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首页> 外文期刊>BMC Neuroscience >From upright to upside-down presentation: A spatio-temporal ERP study of the parametric effect of rotation on face and house processing
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From upright to upside-down presentation: A spatio-temporal ERP study of the parametric effect of rotation on face and house processing

机译:从立式到倒置演示:时空ERP研究旋转对面部和房屋加工的参数影响

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Background While there is a general agreement that picture-plane inversion is more detrimental to face processing than to other seemingly complex visual objects, the origin of this effect is still largely debatable. Here, we address the question of whether face inversion reflects a quantitative or a qualitative change in processing mode by investigating the pattern of event-related potential (ERP) response changes with picture plane rotation of face and house pictures. Thorough analyses of topographical (Scalp Current Density maps, SCD) and dipole source modeling were also conducted. Results We find that whilst stimulus orientation affected in a similar fashion participants' response latencies to make face and house decisions, only the ERPs in the N170 latency range were modulated by picture plane rotation of faces. The pattern of N170 amplitude and latency enhancement to misrotated faces displayed a curvilinear shape with an almost linear increase for rotations from 0° to 90° and a dip at 112.5° up to 180° rotations. A similar discontinuity function was also described for SCD occipito-temporal and temporal current foci with no topographic distribution changes, suggesting that upright and misrotated faces activated similar brain sources. This was confirmed by dipole source analyses showing the involvement of bilateral sources in the fusiform and middle occipital gyri, the activity of which was differentially affected by face rotation. Conclusion Our N170 findings provide support for both the quantitative and qualitative accounts for face rotation effects. Although the qualitative explanation predicted the curvilinear shape of N170 modulations by face misrotations, topographical and source modeling findings suggest that the same brain regions, and thus the same mechanisms, are probably at work when processing upright and rotated faces. Taken collectively, our results indicate that the same processing mechanisms may be involved across the whole range of face orientations, but would operate in a non-linear fashion. Finally, the response tuning of the N170 to rotated faces extends previous reports and further demonstrates that face inversion affects perceptual analyses of faces, which is reflected within the time range of the N170 component.
机译:背景技术尽管人们普遍认为,与其他看似复杂的视觉对象相比,图像平面反转对面部处理的危害更大,但这种影响的根源仍然值得商de。在这里,我们通过研究事件相关电位(ERP)响应随人脸和房屋图片的图像平面旋转而变化的模式,来解决人脸反转是否反映处理模式中的定量变化或质量变化的问题。还进行了地形分析(头皮电流密度图,SCD)和偶极子源建模。结果我们发现,虽然刺激方向以相似的方式影响参与者做出面部和房屋决策的反应潜伏期,但只有N170潜伏期范围内的ERP受到面部图像平面旋转的调节。 N170振幅和对误旋转面的潜伏时间增强的模式显示出曲线形状,从0°到90°的旋转几乎呈线性增加,并且在112.5°到180°的旋转都有下降。还针对SCD枕颞和颞部电流灶描述了类似的间断功能,并且没有地形分布变化,这表明直立和旋转错误的面部激活了类似的脑源。偶极子来源分析证实了这一点,该分析表明双侧来源参与了梭形和枕中回,它们的活动受面部旋转的影响不同。结论我们的N170研究结果为面部旋转效应的定量和定性分析提供了支持。尽管定性解释通过面部旋转错误预测了N170调制的曲线形状,但是地形和源模型的发现表明,在处理直立和旋转的面部时,相同的大脑区域以及相同的机制很可能起作用。综上所述,我们的结果表明,相同的处理机制可能涉及整个面部朝向,但是会以非线性方式运行。最后,N170对旋转的面部的响应调整扩展了先前的报告,并进一步证明了面部反转会影响面部的感知分析,这反映在N170组件的时间范围内。

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