任务相关听觉刺激下事件相关电位的密集传感器阵列地形

Geoffrey F Potts, Joseph Dien, Ann L Hartry-Speiser, Lynn M McDougal, Don M Tucker
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引用次数: 97

摘要

高空间密度记录和更好的地形测绘算法提高了事件相关电位(ERP)的空间分辨能力,增加了其已经很好的时间分辨率。本研究采用64通道记录阵列和球面样条插值方法,建立了听觉怪异范式下脑电电位和电流密度头皮分布的地形描述。频繁(标准)和不频繁(目标)的音调以大约每2500毫秒一个的频率呈现给一组20名大学本科生,他们分别在被动倾听和主动(计算不频繁的音调)任务组中进行。对ERP“后期”部分的主要偏转进行了方差分析和地形分析:P1, N1, P2, N2和P3。每个任务还创建了一个目标减去标准差分波。差波包含一个失配负性(MMN)、一个N2b和一个P3d。MMN在被动任务和主动任务之间没有差异,其地形与N1相似;差波P3d在地形上与靶波P3相似。N2b仅发生在活跃状态下的目标,是目标检测的第一指标,其头皮分布与额叶和颞上叶皮层的产生一致,表明选择性注意和听觉刺激表征皮层区域有活动。
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Dense sensor array topography of the event-related potential to task-relevant auditory stimuli

High spatial density recording and better topographic mapping algorithms have improved the spatial resolving power of the event-related potential (ERP), adding to its already excellent temporal resolution. This study used a 64 channel recording array and spherical spline interpolation to create topographic descriptions of the voltage and current density scalp distributions of the ERP in an auditory oddball paradigm. Frequent (standard) and infrequent (target) tones were presented at a rate of one every approximately 2500 ms to a group of 20 college undergraduates in passive listening and active (count the infrequent tones) task blocks. ANOVAs and topographic analyses were performed on the primary deflections in the `late' portion of the ERP: the P1, N1, P2, N2 and P3. A target minus standard difference wave was also created for each task. The difference wave contained a mismatch negativity (MMN), an N2b and a P3d. The MMN did not differ between the passive and active tasks and had a topography similar to the N1; also the difference wave P3d was topographically similar to the target P3. The N2b, which occurred only to targets in the active condition, and was the first index of target detection, had a scalp distribution consistent with generation in frontal and superior temporal cortex, suggesting activity in cortical areas of selective attention and auditory stimulus representation.

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