解决时间极中概念知识表示的长期争议:跨模态范式。

Lora T Likova
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引用次数: 7

摘要

概念知识使我们能够理解冲击我们感官的多感官刺激。它在前颞叶的表现是一个相当有争议的话题,“神秘”的颞极(TP)是这场争论的中心。TP中有争议的知识代表组织模式从单边代表制到完全统一的双边代表制。为了解决众多相互排斥的选择,我们在盲人的多因素脑成像研究中开发了一种新的跨模态方法,操纵概念知识的接收源(阅读文本/语言与图像/图像)和表达(书写文本/语言和绘画/图像)的模态(语言与图像)。此外,我们还改变了熟悉程度。本研究首次探讨盲人TP中概念知识的功能组织,也是首次基于盲文阅读中句子记忆中的概念知识进行绘画研究。通过这种范式,我们能够在功能上识别出颞极的两个新的细分——位于顶点的TPa和内侧的TPdm。他们的反应特征揭示了时间极内非视觉专业化的复杂相互作用,作为半球、任务域和熟悉度的函数,兴奋性/抑制性反转的多样性,这激发了对概念知识的扩展神经认知分析。这里发现的半球间专业化的相互作用解释了先前概念知识表征研究中各种看似冲突的模型,并通过我们研究的一组因素来调和它们:两个主要的知识领域(言语和图像/感觉运动)和两种主要的知识处理模式(接受和表达),包括作为修饰语的熟悉程度。此外,这些因素的相互作用使我们首次揭示了TP组织中互补对称性、不对称性和意外反对称性的系统。因此,将这些结果放在一起,构成了对先前概念知识表示研究中相互冲突的模型的统一解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Addressing long-standing controversies in conceptual knowledge representation in the temporal pole: A cross-modal paradigm.

Addressing long-standing controversies in conceptual knowledge representation in the temporal pole: A cross-modal paradigm.

Addressing long-standing controversies in conceptual knowledge representation in the temporal pole: A cross-modal paradigm.

Addressing long-standing controversies in conceptual knowledge representation in the temporal pole: A cross-modal paradigm.

Conceptual knowledge allows us to comprehend the multisensory stimulation impinging on our senses. Its representation in the anterior temporal lobe is a subject of considerable debate, with the "enigmatic" temporal pole (TP) being at the center of that debate. The controversial models of the organization of knowledge representation in TP range from unilateral to fully unified bilateral representational systems. To address the multitude of mutually exclusive options, we developed a novel cross-modal approach in a multifactorial brain imaging study of the blind, manipulating the modality (verbal vs pictorial) of both the reception source (reading text/verbal vs images/pictorial) and the expression (writing text/verbal vs drawing/pictorial) of conceptual knowledge. Furthermore, we also varied the level of familiarity. This study is the first to investigate the functional organization of (amodal) conceptual knowledge in TP in the blind, as well as, the first study of drawing based on the conceptual knowledge from memory of sentences delivered through Braille reading. Through this paradigm, we were able to functionally identify two novel subdivisions of the temporal pole - the TPa, at the apex, and the TPdm - dorso-medially. Their response characteristics revealed a complex interplay of non-visual specializations within the temporal pole, with a diversity of excitatory/inhibitory inversions as a function of hemisphere, task-domain and familiarity, which motivate an expanded neurocognitive analysis of conceptual knowledge. The interplay of inter-hemispheric specializations found here accounts for the variety of seemingly conflicting models in previous research for conceptual knowledge representation, reconciling them through the set of factors we have investigated: the two main knowledge domains (verbal and pictorial/sensory-motor) and the two main knowledge processing modes (receptive and expressive), including the level of familiarity as a modifier. Furthermore, the interplay of these factors allowed us to also reveal for the first time a system of complementary symmetries, asymmetries and unexpected anti-symmetries in the TP organization. Thus, taken together these results constitute a unifying explanation of the conflicting models in previous research on conceptual knowledge representation.

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