Magnetoencephalography and functional MRI: a quantitative study of speech perception

T. Roberts, D. Poeppel, H. Rowley
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引用次数: 3

Abstract

Magnetoencephalography (MEG), sensitive to evoked neuronal activity, and functional magnetic resonance imaging (fMRI), sensitive to hemodynamic consequences of cortical activation, were compared in normal subjects, presented with simple speech elements (vowels). The subjects were instructed either to listen passively or to perform phonetic or pitch discrimination tasks. Sources of activation detected using the two technologies were found to co-localize in the superior temporal gyrus. Furthermore quantification of the evoked responses, using both techniques, revealed a task-induced bilateral increase in activation, with the greatest increases observed in the left hemisphere, during performance of the phonetic discrimination task. It is concluded that not only do fMRI and MEG indicate similar underlying cortical activation areas, but that they offer quantitative indices of hemispheric lateralization induced by performance of a linguistic task. Their co-variance with respect to hemisphere and task performance suggests that despite their different neurophysiological sensitivities (hemodynamic changes vs. neuronal electrical activity), both techniques offer quantitative approaches to the study of speech perception, and by extension, to the processing of language.
脑磁图和功能性磁共振成像:语音感知的定量研究
我们比较了对诱发神经元活动敏感的脑磁图(MEG)和对皮层激活的血流动力学后果敏感的功能性磁共振成像(fMRI)对正常受试者的简单语音元素(元音)的影响。受试者被要求被动倾听或执行语音或音高辨别任务。使用这两种技术检测到的激活源发现在颞上回共定位。此外,使用这两种技术对诱发反应进行量化,揭示了任务诱发的双侧激活增加,在执行语音识别任务期间,在左半球观察到最大的增加。结论是,功能磁共振成像和脑磁图不仅显示了相似的潜在皮层激活区域,而且它们提供了语言任务表现引起的半球侧化的定量指标。它们在半球和任务表现方面的协方差表明,尽管它们的神经生理敏感性不同(血液动力学变化与神经元电活动),但这两种技术都为语言感知的研究提供了定量方法,并由此延伸到语言处理。
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