首页> 外文期刊>BMC Neuroscience >Brain activity underlying auditory perceptual learning during short period training: simultaneous fMRI and EEG recording
【24h】

Brain activity underlying auditory perceptual learning during short period training: simultaneous fMRI and EEG recording

机译:短期训练中听觉知觉学习的大脑活动:同时进行功能磁共振成像和脑电图记录

获取原文
       

摘要

Background There is an accumulating body of evidence indicating that neuronal functional specificity to basic sensory stimulation is mutable and subject to experience. Although fMRI experiments have investigated changes in brain activity after relative to before perceptual learning, brain activity during perceptual learning has not been explored. This work investigated brain activity related to auditory frequency discrimination learning using a variational Bayesian approach for source localization, during simultaneous EEG and fMRI recording. We investigated whether the practice effects are determined solely by activity in stimulus-driven mechanisms or whether high-level attentional mechanisms, which are linked to the perceptual task, control the learning process. Results The results of fMRI analyses revealed significant attention and learning related activity in left and right superior temporal gyrus STG as well as the left inferior frontal gyrus IFG. Current source localization of simultaneously recorded EEG data was estimated using a variational Bayesian method. Analysis of current localized to the left inferior frontal gyrus and the right superior temporal gyrus revealed gamma band activity correlated with behavioral performance. Conclusions Rapid improvement in task performance is accompanied by plastic changes in the sensory cortex as well as superior areas gated by selective attention. Together the fMRI and EEG results suggest that gamma band activity in the right STG and left IFG plays an important role during perceptual learning.
机译:背景技术大量的证据表明,神经元对基本感觉刺激的功能特异性是可变的,并且需要经验。尽管功能磁共振成像实验已经研究了相对于知觉学习之前的大脑活动的变化,但尚未探索知觉学习期间的大脑活动。这项工作调查了脑电活动与听觉频率辨别学习有关,同时使用了脑电图和功能磁共振成像记录,使用了一种变分贝叶斯方法进行源定位。我们调查了练习效果是否仅由刺激驱动机制中的活动确定,还是与感知任务相关的高级注意力机制是否控制了学习过程。结果功能磁共振成像分析的结果显示,左,右颞上回STG以及左下额额回IFG具有明显的注意力和学习相关活动。使用变分贝叶斯方法估计同时记录的EEG数据的当前源定位。对局限于左下额回和右上颞回的电流的分析显示,伽马带活动与行为表现相关。结论任务表现的快速改善伴随着感觉皮层的塑性变化以及选择性注意控制的优势区域。 fMRI和EEG的结果共同表明,右STG和左IFG中的伽玛谱带活动在知觉学习中起重要作用。

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