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犬对机器狗复制品不对称摇尾行为的反应。

Behavioural responses of dogs to asymmetrical tail wagging of a robotic dog replica.

机构信息

University of Victoria, BC, Canada.

出版信息

Laterality. 2011 Mar;16(2):129-35. doi: 10.1080/13576500903386700. Epub 2010 Jan 19.

Abstract

Recent evidence suggests that bilateral asymmetry in the amplitude of tail wagging of domestic dogs (Canis familiaris) is associated with approach (right wag) versus withdrawal (left wag) motivation and may be the by-product of hemispheric dominance. We consider whether such asymmetry in motion of the tail, a crucial appendage in intra-specific communication in all canids, provides visual information to a conspecific leading to differential behaviour. To evaluate this, we experimentally investigated the approach behaviour of free-ranging dogs to the asymmetric tail wagging of a life-size robotic dog replica. Our data, involving 452 separate interactions, showed a significantly greater proportion of dogs approaching the model continuously without stopping when the tail wagged to the left, compared with a right wag, which was more likely to yield stops. While the results indicate that laterality of a wagging tail provides behavioural information to conspecifics, the responses are not readily integrated into the predicted behaviour based on hemispheric dominance.

摘要

最近的证据表明,家犬(Canis familiaris)尾巴摆动幅度的双侧不对称性与接近(右侧摆动)与回避(左侧摆动)的动机有关,并且可能是半球优势的副产品。我们考虑这种尾巴运动的不对称性,它是所有犬科动物种内交流的关键附属物,是否为同种动物提供了导致不同行为的视觉信息。为了评估这一点,我们通过实验研究了自由放养的狗对真人大小的机器狗复制品的不对称尾巴摆动的接近行为。我们的数据涉及 452 次单独的互动,结果显示,与右侧摆动相比,当尾巴向左摆动时,狗连续不断地接近模型的比例明显更高,而右侧摆动则更有可能导致狗停下来。虽然结果表明,摇摆尾巴的偏侧性为同种动物提供了行为信息,但这些反应并没有根据半球优势轻易地整合到预测的行为中。

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