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使用分布式源模型从脑内听觉诱发电位定位人类颞上听觉区域

Localization of human supratemporal auditory areas from intracerebral auditory evoked potentials using distributed source models.

作者信息

Yvert Blaise, Fischer Catherine, Bertrand Olivier, Pernier Jacques

机构信息

Inserm Unité 280, Bron, France.

出版信息

Neuroimage. 2005 Oct 15;28(1):140-53. doi: 10.1016/j.neuroimage.2005.05.056. Epub 2005 Jul 21.

Abstract

While source localization methods are increasingly developed to identify brain areas underlying scalp electro/magnetoencephalographic data (EEG/MEG), these methods have not yet been used to identify the sources of intracerebral signals which offer highly detailed information. Here, we adapted the minimum current estimates method to intracranial data in order to localize supratemporal sources of intracerebral auditory 1-kHz-tone-evoked potentials occurring within 100 ms after stimulus onset. After an evaluation of localization method and despite inter-subject variability, we found a common spatiotemporal pattern of activities, which involved the first Heschl's gyrus (H1) and sulcus (HS), the Planum Temporale (PT), H2/H3 when present, and the superior temporal gyrus (STG). Four time periods of activity were distinguished, corresponding to the time range of the scalp components P0, Na, Pa/Pb, and N100. The sources of the earliest components P0 (16-19 ms) and Na (20-25 ms) could be identified in the postero-medial portion of HS or H1. Then, several areas became simultaneously active after 25 ms. The Pa/Pb time range (30-50 ms) was characterized by a medio-lateral and postero-anterior propagation of activity over the supratemporal plane involving successively H1/HS, the Planum Temporale, H2/H3 when present, and the STG. Finally, we found to a large extent that the N100 (55-100 ms) involved almost the same areas as those active during the Pa/Pb complex, with a similar propagation of activities. Reconstructing scalp data from these sources on fictive EEG/MEG channels reproduced classical auditory evoked waveforms and topographies. In conclusion, the spatiotemporal pattern of activation of supratemporal auditory areas could be identified on the individual anatomy using current estimates from intracerebral data. Such detailed localization approach could also be used prior to epilepsy surgery to help identify epileptogenic foci and preserve functional cortical areas.

摘要

虽然用于识别头皮脑电图/脑磁图数据(EEG/MEG)背后脑区的源定位方法日益发展,但这些方法尚未用于识别能提供高度详细信息的脑内信号源。在此,我们将最小电流估计方法应用于颅内数据,以定位刺激开始后100毫秒内出现的脑内听觉1千赫兹纯音诱发电位的颞上源。在对定位方法进行评估后,尽管存在个体间差异,但我们发现了一种共同的时空活动模式,该模式涉及第一颞横回(H1)和颞横沟(HS)、颞平面(PT)、存在时的H2/H3以及颞上回(STG)。区分出了四个活动时间段,分别对应头皮成分P0、Na、Pa/Pb和N100的时间范围。最早成分P0(16 - 19毫秒)和Na(20 - 25毫秒)的源可在HS或H1的后内侧部分识别出来。然后,25毫秒后几个区域同时变得活跃。Pa/Pb时间范围(30 - 50毫秒)的特征是活动在颞上平面上从中外侧向后前方传播,依次涉及H1/HS、颞平面、存在时的H2/H3以及STG。最后,我们发现N100(55 - 100毫秒)在很大程度上涉及与Pa/Pb复合波期间活跃区域几乎相同的区域,且活动传播方式相似。从这些源在虚拟EEG/MEG通道上重建头皮数据,再现了经典的听觉诱发电位波形和地形图。总之,利用脑内数据的电流估计,可以在个体解剖结构上识别颞上听觉区域的时空激活模式。这种详细的定位方法也可在癫痫手术前使用,以帮助识别致痫灶并保留功能皮质区域。

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