wanelik KM, Whitehead H, Wielgus E, Wilson-Aggarwal J, Wohlfeil C, Bansal S. (2025). Density-dependent network structuring within and across wild animal systems. Nature ecology & evolution

Provost’s Distinguished Associate Professor of Biology
Georgetown University Continue Reading Shweta Bansal