首页> 外文期刊>Cognitive Neurodynamics >A new interpretation of P300 responses upon analysis of coherences
【24h】

A new interpretation of P300 responses upon analysis of coherences

机译:对相干性分析后P300响应的新解释

获取原文
获取原文并翻译 | 示例
       

摘要

Previous studies on cognitive dynamics showed that oscillatory responses of P300 are composed of mainly delta and theta responses. In the present study, for the first time, the long-distance intra-hemispheric event related coherence (auditory oddball paradigm) and evoked coherence (simple sound) were compared in order to evaluate the effects of cognitive tasks on the long-distance coherences. Seventeen healthy subjects (8 female, 9 male) were included in the study. The coherence was analyzed for delta (1-3.5 Hz), theta (4-7.5 Hz) and alpha (8-13 Hz) frequency ranges for (F_3-P_(3,) F _4-P_(4,) F_3-T_(7,) F_4-T _(8,) F_3-O_(1,) F_4-O_2) electrode pairs. The coherence to target responses were higher than the non-target and simple auditory response coherence. This difference is significant for the delta coherence for both hemispheres and for theta coherences over the left hemisphere. The highest coherences were recorded at fronto-temporal locations for all frequency bands (delta, theta, alpha). Furthermore, frontoparietal coherences were higher than the fronto-occipital coherences for all frequency bands (delta, theta, alpha).These results show that the fronto-temporal and fronto-parietal connections are most relevant for the identification of the target signal. This analysis open the way for a new interpretation of dynamic localization results during cognitive tasks.
机译:先前关于认知动力学的研究表明,P300的振荡反应主要由δ和θ响应组成。在本研究中,首次比较了长距离半球内事件相关的连贯性(听觉奇异球范例)和诱发的连贯性(简单声音),以评估认知任务对长距离连贯性的影响。该研究包括十七名健康受试者(8名女性,9名男性)。分析了(F_3-P_(3,)F _4-P_(4,)F_3-T_的delta(1-3.5 Hz),θ(4-7.5 Hz)和alpha(8-13 Hz)频率范围的相干性(7,)F_4-T _(8,)F_3-O_(1,)F_4-O_2)电极对。目标反应的连贯性高于非目标和简单听觉反应的连贯性。这种差异对于两个半球的δ相干和左半球的θ相干都非常重要。在所有频段(δ,θ,α)的额颞位置都记录到最高的相干性。此外,所有频段(δ,θ,α)的额顶相干性均高于额枕相干性,这些结果表明额颞叶和额顶壁连接与目标信号的识别最相关。该分析为认知任务期间动态定位结果的新解释开辟了道路。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号