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Mapping hemispheric symmetries, relative asymmetries, and absolute asymmetries underlying the auditory laterality effect

机译:映射半球形对称性,相对不对称性和听觉偏侧效应背后的绝对不对称性

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Functional hemispheric differences for speech and language processing have been traditionally studied by using verbal dichotic-listening paradigms. The commonly observed right-ear preference for the report of dichotically presented syllables is taken to reflect the left hemispheric dominance for speech processing. However, the results of recent functional imaging studies also show that both hemispheres - not only the left - are engaged by dichotic listening, suggesting a more complex relationship between behavioral laterality and functional hemispheric activation asymmetries. In order to more closely examine the hemispheric differences underlying dichotic-listening performance, we report an analysis of functional magnetic resonance imaging (fMRI) data of 104 right-handed subjects, for the first time combining an interhemispheric difference and conjunction analysis. This approach allowed for a distinction of homotopic brain regions which showed symmetrical (i.e., brain region significantly activated in both hemispheres and no activation difference between the hemispheres), relative asymmetrical (i.e., activated in both hemispheres but significantly stronger in one than the other hemisphere), and absolute asymmetrical activation patterns (i.e., activated only in one hemisphere and this activation is significantly stronger than in the other hemisphere). Symmetrical activation was found in large clusters encompassing temporal, parietal, inferior frontal, and medial superior frontal regions. Relative and absolute left-ward asymmetries were found in the posterior superior temporal gyrus, located adjacent to symmetrically activated areas, and creating a lateral-medial gradient from symmetrical towards absolute asymmetrical activation within the peri-Sylvian region. Absolute leftward asymmetry was also found in the post-central and medial superior frontal gyri, while rightward asymmetries were found in middle temporal and middle frontal gyri. We conclude that dichotic listening engages a bihemispheric cortical network, showing a symmetrical and mostly leftward asymmetrical pattern. The here obtained functional (asymmetry map might serve as a basis for future studies which - by studying the relevance of the here identified regions -clarify the relationship between behavioral laterality measures and hemispheric asymmetry.
机译:传统上已经通过使用言语二项听觉范例来研究用于语音和语言处理的功能性半球差异。通常观察到的对二分音节报告的右耳偏爱反映了语音处理的左半球优势。然而,最近的功能成像研究的结果还显示,两个半球(不仅是左侧)都通过二分听来参与,这表明行为偏侧性和功能性半球激活不对称之间的关系更为复杂。为了更仔细地检查在二项听觉表现基础上的半球差异,我们首次对104名右撇子受试者的功能磁共振成像(fMRI)数据进行了分析,这是首次将半球间差异与合体分析相结合。这种方法可以区分同构的大脑区域,该区域显示对称的(即,两个半球均激活了大脑区域,而半球之间没有激活差异),相对的不对称的(即在两个半球均激活但在一个半球上明显强于另一个) )和绝对非对称激活模式(即仅在一个半球中激活,并且该激活明显强于另一半球)。在包括颞部,顶叶,额额下部和内侧额中上部区域的大型簇中发现对称激活。在后颞上回中发现了相对的和绝对的左向不对称性,其位于对称激活区域附近,并在西尔维耶周边区域产生了从对称向绝对不对称激活的横向-内侧梯度。在中央后和内侧上额回中也发现了绝对的左向不对称,而在颞中和中央额回中发现了向右的不对称。我们得出的结论是,双耳听觉参与了一个双半球皮质网络,显示出对称且大多为向左的不对称模式。此处获得的功能(不对称图)可以用作将来研究的基础,该研究通过研究此处确定的区域的相关性来阐明行为侧向性度量与半球不对称之间的关系。

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