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Structure mapping and semantic integration in a construction-based neurolinguistic model of sentence processing.

机译:基于结构的句子处理神经语言模型中的结构映射和语义集成。

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The current research provides a theoretical, computational and neurophysiological framework in which particular aspects of sentence comprehension and non-linguistic sequence transformation processing are implemented by a common neural mechanism for structure mapping. The theoretical context is derived from construction grammar theory in which language is considered in terms of a structured inventory of form to meaning mappings. Computationally, the construction grammar concept is implemented in a hybrid neural network model that is derived from functional neuroanatomical studies. In particular, based on data from Hoen et al. (2006, this issue), the generalized structure mapping capability is attributed to a local cortical network that includes Brodmann's area (BA) 44, while the integration of semantic structure into this transformation mechanism relies on BA 45.
机译:当前的研究提供了一种理论,计算和神经生理学框架,其中句子理解和非语言序列转换处理的特定方面通过结构映射的通用神经机制来实现。理论上下文是从构造语法理论派生而来的,在构造语法理论中,根据形式化的表述到意义映射来考虑语言。在计算上,构造语法概念是在混合神经网络模型中实现的,该模型是从功能神经解剖学研究中得出的。特别是,根据Hoen等人的数据。 (2006年,此问题),广义结构映射功能归因于包含Brodmann区域(BA)44的局部皮质网络,而语义结构到此转换机制中的集成则依赖于BA 45。

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