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首页> 外文期刊>Animal behaviour >Short-term Effects Of An Acute Exposure To Predatory Cues On The Spatial Working And Reference Memory Performance In A Subterranean Rodent
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Short-term Effects Of An Acute Exposure To Predatory Cues On The Spatial Working And Reference Memory Performance In A Subterranean Rodent

机译:急性接触掠食性线索对地下啮齿动物空间工作和参考记忆性能的短期影响

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摘要

Spatial memory is important for animals to achieve successful foraging, reproduction, territorial defence and predator avoidance in structurally complex habitats. This cognitive function has been shown to be affected under stress conditions in surface-dwelling rodents. Here we used the Tala's tuco-tuco, Ctenomys talarum, a subterranean rodent that inhabits complex burrow systems, as a study model. This species has a highly developed spatial ability and individuals are regularly exposed to predatory stress while foraging on the surface. We examined the consequences of a single and brief exposure to predatory cues on the spatial working and reference memory performance. We trained wild-caught individuals (32 males, 36 females) in a six-arm radial maze (spatial working memory task) or a longitudinal maze (spatial reference memory task). Once the animals reached a memory performance criterion, they were exposed to a direct predatory cue (immobilization), an indirect predatory cue (cat urine odour) or both cues combined, and their memory performance was evaluated. Exposure to direct and combined predatory cues impaired spatial reference memory, increasing both the latency to achieve the goal and the number of errors during the test. Combined presentation of both predatory cues also negatively affected spatial working memory, but only for latency to achieve the goal. Our results suggest that use of spatial working memory during a predatory attack on the surface allows C. talarum to relocate burrow entries rapidly and hence increases survival probabilities.
机译:空间记忆对于动物在结构复杂的栖息地中成功进行觅食,繁殖,领土防御和避免捕食动物至关重要。已经显示这种认知功能在居住在表面的啮齿动物的应激条件下会受到影响。在这里,我们使用了塔拉的tuco-tuco,Ctenomys talarum,一种居住在复杂的洞穴系统中的地下啮齿动物,作为研究模型。该物种具有高度发达的空间能力,个体在觅食时会定期遭受掠食性胁迫。我们研究了一次和短暂接触掠食性线索对空间工作和参考记忆性能的影响。我们在六臂径向迷宫(空间工作记忆任务)或纵向迷宫(空间参考记忆任务)中训练了野外捕获的个体(男性32位,女性36位)。一旦动物达到记忆表现标准,就将它们暴露于直接掠食性线索(固定化),间接掠食性线索(猫尿味)或两种线索的结合,并评估它们的记忆表现。暴露于直接的和联合的掠食性线索会损害空间参考记忆,从而增加达到目标的等待时间和测试期间的错误数量。两种掠夺性线索的组合表示也对空间工作记忆产生负面影响,但仅是为了实现目标而需要的等待时间。我们的结果表明,在表面掠食性攻击期间使用空间工作记忆可使塔拉克鲁维酵母快速重新定位洞穴入口,从而提高了生存概率。

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