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Sex and individual differences in induced and evoked EEG measures of action observation.

机译:诱发和诱发脑电图动作观察的性别和个体差异。

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We used two established methods for analysing the EEG response of the neurotypical adult human brain to examine the execution and observation of simple motor actions. In one, execution or observation of a button-press in response to a tone caused a decrease in the power at 8-13 Hz ("mu") frequencies. In the other, the response preparation (or the inferred response preparation when these actions are observed in another person) was measured by the averaged response time-locked potentials measured over motor cortex--the "readiness potential". Results indicated that the mirrored readiness potentials were bilaterally generated. We found sex differences for both measures. However, whereas females showed a greater degree of response for the mu power measure during the observation of movement only, males showed larger readiness potentials during both movement performance and observation. Both measures have been claimed to be neural correlates of mirror systems in the brain where processes responsible for actions are linked to the perception of such actions. Such mirror systems have also been implicated in higher order social cognition such as empathy. However, we found no correlations between either of our EEG measures and self-report scales of social cognition. The results imply sex differences in the measured systems and for mirroring that are not directly related to social cognition. We suggest that the results may indicate two dissociable motor mirroring systems that can be measured by induced and evoked EEG.
机译:我们使用了两种已建立的方法来分析成人典型神经元脑电图反应,以检查简单运动动作的执行和观察。在一种情况下,响应于音调而执行或观察按钮按下会导致8-13 Hz(“ mu”)频率的功率降低。另一方面,通过在运动皮层上测量的平均响应时间锁定电位(“准备电位”)来测量响应准备(或在其他人中观察到这些动作时推断的响应准备)。结果表明,镜像准备就绪电位是双边产生的。我们发现两种方法的性别差异。但是,尽管雌性仅在运动观察期间对亩功率测量显示出较大程度的响应,而雄性在运动表现和观察期间显示出更大的准备潜力。两种方法都被认为是大脑中镜子系统的神经相关因素,在大脑中负责动作的过程与这种动作的感知有关。这样的镜子系统也已经牵涉到更高层次的社会认知,例如移情。但是,我们发现我们的两种EEG测度与社会认知的自我报告量表之间都没有相关性。结果暗示被测系统和镜像中的性别差异与社会认知没有直接关系。我们建议,结果可能表明可以通过诱发和诱发的EEG来测量两个可分离的电机镜像系统。

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