野生狮尾狒(Theropithecus gelada)双足食草行为的手动偏好、表现和灵巧性。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-02-01 DOI:10.1002/ajp.23602
Valentina Truppa, Marco Gamba, Roberta Togliatto, Marta Caselli, Anna Zanoli, Elisabetta Palagi, Ivan Norscia
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摘要

我们评估了野生狮尾狒这种高度专业化的陆生食草动物是否在双手刨草行为上存在侧向性。根据文献资料,我们预计在这些灵长类动物中,吃草时复杂的运动会有利于出现群体水平的手部偏向。此外,我们还根据对几个个体的系统观察,描述了明胶的徒手行为。我们的研究小组包括28只个体,它们属于经常在埃塞俄比亚昆迪高原自由觅食的狮尾狒种群。我们拍摄了猴子吃草时的情景,并对它们的手部偏好和表现进行了编码。与右手相比,明胶猴每秒用左手(LH)做更多的采摘动作,并且在开始和结束采摘时都更喜欢用左手。此外,两只手的节奏动作有明显的等时性倾向。最后,猿猴使用有力的垫对垫精确抓握、手部运动和复合抓握来摘取和收集草叶,这被认为是灵长类动物中最先进的手工技能。LH的主导作用表明,右半球在调节猿类的双臂采草行为方面具有优势。来自手部的触觉输入和/或有节奏的手部运动可能有助于解释这种侧向模式。我们的研究结果突显了采用多种侧向性测量方法来研究徒手侧向性的重要性。此外,在研究灵长类的徒手侧向性和灵巧性进化时,加快徒手觅食执行时间的需要可能是另一个重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Manual preference, performance, and dexterity for bimanual grass-feeding behavior in wild geladas (Theropithecus gelada)

We assessed whether wild geladas, highly specialized terrestrial grass eaters, are lateralized for bimanual grass-plucking behavior. According to the literature, we expected that complex motor movements in grass feeding would favor the emergence of a population-level hand bias in these primates. In addition, we described geladas' manual behavior based on systematic observations of several individuals. Our study group included 28 individuals belonging to a population of free-ranging geladas frequenting the Kundi plateau, Ethiopia. We filmed monkeys while feeding on grass, and hand preference and performance were coded. Geladas performed more plucking movements per second with their left hand (LH) compared to the right one and preferred their LH both to start and finish collection bouts. Also, the rhythmic movements of each hand had a significant tendency toward isochrony. Finally, geladas used forceful pad-to-pad precision grips, in-hand movements, and compound grips to pluck and collect grass blades, considered the most advanced manual skills in primate species. The LH's leading role suggests an advantage of the right hemisphere in regulating geladas' bimanual grass-feeding behavior. The tactile input from the hands and/or rhythmic hand movements might contribute to explaining this pattern of laterality. Our findings highlighted the importance of adopting multiple laterality measures to investigate manual laterality. Moreover, the need to speed up the execution time of manual foraging might be a further important factor in studying the evolution of manual laterality and dexterity in primates.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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