Records |
Author |
Romero, T.; Aureli, F. |
Title |
Reciprocity of support in coatis (Nasua nasua) |
Type |
Journal Article |
Year |
2008 |
Publication |
Journal of Comparative Psychology |
Abbreviated Journal |
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Volume |
122 |
Issue |
1 |
Pages |
19-25 |
Keywords |
*Animal Aggressive Behavior; *Animal Social Behavior; *Mammals; Reciprocity |
Abstract |
Primate sociality has received much attention and its complexity has been viewed as a driving force for the evolution of cognitive abilities. Improved analytic techniques have allowed primate researchers to reveal intricate social networks based on the exchange of cooperative acts and services. Although nonprimates are known to show similar behavior (e.g., cooperative hunting, food sharing, coalitions) there seems a consensus that social life is less complex than in primates. Here the authors present the first group-level analysis of reciprocity of social interactions in a social carnivore, the ring-tailed coati (<xh:i xmlns:search=“http://marklogic.com/appservices/search” xmlns=“http://apa.org/pimain” xmlns:xsi=“http://www.w3.org/2001/XMLSchema-instance” xmlns:xh=“http://www.w3.org/1999/xhtml”>Nasua nasua</xh:i>). The authors found that support in aggressive conflicts is a common feature in coatis and that this behavior is reciprocally exchanged in a manner seemingly as complex as in primates. Given that reciprocity correlations persisted after controlling for the effect of spatial association and subunit membership, some level of scorekeeping may be involved. Further studies will be needed to confirm our findings and understand the mechanisms underlying such reciprocity, but our results contribute to the body of work that has begun to challenge primate supremacy in social complexity and cognition. (PsycINFO Database Record (c) 2012 APA, all rights reserved) |
Address |
Romero, Teresa: Living Links, Yerkes National Primate Research Center, Emory University, 954 N. Gatewood Road, Atlanta, GA, US, 30329, mromer2@emory.edu |
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American Psychological Association |
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1939-2087(Electronic);0735-7036(Print) |
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no |
Call Number |
Equine Behaviour @ team @ 2008-01944-003 |
Serial |
5812 |
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Author |
de Waal, F.B.M.; Aureli, F. |
Title |
Consolation, reconciliation, and a possible cognitive difference between macaque and chimpanzee |
Type |
Book Chapter |
Year |
1996 |
Publication |
Reaching into Thought: The Minds of the Great Apes |
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Volume |
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Issue |
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Pages |
80–110. |
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Abstract |
Russon,A.E.; Bard, K.A.; Parker, S.T. |
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Publisher |
Cambridge University Press |
Place of Publication |
Cambridge |
Editor |
Russon,A.E.; Bard, K.A.; Parker, S.T. |
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no |
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Equine Behaviour @ team @ |
Serial |
5060 |
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Author |
Ramos-Fernández, G.; Boyer, D.; Aureli, F.; Vick, L. |
Title |
Association networks in spider monkeys (Ateles geoffroyi) |
Type |
Journal Article |
Year |
2009 |
Publication |
Behavioral Ecology and Sociobiology |
Abbreviated Journal |
Behav. Ecol. Sociobiol. |
Volume |
63 |
Issue |
7 |
Pages |
999-1013-1013 |
Keywords |
Biomedical and Life Sciences |
Abstract |
We use two novel techniques to analyze association patterns in a group of wild spider monkeys (Ateles geoffroyi) studied continuously for 8 years. Permutation tests identified association rates higher or lower than chance expectation, indicating active processes of companionship and avoidance as opposed to passive aggregation. Network graphs represented individual adults as nodes and their association rates as weighted edges. Strength and eigenvector centrality (a measure of how strongly linked an individual is to other strongly linked individuals) were used to quantify the particular role of individuals in determining the network's structure. Female–female dyads showed higher association rates than any other type of dyad, but permutation tests revealed that these associations cannot be distinguished from random aggregation. Females formed tightly linked clusters that were stable over time, with the exception of immigrant females who showed little association with any adult in the group. Eigenvector centrality was higher for females than for males. Adult males were associated mostly among them, and although their strength of association with others was lower than that of females, their association rates revealed a process of active companionship. Female–male bonds were weaker than those between same-sex pairs, with the exception of those involving young male adults, who by virtue of their strong connections both with female and male adults, appear as temporary brokers between the female and male clusters of the network. This analytical framework can serve to develop a more complete explanation of social structure in species with high levels of fission–fusion dynamics. |
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Springer Berlin / Heidelberg |
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ISSN |
0340-5443 |
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no |
Call Number |
Equine Behaviour @ team @ |
Serial |
5220 |
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Author |
MacLean, E.; Matthews, L.; Hare, B.; Nunn, C.; Anderson, R.; Aureli, F.; Brannon, E.; Call, J.; Drea, C.; Emery, N.; Haun, D.; Herrmann, E.; Jacobs, L.; Platt, M.; Rosati, A.; Sandel, A.; Schroepfer, K.; Seed, A.; Tan, J.; van Schaik, C.; Wobber, V. |
Title |
How does cognition evolve? Phylogenetic comparative psychology |
Type |
Journal Article |
Year |
2012 |
Publication |
Animal Cognition |
Abbreviated Journal |
Anim. Cogn. |
Volume |
15 |
Issue |
2 |
Pages |
223-238 |
Keywords |
Biomedizin & Life Sciences |
Abstract |
Now more than ever animal studies have the potential to test hypotheses regarding how cognition evolves. Comparative psychologists have developed new techniques to probe the cognitive mechanisms underlying animal behavior, and they have become increasingly skillful at adapting methodologies to test multiple species. Meanwhile, evolutionary biologists have generated quantitative approaches to investigate the phylogenetic distribution and function of phenotypic traits, including cognition. In particular, phylogenetic methods can quantitatively (1) test whether specific cognitive abilities are correlated with life history (e.g., lifespan), morphology (e.g., brain size), or socio-ecological variables (e.g., social system), (2) measure how strongly phylogenetic relatedness predicts the distribution of cognitive skills across species, and (3) estimate the ancestral state of a given cognitive trait using measures of cognitive performance from extant species. Phylogenetic methods can also be used to guide the selection of species comparisons that offer the strongest tests of a priori predictions of cognitive evolutionary hypotheses (i.e., phylogenetic targeting). Here, we explain how an integration of comparative psychology and evolutionary biology will answer a host of questions regarding the phylogenetic distribution and history of cognitive traits, as well as the evolutionary processes that drove their evolution. |
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Springer Berlin / Heidelberg |
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1435-9448 |
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Call Number |
Equine Behaviour @ team @ |
Serial |
5604 |
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Author |
Schino, G.; Aureli, F. |
Title |
Reciprocity in group-living animals: partner control versus partner choice |
Type |
Journal Article |
Year |
2016 |
Publication |
Biological Reviews |
Abbreviated Journal |
Biol Rev |
Volume |
92 |
Issue |
2 |
Pages |
665-672 |
Keywords |
cooperation; reciprocity; partner control; partner choice; proximate mechanisms |
Abstract |
ABSTRACT Reciprocity is probably the most debated of the evolutionary explanations for cooperation. Part of the confusion surrounding this debate stems from a failure to note that two different processes can result in reciprocity: partner control and partner choice. We suggest that the common observation that group-living animals direct their cooperative behaviours preferentially to those individuals from which they receive most cooperation is to be interpreted as the result of the sum of the two separate processes of partner control and partner choice. We review evidence that partner choice is the prevalent process in primates and propose explanations for this pattern. We make predictions that highlight the need for studies that separate the effects of partner control and partner choice in a broader variety of group-living taxa. |
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Wiley/Blackwell (10.1111) |
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ISSN |
1464-7931 |
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Notes |
doi: 10.1111/brv.12248 |
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Call Number |
Equine Behaviour @ team @ |
Serial |
6411 |
Permanent link to this record |