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Human infants dissociate structural and dynamic information in biological motion: evidence from neural systems

机译:人类婴儿分离生物运动中的结构和动态信息:来自神经系统的证据

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This study investigates how human infants process and interpret human movement. Neural correlates to the perception of (i) possible biomechanical motion, (ii) impossible biomechanical motion and (iii) biomechanically possible motion but nonhuman ‘corrupted’ body schema were assessed in infants of 8 months. Analysis of event-related potentials resulting from the passive viewing of these point-light displays (PLDs) indicated a larger positive amplitude over parietal channels between 300 and 700 ms for observing biomechanically impossible PLDs when compared with other conditions. An early negative activation over frontal channels between 200 and 350 ms dissociated schematically impossible PLDs from other conditions. These results show that in infants, different cognitive systems underlie the processing of structural and dynamic features by 8 months of age.
机译:这项研究调查了人类婴儿如何处理和解释人类运动。神经与以下感知有关:(i)可能的生物力学运动;(ii)不可能的生物力学运动;以及(iii)生物力学可能的运动,但对8个月婴儿进行了非人类“腐败”的身体形态评估。对这些点光源显示器(PLD)的被动观察所产生的与事件相关的电位的分析表明,与其他情况相比,用于观察生物力学上不可能的PLD的顶壁通道在300毫秒至700毫秒之间具有更大的正振幅。在200到350 ms之间的额叶通道上进行的早期负激活将示意性地将不可能的PLD与其他情况分离开。这些结果表明,在婴儿中,到8个月大时,不同的认知系统是结构和动态特征处理的基础。

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