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运动模式的组合符号基础。

Compositional symbol grounding for motor patterns.

机构信息

Laboratory of Psychology and Cognitive Sciences, Department of Anthropological Sciences, University of Genova Genova, Italy.

出版信息

Front Neurorobot. 2010 Nov 11;4:111. doi: 10.3389/fnbot.2010.00111. eCollection 2010.

Abstract

We developed a new experimental and simulative paradigm to study the establishing of compositional grounded representations for motor patterns. Participants learned to associate non-sense arm motor patterns, performed in three different hand postures, with non-sense words. There were two group conditions: in the first (compositional), each pattern was associated with a two-word (verb-adverb) sentence; in the second (holistic), each same pattern was associated with a unique word. Two experiments were performed. In the first, motor pattern recognition and naming were tested in the two conditions. Results showed that verbal compositionality had no role in recognition and that the main source of confusability in this task came from discriminating hand postures. As the naming task resulted too difficult, some changes in the learning procedure were implemented in the second experiment. In this experiment, the compositional group achieved better results in naming motor patterns especially for patterns where hand postures discrimination was relevant. In order to ascertain the differential effect, upon this result, of memory load and of systematic grounding, neural network simulations were also made. After a basic simulation that worked as a good model of subjects performance, in following simulations the number of stimuli (motor patterns and words) was increased and the systematic association between words and patterns was disrupted, while keeping the same number of words and syntax. Results showed that in both conditions the advantage for the compositional condition significantly increased. These simulations showed that the advantage for this condition may be more related to the systematicity rather than to the mere informational gain. All results are discussed in connection to the possible support of the hypothesis of a compositional motor representation and toward a more precise explanation of the factors that make compositional representations working.

摘要

我们开发了一种新的实验和模拟范式,用于研究运动模式组合基础表示的建立。参与者学习将非意义手臂运动模式与非意义单词相关联,这些模式在三种不同的手位下执行。有两种组条件:在第一种(组合)中,每个模式与一个由两个单词(动词-副词)组成的句子相关联;在第二种(整体)中,每个相同的模式与一个独特的单词相关联。进行了两项实验。在第一项实验中,在两种条件下测试了运动模式的识别和命名。结果表明,言语组合性在识别中没有作用,而在这个任务中混淆的主要来源来自于区分手位。由于命名任务太难,在第二项实验中对学习过程进行了一些更改。在这个实验中,组合组在命名运动模式方面取得了更好的结果,尤其是在与手位区分相关的模式方面。为了确定这种结果在记忆负荷和系统基础方面的差异影响,还进行了神经网络模拟。在进行了一个基本模拟之后,该模拟很好地模拟了被试的表现,在后续模拟中,增加了刺激(运动模式和单词)的数量,并打乱了单词和模式之间的系统关联,同时保持了相同数量的单词和语法。结果表明,在两种条件下,组合条件的优势显著增加。这些模拟表明,这种条件的优势可能与系统性而不是仅仅与信息增益有关。所有结果都与组合运动表示假设的可能支持以及对使组合表示工作的因素进行更精确解释有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c746/2991125/2b7425783697/fnbot-04-00111-g001.jpg

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