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恒河猴(猕猴)的创新、抑制与灵活性

Innovation, Inhibition and Flexibility in Rhesus Macaques (Macaca mulatta).

作者信息

Hubbard Josephine, McCowan Brenda

机构信息

Animal Behavior Graduate Group, University of California Davis, Davis, California, USA.

School of Veterinary Medicine, Department of Population Health & Reproduction, University of California Davis, Davis, California, USA.

出版信息

Am J Primatol. 2025 Apr;87(4):e70027. doi: 10.1002/ajp.70027.

Abstract

Innovation is a key component of behavioral flexibility. When individuals are presented with novel problems, their ability to behave flexibly often relies upon their exploratory tendencies, motivational states and intrinsic traits. Studies of repeated innovation pose additional benefits to understand mechanisms of behavioral flexibility, including measuring persistence, exploration and inhibitory control when learned solutions are blocked. The multi-access box (MAB) paradigm tests repeated innovation without prior training and minimal habituation. We tested fifty adult captive female rhesus macaques (Macaca mulatta) with a MAB to evaluate the role of individual traits on repeated innovation and explore the relationship between inhibitory responses and innovation. We found that exploratory diversity positively predicted repeated innovation, as has been reported for previous studies. We also found that traits such as age and personality influenced innovation, where younger individuals and those that scored high on nervousness had higher innovation scores. However, we did not find any relationship between inhibitory responses and innovation. Our study provides the first assessment of repeated innovation in rhesus macaques using a MAB design and highlights the importance of individual traits for repeated innovation in this species.

摘要

创新是行为灵活性的关键组成部分。当个体面临新问题时,他们灵活行为的能力通常依赖于他们的探索倾向、动机状态和内在特质。对重复创新的研究为理解行为灵活性的机制带来了额外的益处,包括在习得的解决方案受阻时测量坚持性、探索和抑制控制。多通道箱(MAB)范式在没有预先训练和最小化习惯化的情况下测试重复创新。我们用MAB对50只成年圈养雌性恒河猴(猕猴)进行了测试,以评估个体特质对重复创新的作用,并探讨抑制反应与创新之间的关系。我们发现,探索多样性积极地预测了重复创新,正如先前研究中所报道的那样。我们还发现,年龄和个性等特质会影响创新,较年轻的个体以及在神经质方面得分高的个体具有更高的创新分数。然而,我们没有发现抑制反应与创新之间存在任何关系。我们的研究首次使用MAB设计对恒河猴的重复创新进行了评估,并强调了个体特质对该物种重复创新的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9c6/11955746/6ea1b10211f8/AJP-87-e70027-g004.jpg

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