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      Extended spider cognition

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          Abstract

          There is a tension between the conception of cognition as a central nervous system (CNS) process and a view of cognition as extending towards the body or the contiguous environment. The centralised conception requires large or complex nervous systems to cope with complex environments. Conversely, the extended conception involves the outsourcing of information processing to the body or environment, thus making fewer demands on the processing power of the CNS. The evolution of extended cognition should be particularly favoured among small, generalist predators such as spiders, and here, we review the literature to evaluate the fit of empirical data with these contrasting models of cognition. Spiders do not seem to be cognitively limited, displaying a large diversity of learning processes, from habituation to contextual learning, including a sense of numerosity. To tease apart the central from the extended cognition, we apply the mutual manipulability criterion, testing the existence of reciprocal causal links between the putative elements of the system. We conclude that the web threads and configurations are integral parts of the cognitive systems. The extension of cognition to the web helps to explain some puzzling features of spider behaviour and seems to promote evolvability within the group, enhancing innovation through cognitive connectivity to variable habitat features. Graded changes in relative brain size could also be explained by outsourcing information processing to environmental features. More generally, niche-constructed structures emerge as prime candidates for extending animal cognition, generating the selective pressures that help to shape the evolving cognitive system.

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          Shrinking body size as an ecological response to climate change

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            Collective cognition in animal groups.

            The remarkable collective action of organisms such as swarming ants, schooling fish and flocking birds has long captivated the attention of artists, naturalists, philosophers and scientists. Despite a long history of scientific investigation, only now are we beginning to decipher the relationship between individuals and group-level properties. This interdisciplinary effort is beginning to reveal the underlying principles of collective decision-making in animal groups, demonstrating how social interactions, individual state, environmental modification and processes of informational amplification and decay can all play a part in tuning adaptive response. It is proposed that important commonalities exist with the understanding of neuronal processes and that much could be learned by considering collective animal behavior in the framework of cognitive science.
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              The extended evolutionary synthesis: its structure, assumptions and predictions.

              Scientific activities take place within the structured sets of ideas and assumptions that define a field and its practices. The conceptual framework of evolutionary biology emerged with the Modern Synthesis in the early twentieth century and has since expanded into a highly successful research program to explore the processes of diversification and adaptation. Nonetheless, the ability of that framework satisfactorily to accommodate the rapid advances in developmental biology, genomics and ecology has been questioned. We review some of these arguments, focusing on literatures (evo-devo, developmental plasticity, inclusive inheritance and niche construction) whose implications for evolution can be interpreted in two ways—one that preserves the internal structure of contemporary evolutionary theory and one that points towards an alternative conceptual framework. The latter, which we label the 'extended evolutionary synthesis' (EES), retains the fundaments of evolutionary theory, but differs in its emphasis on the role of constructive processes in development and evolution, and reciprocal portrayals of causation. In the EES, developmental processes, operating through developmental bias, inclusive inheritance and niche construction, share responsibility for the direction and rate of evolution, the origin of character variation and organism-environment complementarity. We spell out the structure, core assumptions and novel predictions of the EES, and show how it can be deployed to stimulate and advance research in those fields that study or use evolutionary biology.
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                Author and article information

                Contributors
                +44 7470 128030 , japyassu@ufba.br
                Journal
                Anim Cogn
                Anim Cogn
                Animal Cognition
                Springer Berlin Heidelberg (Berlin/Heidelberg )
                1435-9448
                1435-9456
                7 February 2017
                7 February 2017
                2017
                : 20
                : 3
                : 375-395
                Affiliations
                [1 ]ISNI 0000 0004 0372 8259, GRID grid.8399.b, Biology Institute, , Federal University of Bahia, ; Rua Barão de Jeremoabo s/n, Campus de Ondina, Salvador, Bahia 40170-115 Brazil
                [2 ]ISNI 0000 0001 0721 1626, GRID grid.11914.3c, Centre for Biodiversity, School of Biology, , University of St Andrews, ; Harold Mitchell Building, St Andrews, Fife UK KY16 9TH
                Author information
                http://orcid.org/0000-0002-9788-5460
                Article
                1069
                10.1007/s10071-017-1069-7
                5394149
                28176133
                7f4dd525-e7eb-4241-a33d-13c8ec0160f7
                © The Author(s) 2017

                Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License ( http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.

                History
                : 22 April 2016
                : 20 December 2016
                : 1 January 2017
                Funding
                Funded by: FundRef http://dx.doi.org/10.13039/501100003593, Conselho Nacional de Desenvolvimento Científico e Tecnológico;
                Award ID: PDE232691/2014-2
                Award Recipient :
                Categories
                Review
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                © Springer-Verlag Berlin Heidelberg 2017

                Animal science & Zoology
                extended cognition,modular cognition,web building,evolvability,niche construction

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