Department of Kinesiology, BMH 3031, University of Waterloo, 200 University Ave. W, Waterloo, ON, N2L 3G1, Canada.
Exp Brain Res. 2013 May;226(4):503-12. doi: 10.1007/s00221-013-3462-z. Epub 2013 Mar 3.
Previous research suggests that somatosensory cortex is subject to modulation based on the relevancy of incoming somatosensory stimuli to behavioural goals. Recent fMRI findings provide evidence for modulation of primary somatosensory cortex when simultaneous visual and tactile stimuli were relevant to the performance of a motor task. The present study aimed to (1) determine the temporal characteristics of this modulation using event-related potentials (ERPs) and (2) investigate the role of task-relevance in mediating such a modulation. Electroencephalography was collected from healthy subjects during visual, vibrotactile or bimodal stimulation as they performed a sensory-guided motor task. Experiment 1 tested the hypothesis that simultaneous bimodal stimuli would be associated with modulation of somatosensory ERPs, and Experiment 2 tested the hypothesis that such effects would only be seen when both modalities are relevant. ERPs were time-locked to stimulus onset, and mean ERP amplitudes and latencies were extracted for the P50, P100, and N140. The bimodal condition in the first experiment was associated with larger amplitudes at both early and mid-latency components. The manipulation of task-relevance under bimodal conditions produced more complex results for the mid-latency components. For the P50, this enhancement was observed only when both stimuli were relevant, whereas the P100 was smallest when the tactile stimuli were not relevant to the response. These results provide evidence that crossmodal stimuli can modulate early somatosensory event-related potentials and that these effects are mediated by stimulus relevance.
先前的研究表明,躯体感觉皮层会根据传入的躯体感觉刺激与行为目标的相关性进行调节。最近的 fMRI 研究结果为当同时呈现视觉和触觉刺激与执行运动任务相关时,初级躯体感觉皮层的调节提供了证据。本研究旨在(1)使用事件相关电位(ERP)确定这种调节的时间特征,(2)研究任务相关性在介导这种调节中的作用。当健康受试者执行感觉指导的运动任务时,使用脑电图(EEG)同时记录他们在视觉、振动触觉或双模态刺激期间的电活动。实验 1 检验了这样一种假设,即同时呈现的双模态刺激与躯体感觉 ERP 的调节有关,实验 2 检验了这样一种假设,即只有当两种模态都相关时,才会出现这种效应。ERP 与刺激起始时间锁定,提取 P50、P100 和 N140 的平均 ERP 幅度和潜伏期。在第一个实验中,双模态条件与早期和中期潜伏期成分的幅度较大有关。在双模态条件下,任务相关性的操纵对中期潜伏期成分产生了更复杂的结果。对于 P50,只有当两个刺激都相关时才会出现这种增强,而当触觉刺激与反应不相关时,P100 最小。这些结果表明,跨模态刺激可以调节早期躯体感觉事件相关电位,并且这些效应是由刺激相关性介导的。