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首页> 外文期刊>Clinical neurophysiology >EEG dipole analysis of motor-priming foreperiod activity reveals separate sources for motor and spatial attention components.
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EEG dipole analysis of motor-priming foreperiod activity reveals separate sources for motor and spatial attention components.

机译:运动启动前脑活动的脑电偶极分析揭示了运动和空间注意成分的不同来源。

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OBJECTIVE: This study employed EEG source localisation procedures to study the contribution of motor preparatory and attentional processing to foreperiod activity in an S1-S2 motor priming task. METHODS: Behavioural and high-density event-related potential (ERP) data were recorded in an S1-S2 priming task where participants responded to S2 with a left or right-hand button press. S1 either provided information about response hand (informative) or ambiguous information (uninformative). RESULTS: Responses were significantly faster in informative trials compared with uninformative trials. Dipole source analysis of foreperiod lateralized ERPs revealed sources of motor preparatory activity in the dorsolateral premotor cortex (PMd) in line with previous work. In addition, two spatial attention components (ADAN, LDAP) were identified with generators in the PMd and occipitotemporal visual areas in the middle temporal (MT) region, respectively. Separation of motor-related and attentional PMd source locations wasreliable along the rostral-caudal axis. CONCLUSIONS: The presence of attentional components in a motor priming paradigm supports the premotor theory of attention which suggests a close link between attention and motor preparatory processes. Separation of components in the premotor cortex is in accord with a functional division of PMd into rostral (higher-order processing) and caudal (motor-related processing) areas as suggested by imaging work. SIGNIFICANCE: A prime for response preparation is a trigger for separate, but closely linked, attention-related activity in premotor areas.
机译:目的:本研究采用脑电图源定位程序来研究运动准备和注意处理对S1-S2运动启动任务中前驱活动的贡献。方法:行为和高密度事件相关电位(ERP)数据记录在S1-S2启动任务中,参与者通过左或右按钮按下来响应S2。 S1提供了有关响应手的信息(信息性的)或模棱两可的信息(非信息性的)。结果:与非信息性试验相比,信息性试验的反应明显更快。前极侧向ERPs的偶极子源分析揭示了背侧前运动皮层(PMd)中运动准备活动的来源,与先前的工作一致。此外,分别通过PMd和中间颞部(MT)区域的枕颞视觉区域中的生成器识别了两个空间注意组件(ADAN,LDAP)。沿头尾轴可靠地分离运动相关和注意PMd源位置。结论:运动启动范例中注意组件的存在支持了运动前注意理论,该理论表明注意与运动准备过程之间存在密切联系。运动前皮质中各组分的分离与成像工作所建议的将PMd的功能划分为眼部(高阶处理)和尾部(与运动相关的处理)区域相一致。意义:准备反应的主要条件是引发运动前区域中与注意力相关的单独活动的触发因素。

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