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Rigidity chaos and integration: hemispheric interaction and individual differences in metaphor comprehension

机译:刚性混乱和融合:半球互动和隐喻理解的个体差异

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摘要

Neurotypical individuals cope flexibly with the full range of semantic relations expressed in human language, including metaphoric relations. This impressive semantic ability may be associated with distinct and flexible patterns of hemispheric interaction, including higher right hemisphere (RH) involvement for processing novel metaphors. However, this ability may be impaired in specific clinical conditions, such as Asperger syndrome (AS) and schizophrenia. The impaired semantic processing is accompanied by different patterns of hemispheric interaction during semantic processing, showing either reduced (in Asperger syndrome) or excessive (in schizophrenia) RH involvement. This paper interprets these individual differences using the terms Rigidity, Chaos and Integration, which describe patterns of semantic memory network states that either lead to semantic well-being or are disruptive of it. We argue that these semantic network states lie on a rigidity-chaos semantic continuum. We define these terms via network science terminology and provide network, cognitive and neural evidence to support our claim. This continuum includes left hemisphere (LH) hyper-rigid semantic memory state on one end (e.g., in persons with AS), and RH chaotic and over-flexible semantic memory state on the other end (e.g., in persons with schizophrenia). In between these two extremes lie different states of semantic memory structure which are related to individual differences in semantic creativity. We suggest that efficient semantic processing is achieved by semantic integration, a balance between semantic rigidity and semantic chaos. Such integration is achieved via intra-hemispheric communication. However, impairments to this well-balanced and integrated pattern of hemispheric interaction, e.g., when one hemisphere dominates the other, may lead to either semantic rigidity or semantic chaos, moving away from semantic integration and thus impairing the processing of metaphoric language.
机译:神经型个体可以灵活应对人类语言表达的各种语义关系,包括隐喻关系。这种令人印象深刻的语义能力可能与半球交互作用的独特而灵活的模式有关,包括较高的右半球(RH)参与处理新颖的隐喻。但是,在特定的临床情况下,例如阿斯伯格综合症(AS)和精神分裂症,可能会削弱这种能力。语义处理受损时,在语义处理期间会伴有不同模式的半球交互作用,显示出RH参与减少(在Asperger综合征中)或过度(在精神分裂症中)。本文使用“刚度”,“混沌”和“集成”来解释这些个体差异,这些术语描述了导致语义幸福感或破坏语义幸福感的语义记忆网络状态模式。我们认为,这些语义网络状态位于刚性-混沌语义连续体上。我们通过网络科学术语定义这些术语,并提供网络,认知和神经证据来支持我们的主张。该连续体包括在一端(例如,在AS患者中)的左半球(LH)超刚性语义记忆状态,以及在另一端(例如,在精神分裂症患者中)的RH混乱和过度灵活的语义记忆状态。在这两个极端之间,存在着与语义创造力的个体差异有关的语义记忆结构的不同状态。我们建议通过语义集成,语义刚性和语义混乱之间的平衡来实现有效的语义处理。这种整合是通过半球内通信实现的。但是,这种对半球交互的良好平衡和整合模式的损害(例如,当一个半球主导另一个半球时)可能导致语义僵化或语义混乱,从而脱离语义整合,从而损害了隐喻语言的处理。

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