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物体熟悉度调节触觉形状感知期间的有效连通性。

Object familiarity modulates effective connectivity during haptic shape perception.

机构信息

Coulter Department of Biomedical Engineering, Emory University & Georgia Institute of Technology, Atlanta, GA 30322, USA.

出版信息

Neuroimage. 2010 Feb 1;49(3):1991-2000. doi: 10.1016/j.neuroimage.2009.08.052. Epub 2009 Sep 2.

DOI:10.1016/j.neuroimage.2009.08.052
PMID:19732841
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3073838/
Abstract

In the preceding paper (Lacey, S., Flueckiger, P., Stilla, R., Lava, M., Sathian, K., 2009a. Object familiarity modulates involvement of visual imagery in haptic shape perception), we showed that the activations evoked by visual imagery overlapped more extensively, and their magnitudes were more correlated, with those evoked during haptic shape perception of familiar, compared to unfamiliar, objects. Here we used task-specific analyses of functional and effective connectivity to provide convergent evidence. These analyses showed that the visual imagery and familiar haptic shape tasks activated similar networks, whereas the unfamiliar haptic shape task activated a different network. Multivariate Granger causality analyses of effective connectivity, in both a conventional form and one purged of zero-lag correlations, showed that the visual imagery and familiar haptic shape networks involved top-down paths from prefrontal cortex into the lateral occipital complex (LOC), whereas the unfamiliar haptic shape network was characterized by bottom-up, somatosensory inputs into the LOC. We conclude that shape representations in the LOC are flexibly accessible, either top-down or bottom-up, according to task demands, and that visual imagery is more involved in LOC activation during haptic shape perception when objects are familiar, compared to unfamiliar.

摘要

在前一篇论文(Lacey, S., Flueckiger, P., Stilla, R., Lava, M., Sathian, K., 2009a. Object familiarity modulates involvement of visual imagery in haptic shape perception)中,我们表明,与不熟悉的物体相比,视觉想象引起的激活在熟悉的物体的触觉形状感知中重叠程度更高,并且它们的幅度更相关。在这里,我们使用功能和有效连接的特定任务分析提供了收敛的证据。这些分析表明,视觉想象和熟悉的触觉形状任务激活了相似的网络,而不熟悉的触觉形状任务激活了不同的网络。有效连接的多元格兰杰因果分析,无论是在常规形式还是在消除零延迟相关性的形式下,都表明视觉想象和熟悉的触觉形状网络涉及从前额叶皮层到外侧枕叶复合体(LOC)的自上而下的路径,而不熟悉的触觉形状网络的特征是来自体感的自下而上的输入进入 LOC。我们得出的结论是,根据任务需求,LOC 中的形状表示可以灵活地自上而下或自下而上访问,并且当物体熟悉时,视觉想象在触觉形状感知期间更参与 LOC 的激活,而不熟悉时则不参与。

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