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人类不同跨模态对应效应的分离神经元机制。

Dissociable neuronal mechanism for different crossmodal correspondence effects in humans.

机构信息

NeuroImage Nord, Department for Systems Neuroscience, University Medical Center Hamburg Eppendorf, Hamburg, Germany.

出版信息

Acta Neurobiol Exp (Wars). 2024 May 21;84(2):136-152. doi: 10.55782/ane-2024-2439.

Abstract

Crossmodal correspondences (CMCs) refer to associations between seemingly arbitrary stimulus features in different sensory modalities. Pitch‑size correspondences refer to the strong association of e.g., small objects with high pitches. Pitch‑elevation correspondences refer to the strong association of e.g., visuospatial elevated objects with high pitches. We used functional magnetic resonance imaging (fMRI) to study the neural components, which underlie the CMCs in pitch‑size and spatial pitch‑elevation. This study focuses on answering the question of whether or not different CMCs are driven by similar neural mechanisms. The comparison of congruent against incongruent trials allows the estimation of CMC effects across different CMCs. The analysis of the measured neural activity in different CMCs strongly pointed toward different mechanisms which are involved in the processing of pitch‑size and pitch‑elevation correspondences. Differential, whole brain effects were observed within the superior parietal lobule (SPL), cerebellum and Heschls' gyrus (HG). Further, the angular gyrus (AnG), the intraparietal sulcus (IPS) and anterior cingulate cortex (ACC) were engaged in processing the CMCs but showed different effects for processing congruent compared to incongruent stimulus presentations. Within pitch‑size significant effects in the AnG and ACC were found for congruent stimulus presentations whereas for pitch‑elevation, significant effects in the ACC and IPS were found for incongruent stimulus presentations. In summary, the present results indicated differential neural processing in different simple audio‑visual CMCs.

摘要

跨模态对应(CMCs)是指不同感觉模态之间看似任意的刺激特征之间的关联。音高-大小对应是指例如小物体与高音之间的强烈关联。音高-高度对应是指例如空间升高的物体与高音之间的强烈关联。我们使用功能磁共振成像(fMRI)来研究基础音高-大小和空间音高-高度 CMC 的神经成分。本研究专注于回答不同 CMC 是否由相似的神经机制驱动的问题。对比一致和不一致的试验可以估计不同 CMC 之间的 CMC 效应。对不同 CMC 中测量的神经活动的分析强烈表明,在处理音高-大小和音高-高度对应关系时,涉及不同的机制。在顶叶上回(SPL)、小脑和 Heschls' 回(HG)中观察到差异的、全脑效应。此外,角回(AnG)、顶内沟(IPS)和前扣带皮层(ACC)参与处理 CMC,但在处理一致和不一致的刺激呈现时表现出不同的效应。在音高-大小中,在一致刺激呈现时,AnG 和 ACC 中发现了显著的效应,而在音高-高度中,在不一致刺激呈现时,ACC 和 IPS 中发现了显著的效应。总之,本研究结果表明,不同的简单视听 CMC 存在不同的神经处理。

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