University of Bordeaux, IMN, UMR 5293, 33000, Bordeaux, France.
CNRS, IMN, UMR 5293, 33000, Bordeaux, France.
Brain Struct Funct. 2019 Dec;224(9):3075-3094. doi: 10.1007/s00429-019-01951-4. Epub 2019 Sep 7.
We aimed at identifying plurimodal large-scale networks for producing, listening to and reading word lists based on the combined analyses of task-induced activation and resting-state intrinsic connectivity in 144 healthy right-handers. In the first step, we identified the regions in each hemisphere showing joint activation and joint asymmetry during the three tasks. In the left hemisphere, 14 homotopic regions of interest (hROIs) located in the left Rolandic sulcus, precentral gyrus, cingulate gyrus, cuneus and inferior supramarginal gyrus (SMG) met this criterion, and 7 hROIs located in the right hemisphere were located in the preSMA, medial superior frontal gyrus, precuneus and superior temporal sulcus (STS). In a second step, we calculated the BOLD temporal correlations across these 21 hROIs at rest and conducted a hierarchical clustering analysis to unravel their network organization. Two networks were identified, including the WORD-LIST_CORE network that aggregated 14 motor, premotor and phonemic areas in the left hemisphere plus the right STS that corresponded to the posterior human voice area (pHVA). The present results revealed that word-list processing is based on left articulatory and storage areas supporting the action-perception cycle common not only to production and listening but also to reading. The inclusion of the right pHVA acting as a prosodic integrative area highlights the importance of prosody in the three modalities and reveals an intertwining across hemispheres between prosodic (pHVA) and phonemic (left SMG) processing. These results are consistent with the motor theory of speech postulating that articulatory gestures are the central motor units on which word perception, production, and reading develop and act together.
我们旨在通过对 144 名健康右利手者的任务诱发激活和静息态内在连通性的联合分析,确定产生、聆听和阅读单词列表的多模态大规模网络。在第一步中,我们确定了在三个任务中表现出联合激活和联合不对称性的每个半球的区域。在左半球,14 个位于左侧 Rolandic 沟、中央前回、扣带回、楔前叶和下缘上回的同源感兴趣区(hROI)符合这一标准,而位于右半球的 7 个 hROI 位于前扣带回、额上回、楔前叶和颞上回。在第二步中,我们计算了这些 21 个 hROI 在静息状态下的 BOLD 时间相关性,并进行了层次聚类分析以揭示其网络组织。确定了两个网络,包括 WORD-LIST_CORE 网络,该网络聚集了左半球的 14 个运动、前运动和语音区域,加上右颞上回,对应于人声音区(pHVA)的后部。本研究结果表明,单词列表处理基于支持动作感知循环的左发音和存储区域,不仅生产和聆听,而且阅读也都基于此。包括作为韵律整合区域的右 pHVA 突出了韵律在三种模态中的重要性,并揭示了韵律(pHVA)和语音(左缘上回)处理之间的半球间交织。这些结果与言语运动理论一致,该理论假设发音动作是语音感知、产生和阅读共同发展的中央运动单元。