首页> 外文期刊>Cognitive Neurodynamics >Distinct dynamical patterns that distinguish willed and forced actions
【24h】

Distinct dynamical patterns that distinguish willed and forced actions

机译:区分意愿和强迫行为的独特动力模式

获取原文
获取原文并翻译 | 示例
           

摘要

The neural pathways for generating willed actions have been increasingly investigated since the famous pioneering work by Benjamin Libet on the nature of free will. To better understand what differentiates the brain states underlying willed and forced behaviours, we performed a study of chosen and forced actions over a binary choice scenario. Magnetoencephalography recordings were obtained from six subjects during a simple task in which the subject presses a button with the left or right finger in response to a cue that either (1) specifies the finger with which the button should be pressed or (2) instructs the subject to press a button with a finger of their own choosing. Three independent analyses were performed to investigate the dynamical patterns of neural activity supporting willed and forced behaviours during the preparatory period preceding a button press. Each analysis offered similar findings in the temporal and spatial domains and in particular, a high accuracy in the classification of single trials was obtained around 200 ms after cue presentation with an overall average of 82%. During this period, the majority of the discriminatory power comes from differential neural processes observed bilaterally in the parietal lobes, as well as some differences in occipital and temporal lobes, suggesting a contribution of these regions to willed and forced behaviours.
机译:自从本杰明·利贝特(Benjamin Libet)著名的关于自由意志性质的开创性工作以来,人们就越来越多地研究了产生意志行动的神经途径。为了更好地理解是什么区分了意愿行为和强迫行为的大脑状态,我们对二元选择场景下的选择行为和强迫行为进行了研究。在一个简单的任务中,从六名受试者获得了磁脑记录,其中受试者响应于提示(1)指定应该按下该按钮的手指,或者(2)指示要按下该按钮的提示,用左手或右手按下按钮。需用自己选择的手指按下按钮。进行了三个独立的分析,以调查在按下按钮之前的准备期间支持意愿和强迫行为的神经活动的动力学模式。每种分析在时间和空间方面都提供相似的发现,特别是提示提示后200 ms左右,单项试验的分类准确率很高,总体平均为82%。在此期间,大多数辨别力来自双侧在顶叶上观察到的差异性神经过程,以及枕叶和颞叶的一些差异,表明这些区域对自愿和强迫行为的贡献。

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