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New approach to localize speech relevant brain areas and hemispheric dominance using spatially filtered magnetoencephalography

机译:使用空间滤波脑磁图定位语音相关脑区域和半球优势的新方法

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摘要

We used a current localization by spatial filtering‐technique to determine primary language areas with magnetoencephalography (MEG) using a silent reading and a silent naming task. In all cases we could localize the sensory speech area (Wernicke) in the posterior part of the left superior temporal gyrus (Brodmann area 22) and the motor speech area (Broca) in the left inferior frontal gyrus (Brodmann area 44). Left hemispheric speech dominance was determined in all cases by a laterality index comparing the current source strength of the activated left side speech areas to their right side homologous. In 12 cases we found early Wernicke and later Broca activation corresponding to the Wernicke‐Geschwind model. In three cases, however, we also found early Broca activation indicating that speech‐related brain areas need not necessarily be activated sequentially but can also be activated simultaneously. Magnetoencephalography can be a potent tool for functional mapping of speech‐related brain areas in individuals, investigating the time‐course of brain activation, and identifying the speech dominant hemisphere. This may have implications for presurgical planning in epilepsy and brain tumor patients. Hum. Brain Mapping 14:236–250, 2001. © 2001 Wiley‐Liss, Inc.
机译:我们使用当前的空间滤波技术进行本地化,使用无声阅读和无声命名任务通过脑磁图(MEG)确定主要语言区域。在所有情况下,我们都可以将感觉语音区域(Wernicke)定位在左上颞回(Brodmann区域22)的后部,并将运动语音区域(Broca)定位在左下额回(Brodmann区域44)。在所有情况下,通过将激活的左侧语音区域的当前源强度与其右侧同源区域的当前源强度进行比较的横向指数来确定左半球语音优势。在12个案例中,我们发现早期的Wernicke和后来的Broca激活与Wernicke-Geschwind模型相对应。但是,在三种情况下,我们还发现了Broca早期激活,这表明与语音相关的大脑区域不一定需要顺序激活,也可以同时激活。磁脑描记术可能是一种有效的工具,可用于对个人中与语音相关的大脑区域进行功能映射,调查大脑激活的时程并确定语音占优势的半球。这可能对癫痫和脑肿瘤患者的术前计划有影响。哼。 Brain Mapping 14:236–250,2001.©2001 Wiley-Liss,Inc.

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