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Combining temporal and spectral information with spatial mapping to identify differences between phonological and semantic networks:a magnetoencephalographic approach

机译:将时间和频谱信息与空间映射相结合,以识别语音和语义网络之间的差异:脑磁图方法

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摘要

Early, lesion-based models of language processing suggested that semantic and phonological processes are associated with distinct temporal and parietal regions respectively, with frontal areas more indirectly involved. Contemporary spatial brain mapping techniques have not supported such clear-cut segregation, with strong evidence of activation in left temporal areas by both processes and disputed evidence of involvement of frontal areas in both processes. We suggest that combining spatial information with temporal and spectral data may allow a closer scrutiny of the differential involvement of closely overlapping cortical areas in language processing. Using beamforming techniques to analyze magnetoencephalography data, we localized the neuronal substrates underlying primed responses to nouns requiring either phonological or semantic processing, and examined the associated measures of time and frequency in those areas where activation was common to both tasks. Power changes in the beta (14-30 Hz) and gamma (30-50 Hz) frequency bandswere analyzed in pre-selected time windows of 350-550 and 500-700ms In left temporal regions, both tasks elicited power changes in the same time window (350-550 ms), but with different spectral characteristics, low beta (14-20 Hz) for the phonological task and high beta (20-30 Hz) for the semantic task. In frontal areas (BA10), both tasks elicited power changes in the gamma band (30-50 Hz), but in different time windows, 500-700ms for the phonological task and 350-550ms for the semantic task. In the left inferior parietal area (BA40), both tasks elicited changes in the 20-30 Hz beta frequency band but in different time windows, 350-550ms for the phonological task and 500-700ms for the semantic task. Our findings suggest that, where spatial measures may indicate overlapping areas of involvement, additional beamforming techniques can demonstrate differential activation in time and frequency domains.
机译:早期基于病变的语言处理模型表明,语义和语音过程分别与不同的时间和顶体区域相关,额叶区域更间接地涉及到。当代的空间脑图绘制技术不支持这种明确的隔离,有力的证据表明左颞区被两个过程激活,并且有争议的证据表明额叶区域参与了两个过程。我们建议将空间信息与时间和频谱数据结合起来,可以更仔细地研究语言处理中紧密重叠的皮层区域的差异参与。使用波束成形技术来分析脑磁图数据,我们将神经元底物定位在对需要语音或语义处理的名词起初反应的基础下,并检查了在两个任务均被激活的区域中时间和频率的相关度量。在350-550和500-700ms的预选时间窗口中分析了beta(14-30 Hz)和gamma(30-50 Hz)频带中的功率变化在左侧时间区域中,两个任务都在同一时间引起功率变化窗口(350-550 ms),但具有不同的频谱特性,语音任务的beta较低(14-20 Hz),语义任务的beta较高(20-30 Hz)。在额叶区域(BA10)中,两个任务都在γ波段(30-50 Hz)中引起功率变化,但是在不同的时间窗口中,语音任务为500-700ms,语义任务为350-550ms。在左下顶区(BA40)中,这两个任务都引发了20-30 Hz beta频段的变化,但是在不同的时间窗口中,语音任务为350-550ms,语义任务为500-700ms。我们的发现表明,在空间量度可能指示参与重叠的区域的情况下,其他波束成形技术可以在时域和频域中显示差异激活。

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