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选择性皮质生物运动处理在婴幼儿中的映射。

Selective cortical mapping of biological motion processing in young infants.

机构信息

Centre for Brain and Cognitive Development, Birkbeck, University of London, Henry Wellcome Building, London, United Kingdom.

出版信息

J Cogn Neurosci. 2011 Sep;23(9):2521-32. doi: 10.1162/jocn.2010.21598. Epub 2010 Oct 18.

Abstract

How specialized is the infant brain for perceiving the facial and manual movements displayed by others? Although there is evidence for a network of regions that process biological motion in adults--including individuated responses to the perception of differing facial and manual movements--how this cortical specialization develops remains unknown. We used functional near-infrared spectroscopy [Lloyd-Fox, S., Blasi, A., & Elwell, C. Illuminating the developing brain: The past, present and future of functional near-infrared spectroscopy. Neuroscience and Biobehavioral Reviews, 34, 269-284, 2010] to investigate the ability of 5-month-old infants to process differing biological movements. Infants watched videos of adult actors moving their hands, their mouth, or their eyes, all in contrast to nonbiological mechanical movements, while hemodynamic responses were recorded over the their frontal and temporal cortices. We observed different regions of the frontal and temporal cortex that responded to these biological movements and different patterns of cortical activation according to the type of movement watched. From an early age, our brains selectively respond to biologically relevant movements, and further, selective patterns of regional specification to different cues occur within what may correspond to a developing "social brain" network. These findings illuminate hitherto undocumented maps of selective cortical activation to biological motion processing in the early postnatal development of the human brain.

摘要

婴儿大脑在感知他人呈现的面部和手部动作方面有多专业?虽然有证据表明,成年人的大脑中有一个处理生物运动的区域网络,包括对不同面部和手部运动感知的个体化反应,但这种皮质特化是如何发展的仍然未知。我们使用功能近红外光谱[Lloyd-Fox,S.,Blasi,A.,& Elwell,C. 照亮发展中的大脑:功能近红外光谱的过去、现在和未来。神经科学与生物行为评论,34,269-284,2010]来研究 5 个月大的婴儿处理不同生物运动的能力。婴儿观看成年演员手部、嘴巴或眼睛运动的视频,所有这些都与非生物机械运动形成对比,同时记录他们额叶和颞叶的血液动力学反应。我们观察到额叶和颞叶的不同区域对这些生物运动有反应,并且根据观看的运动类型,大脑会出现不同的皮质激活模式。从很小的时候起,我们的大脑就会选择性地对生物相关运动做出反应,而且在可能对应于正在发育的“社交大脑”网络中,不同线索的区域特异性会出现选择性模式。这些发现阐明了迄今为止未被记录的选择性皮质激活图谱,用于人类大脑在出生后早期发育过程中的生物运动处理。

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