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Gesturing tool use and tool transport actions modulates inferior parietal functional connectivity with the dorsal and ventral object processing pathways

机译:打手势工具的使用和工具的运输动作调节了顶下功能与背侧和腹侧物体加工路径的连通性

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摘要

Interacting with manipulable objects (tools) requires the integration of diverse computations supported by anatomically remote regions. Previous functional neuroimaging research has demonstrated the left supramarginal (SMG) exhibits functional connectivity to both ventral and dorsal pathways, supporting the integration of ventrally‐mediated tool properties and conceptual knowledge with dorsally‐computed volumetric and structural representations of tools. This architecture affords us the opportunity to test whether interactions between the left SMG, ventral visual pathway, and dorsal visual pathway are differentially modulated when participants plan and generate tool‐directed gestures emphasizing functional manipulation (tool use gesturing) or structure‐based grasping (tool transport gesturing). We found that functional connectivity between the left SMG, ventral temporal cortex (bilateral fusiform gyri), and dorsal visual pathway (left superior parietal lobule/posterior intraparietal sulcus) was maximal for tool transport planning and gesturing, whereas functional connectivity between the left SMG, left ventral anterior temporal lobe, and left frontal operculum was maximal for tool use planning and gesturing. These results demonstrate that functional connectivity to the left SMG is differentially modulated by tool use and tool transport gesturing, suggesting that distinct tool features computed by the two object processing pathways are integrated in the parietal lobe in the service of tool‐directed action.
机译:与可操作对象(工具)进行交互需要将解剖学上遥远的区域支持的各种计算进行集成。以前的功能性神经影像学研究表明,左上argarginal(SMG)表现出与腹侧和背侧通路的功能连接性,支持腹侧介导的工具属性和概念知识与工具的背侧计算体积和结构表示的整合。当参与者计划并生成强调功能操作(使用工具的手势)或基于结构的抓握(工具)的工具导向手势时,该体系结构为我们提供了机会来测试左SMG,腹侧视觉通路和背侧视觉通路之间的交互是否被不同地调制。运输手势)。我们发现,对于工具运输计划和手势,左SMG,腹侧颞叶皮质(双侧梭状回)和背侧视觉通路(左上顶小叶/后顶壁沟)之间的功能连接最大,而左SMG之间的功能连接左腹前颞叶和左额最大用于工具使用计划和打手势。这些结果表明,通过使用工具和工具运输手势,与左侧SMG的功能连通性得到了不同程度的调节,这表明,由两个对象处理路径计算出的独特工具特征已整合到顶叶中,以进行工具指导动作。

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