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Fissioning minimizes ranging costs in spider monkeys: a multiple-level approach

机译:裂变将蜘蛛猴的测距成本降至最低:多层次方法

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The adjustment to deal with intragroup food competition is probably the most plausible explanation of high levels of fission-fusion dynamics. However, studies did not always support expected relations between food availability, ranging costs, and subgroup size. We used several levels of analysis differing in the time and spatial scale in order to investigate this explanation in spider monkeys. In our study, subgroups were larger when food availability was higher across most levels of analyses used. We also found a fine-scale adjustment: compared to the food patch previously visited, spider monkeys traveled to larger patches just after fusions. This was not without an immediate travel cost: the interpatch distance and travel time after a fusion were longer than that before the fusion. This rapid adjustment shows the flexibility that fission-fusion dynamics can offer. Spider monkeys are in large subgroups only when food conditions are favorable, as evidenced by the fact that at all the other time-scale levels larger subgroups did not experience greater ranging costs than smaller subgroups. Our results indicate that on the whole spider monkeys successfully minimize ranging costs by fission and fusion of subgroups.
机译:应对群体内部食物竞争的调整可能是高水平的裂变融合动力学的最合理解释。但是,研究并不总是支持食物供应,范围成本和亚组规模之间的预期关系。为了研究蜘蛛猴中的这种解释,我们使用了在时间和空间尺度上不同的几种分析级别。在我们的研究中,在大多数分析中,当食物的可获得性较高时,亚组就更大。我们还发现了一个精细的调整:与先前访问的食物补丁相比,蜘蛛猴在融合后就移动到了更大的补丁。这并非没有立即的旅行费用:融合之后的插补距离和旅行时间比融合之前更长。这种快速的调整显示了裂变融合动力学可以提供的灵活性。蜘蛛猴只有在食物条件有利的情况下才属于较大的亚组,这一事实证明,在所有其他时间尺度上,较大的亚组没有比较小的亚组承受更大的测距费用。我们的结果表明,总体上,蜘蛛猴通过亚组的裂变和融合成功地将测距成本最小化。

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