Modulation of neuromagnetic oscillatory activity during the observation of oro-facial movements.

S D Muthukumaraswamy, B W Johnson, W C Gaetz, D O Cheyne
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Abstract

A number of MEG/EEG studies have shown modulation of endogenous sensorimotor (mu and beta) rhythms during the observation of hand movements. These modulations are similar to patterns that occur during execution of movement and it has been hypothesised that the neural substrates of these rhythms may play a role in action representation and understanding the actions of others. In this experiment we wished to determine whether similar responses would be obtained during the observation of oro-facial movements. Neuromagnetic recordings (151 channels, CTF Systems) were obtained from six healthy subjects while they (1) observed a video of an experimenter making oro-facial movements (2) imitated the same movements and (3) observed hand movements. Source scanning using synthetic aperture magnetometry (SAM) was used to find changes in source power between these active conditions compared to pre-stimulus control conditions where no movement occurred. SAM images were created with 5 mm resolution in the beta (15-35 Hz) and mu (8-15 Hz) bands and showed source power decreases over parietal, occipital and sensorimotor areas. Time-frequency analysis of virtual SAM sensors from sensorimotor areas showed event-related desynchronisation of mu and beta bands following the onset of movement in all three conditions. These data demonstrate comparable activations of visuomotor mechanisms during observation or imitation of mouth movements and during observation of hand movements. These results support the notion that sensorimotor mechanisms play a role in achieving a representation of the oro-facial gestures of others.

观察面部运动时神经磁振荡活动的调节。
许多MEG/EEG研究表明,在观察手部运动时,内源性感觉运动(mu和beta)节律受到调节。这些调节与运动过程中发生的模式相似,据推测,这些节律的神经基质可能在动作表征和理解他人的动作中发挥作用。在这个实验中,我们希望确定在观察面部运动时是否会得到类似的反应。在6名健康受试者(1)观看实验者做面部动作的视频(2)模仿同样的动作(3)观察手的动作时,获得了神经磁记录(151通道,CTF系统)。使用合成孔径磁强计(SAM)进行源扫描,以发现与未发生运动的预刺激控制条件相比,这些活动条件下源功率的变化。在beta (15-35 Hz)和mu (8-15 Hz)波段以5mm分辨率创建SAM图像,显示源功率在顶叶、枕部和感觉运动区域下降。来自感觉运动区域的虚拟SAM传感器的时频分析显示,在所有三种情况下,mu和β带在运动开始后发生了与事件相关的非同步。这些数据表明,在观察或模仿嘴部运动和观察手部运动时,视觉运动机制的激活具有可比性。这些结果支持了感觉运动机制在实现对他人面部手势的表征中起作用的观点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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