Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University, Okayama, Japan.
Section on Functional Imaging Methods, National Institute of Mental Health, Bethesda, MD, USA.
Brain Behav. 2021 Mar;11(3):e02033. doi: 10.1002/brb3.2033. Epub 2021 Jan 19.
Vision and touch are thought to contribute information to object perception in an independent but complementary manner. The left lateral posterior parietal cortex (LPPC) has long been associated with multisensory information processing, and it plays an important role in visual and haptic crossmodal information retrieval. However, it remains unclear how LPPC subregions are involved in visuo-haptic crossmodal retrieval processing.
In the present study, we used an fMRI experiment with a crossmodal delayed match-to-sample paradigm to reveal the functional role of LPPC subregions related to unimodal and crossmodal dot-surface retrieval.
The visual-to-haptic condition enhanced the activity of the left inferior parietal lobule relative to the haptic unimodal condition, whereas the inverse condition enhanced the activity of the left superior parietal lobule. By contrast, activation of the left intraparietal sulcus did not differ significantly between the crossmodal and unimodal conditions. Seed-based resting connectivity analysis revealed that these three left LPPC subregions engaged distinct networks, confirming their different functions in crossmodal retrieval processing.
Taken together, the findings suggest that functional heterogeneity of the left LPPC during visuo-haptic crossmodal dot-surface retrieval processing reflects that the left LPPC does not simply contribute to retrieval of past information; rather, each subregion has a specific functional role in resolving different task requirements.
视觉和触觉被认为以独立但互补的方式为物体感知提供信息。左侧顶后外侧皮质(LPPC)长期以来一直与多感觉信息处理有关,在视觉和触觉跨模态信息检索中起着重要作用。然而,LPPC 亚区如何参与视触跨模态检索处理仍不清楚。
在本研究中,我们使用 fMRI 实验和跨模态延迟匹配样本范式来揭示与单模态和跨模态点-面检索相关的 LPPC 亚区的功能作用。
视觉到触觉条件相对于触觉单模态条件增强了左顶下小叶的活动,而相反条件增强了左顶上小叶的活动。相比之下,跨模态和单模态条件之间的左顶内沟的激活没有显著差异。基于种子的静息态连通性分析表明,这三个左 LPPC 亚区参与了不同的网络,证实了它们在跨模态检索处理中的不同功能。
总之,这些发现表明,左 LPPC 在视触跨模态点-面检索处理过程中的功能异质性反映了左 LPPC 不仅简单地有助于检索过去的信息,而且每个亚区在解决不同的任务要求方面都有特定的功能作用。