Geangu Elena, Quadrelli Ermanno, Lewis James W, Macchi Cassia Viola, Turati Chiara
Department of Psychology, Lancaster University, Bailrigg, Lancaster LA1 4YF, United Kingdom.
Department of Psychology, University of Milano-Bicocca, Milano, 20126, Italy.
Dev Cogn Neurosci. 2015 Apr;12:134-44. doi: 10.1016/j.dcn.2015.01.005. Epub 2015 Jan 23.
Recent evidence suggests that human adults perceive human action sounds as a distinct category from human vocalizations, environmental, and mechanical sounds, activating different neural networks (Engel et al., 2009; Lewis et al., 2011). Yet, little is known about the development of such specialization. Using event-related potentials (ERP), this study investigated neural correlates of 7-month-olds' processing of human action (HA) sounds in comparison to human vocalizations (HV), environmental (ENV), and mechanical (MEC) sounds. Relative to the other categories, HA sounds led to increased positive amplitudes between 470 and 570ms post-stimulus onset at left anterior temporal locations, while HV led to increased negative amplitudes at the more posterior temporal locations in both hemispheres. Collectively, human produced sounds (HA+HV) led to significantly different response profiles compared to non-living sound sources (ENV+MEC) at parietal and frontal locations in both hemispheres. Overall, by 7 months of age human action sounds are being differentially processed in the brain, consistent with a dichotomy for processing living versus non-living things. This provides novel evidence regarding the typical categorical processing of socially relevant sounds.
最近的证据表明,成年人类将人类动作声音视为与人类发声、环境声音和机械声音不同的类别,激活不同的神经网络(恩格尔等人,2009年;刘易斯等人,2011年)。然而,对于这种专业化的发展知之甚少。本研究使用事件相关电位(ERP),调查了7个月大婴儿处理人类动作(HA)声音与人类发声(HV)、环境(ENV)和机械(MEC)声音相比的神经相关性。相对于其他类别,HA声音在刺激开始后470至570毫秒时,在左前颞叶位置导致正向振幅增加,而HV在两个半球更靠后的颞叶位置导致负向振幅增加。总体而言,与非生物声源(ENV+MEC)相比,人类产生的声音(HA+HV)在两个半球的顶叶和额叶位置导致了显著不同的反应模式。总体而言,到7个月大时,人类动作声音在大脑中得到了不同的处理,这与处理生物与非生物的二分法一致。这为社会相关声音的典型分类处理提供了新的证据。