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犬类与人类互动中时间模式的检测。

Detection of temporal patterns in dog-human interaction.

作者信息

Kerepesi A, Jonsson G K, Miklósi A, Topál J, Csányi V, Magnusson M S

机构信息

Comparative Ethology Research Group, Hungarian Academy of Sciences, Budapest, Hungary.

出版信息

Behav Processes. 2005 Aug 31;70(1):69-79. doi: 10.1016/j.beproc.2005.04.006.

Abstract

A new time structure model and pattern detection procedures developed by (Magnusson, M.S., 1996. Hidden real-time patterns in intra- and inter-individual behaviour description and detection. Eur. J. Psychol. Assess. 12, 112-123; Magnusson, M.S., 2000. Discovering hidden time patterns in behaviour: T-patterns and their detection. Behav. Res. Methods, Instrum. Comput. 32, 93-110) enables us to detect complex temporal patterns in behaviour. This method has been used successfully in studying human and neuronal interactions (Anolli, L., Duncan, S. Magnusson, M.S., Riva G. (Eds.), 2005. The Hidden Structure of Interaction, IOS Press, Amsterdam). We assume that similarly to interactions between humans, cooperative and communicative interaction between dogs and humans also consist of patterns in time. We coded and analyzed a cooperative situation when the owner instructs the dog to help build a tower and complete the task. In this situation, a cooperative interaction developed spontaneously, and occurrences of hidden time patterns in behaviour can be expected. We have found such complex temporal patterns (T-patterns) in each pair during the task that cannot be detected by "standard" behaviour analysis. During cooperative interactions the dogs' and humans' behaviour becomes organized into interactive temporal patterns and that dog-human interaction is much more regular than yet has been thought. We have found that communicative behaviour units and action units can be detected in the same T-pattern during cooperative interactions. Comparing the T-patterns detected in the dog-human dyads, we have found a typical sequence emerging during the task, which was the outline of the successfully completed task. Such temporal patterns were conspicuously missing from the "randomized data" that gives additional support to the claim that interactive T-patterns do not occur by chance or arbitrarily but play a functional role during the task.

摘要

(马格努松,M.S.,1996年。个体内和个体间行为描述与检测中的隐藏实时模式。《欧洲心理评估杂志》12卷,第112 - 123页;马格努松,M.S.,2000年。发现行为中的隐藏时间模式:T模式及其检测。《行为研究方法、仪器与计算机》32卷,第93 - 110页)开发的一种新的时间结构模型和模式检测程序,使我们能够检测行为中的复杂时间模式。该方法已成功用于研究人类与神经元的相互作用(阿诺利,L.,邓肯,S.,马格努松,M.S.,里瓦,G.(编),2005年。互动的隐藏结构,IOS出版社,阿姆斯特丹)。我们假设,与人类之间的互动类似,狗与人类之间的合作与交流互动同样由时间模式构成。我们对主人指示狗帮忙搭建塔楼并完成任务的合作情境进行了编码和分析。在这种情境中,合作互动自发产生,行为中隐藏时间模式的出现是可以预期的。我们在任务过程中每一对中都发现了这种复杂的时间模式(T模式),而“标准”行为分析无法检测到这些模式。在合作互动过程中,狗和人类的行为会组织成互动时间模式,并且狗与人的互动比我们之前认为的更加规律。我们发现,在合作互动过程中,交流行为单元和动作单元可以在同一个T模式中被检测到。比较在狗 - 人二元组中检测到的T模式,我们发现任务过程中出现了一个典型序列,它是成功完成任务的轮廓。在“随机数据”中明显没有这种时间模式,这进一步支持了这样的观点,即互动T模式不是偶然或随意出现的,而是在任务中发挥着功能性作用。

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