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Schülke, O.; Bhagavatula, J.; Vigilant, L.; Ostner, J. |
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Title |
Social Bonds Enhance Reproductive Success in Male Macaques |
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Journal Article |
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2010 |
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Current Biology |
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Curr. Biol. |
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20 |
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24 |
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2207-2210 |
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Summary For animals living in mixed-sex social groups, females who form strong social bonds with other females live longer and have higher offspring survival [1–3]. These bonds are highly nepotistic, but sometimes strong bonds may also occur between unrelated females if kin are rare [2, 3] and even among postdispersal unrelated females in chimpanzees and horses [4, 5]. Because of fundamental differences between the resources that limit reproductive success in females (food and safety) and males (fertilizations), it has been predicted that bonding among males should be rare and found only for kin and among philopatric males [6] like chimpanzees [7–9]. We studied social bonds among dispersing male Assamese macaques (Macaca assamensis) to see whether males in multimale groups form differentiated social bonds and whether and how males derive fitness benefits from close bonds. We found that strong bonds were linked to coalition formation, which in turn predicted future social dominance, which influenced paternity success. The strength of males' social bonds was directly linked to the number of offspring they sired. Our results show that differentiated social relationships exert an important influence on the breeding success of both sexes that transcends contrasts in relatedness. |
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0960-9822 |
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Equine Behaviour @ team @ |
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5811 |
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Seed AM; Tebbich S; Emery NJ; Clayton NS |
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Title |
Investigating physical cognition in rooks (Corvus frugilegus) |
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Journal Article |
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Year |
2006 |
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Current Biology |
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Curr. Biol. |
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16 |
Issue |
7 |
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697-701 |
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Sysneuro |
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Summary Although animals (particularly tool-users) are capable of solving physical tasks in the laboratory and the degree to which they understand them in terms of their underlying physical forces is a matter of contention. Here, using a new paradigm, the two-trap tube task, we report the performance of non-tool-using rooks. In contrast to the low success rates of previous studies using trap-tube problems , , and , seven out of eight rooks solved the initial task, and did so rapidly. Instead of the usual, conceptually flawed control, we used a series of novel transfer tasks to test for understanding. All seven transferred their solution across a change in stimuli. However, six out of seven were unable to transfer to two further tasks, which did not share any one visual constant. One female was able to solve these further transfer tasks. Her result is suggestive evidence that rooks are capable of sophisticated physical cognition, if not through an understanding of unobservable forces and , perhaps through rule abstraction. Our results highlight the need to investigate cognitive mechanisms other than causal understanding in studying animal physical cognition. |
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Equine Behaviour @ team @ |
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3076 |
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Chappell J |
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Title |
Avian cognition: understanding tool use |
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Journal Article |
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2006 |
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Current Biology |
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Curr. Biol. |
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16 |
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244 |
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Equine Behaviour @ team @ |
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3058 |
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