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Differential cortical processing of local and global motion information in biological motion: An event-related potential study

机译:生物运动中局部和全局运动信息的差异皮质处理:与事件相关的潜在研究

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摘要

To reveal the neural dynamics underlying biological motion processing, we introduced a novel golf-swing point-light motion (PLM) stimulus with an adaptation paradigm and measured event-related potentials (ERPs). In the adaptation phase, PLM and scrambled PLM (sPLM) stimuli were presented; a static point-lights stimulus was also presented as a control condition. In the subsequent test phase, PLM or sPLM stimuli were presented. We measured ERPs from the onset of the test phase. Two negative components were observed and modulated differently: the amplitude of the N1 component was significantly attenuated by PLM and sPLM adaptation stimuli compared with the static point-light adaptation stimulus, whereas the amplitude of the N2 component in response to the PLM test stimulus was significantly attenuated only by the PLM adaptation stimulus. The amplitude of the N2 component in response to the PLM test stimulus was significantly larger than that in response to the sPLM test stimulus when a sPLM or static adaptation stimulus was used. These findings indicate that the N1 component is sensitive to local motion information while the N2 component is sensitive to the presence of a coherent form conveyed by global motion.
机译:为了揭示生物运动处理背后的神经动力学,我们引入了一种新型的高尔夫挥杆点光运动(PLM)刺激,它具有适应范式和可测量的事件相关电位(ERP)。在适应阶段,提出了PLM和加扰PLM(sPLM)刺激。还提出了静态点光源刺激作为控制条件。在随后的测试阶段,提出了PLM或sPLM刺激。我们从测试阶段开始就测量了ERP。观察到两个负分量并对其进行了不同的调制:与静态点光自适应刺激相比,PLM和sPLM自适应刺激显着衰减了N1分量的幅度,而响应PLM测试刺激,N2分量的幅度显着降低了仅由PLM适应刺激衰减。当使用sPLM或静态适应刺激时,响应PLM测试刺激的N2分量的幅度明显大于响应sPLM测试刺激的N2分量的幅度。这些发现表明,N1分量对局部运动信息敏感,而N2分量对通过整体运动传达的相干形式的存在敏感。

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