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Delayed response to animate implied motion in human motion processing areas

机译:在人类运动处理区域中对动画隐含运动的延迟响应

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摘要

Viewing static photographs of objects in motion evokes higher fMRI activation in the human medial temporal complex (MT+) than looking at similar photographs without this implied motion. As MT+ is traditionally thought to be involved in motion perception (and not in form perception), this finding suggests feedback from object-recognition areas onto MT+. To investigate this hypothesis, we recorded extracranial potentials evoked by the sight of photographs of biological agents with and without implied motion. The difference in potential between responses to pictures with and without implied motion was maximal between 260 and 400 msec after stimulus onset. Source analysis of this difference revealed one bilateral, symmetrical dipole pair in the occipital lobe. This area also showed a response to real motion, but approximately 100 msec earlier than the implied motion response. The longer latency of the implied motion response in comparison to the real motion response is consistent with a feedback projection onto MT+ following object recognition in higher-level temporal areas.
机译:与在没有这种隐含运动的情况下观看相似的照片相比,观看运动中的对象的静态照片在人内侧颞部复合体(MT +)中引起更高的fMRI激活。传统上认为MT +参与运动感知(而不是形式感知),因此该发现表明对象识别区域会反馈到MT +。为了研究这个假设,我们记录了有或没有隐含运动的生物制剂照片引起的颅外电位。刺激发生后,在有和没有隐式运动的情况下,对图片的响应之间的电势差最大,介于260和400毫秒之间。对该差异的来源分析表明,枕叶中有一对双侧对称偶极子对。该区域还显示了对真实运动的响应,但比隐含运动响应早了约100毫秒。与真实运动响应相比,隐含运动响应的等待时间更长,这与在较高级别的时间区域中识别对象之后将反馈投影到MT +上一致。

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