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首页> 外文期刊>Frontiers in Psychology >Context effects on processing widely deviant sounds in newborn infants
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Context effects on processing widely deviant sounds in newborn infants

机译:上下文对新生婴儿声音异常处理的影响

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Detecting and orienting toward sounds carrying new information is a crucial feature of the human brain that supports adaptation to the environment. Rare, acoustically widely deviant sounds presented amongst frequent tones elicit large event-related brain potentials (ERPs) in neonates. Here we tested whether these discriminative ERP responses reflect only the activation of fresh afferent neuronal populations (i.e., neuronal circuits not affected by the tones) or they also index the processing of contextual mismatch between the rare and the frequent sounds. In two separate experiments, we presented sleeping newborns with 150 different environmental sounds and the same number of white noise bursts. Both sounds served either as deviants in an oddball paradigm with the frequent standard stimulus a tone (Novel/Noise deviant), or as the standard stimulus with the tone as deviant (Novel/Noise standard), or they were delivered alone with the same timing as the deviants in the oddball condition (Novel/Noise alone). Whereas the ERP responses to noise-deviants elicited similar responses as the same sound presented alone, the responses elicited by environmental sounds in the corresponding conditions morphologically differed from each other. Thus whereas the ERP response to the noise sounds can be explained by the different refractory state of stimulus-specific neuronal populations, the ERP response to environmental sounds indicated context-sensitive processing. These results provide evidence for an innate tendency of context-dependent auditory processing as well as a basis for the different developmental trajectories of processing acoustical deviance and contextual novelty.
机译:检测并定向携带新信息的声音是支持适应环境的人脑的重要功能。在频繁的音调中出现的罕见的,声音宽泛的声音异常会在新生儿中引起与事件相关的大脑电势(ERP)。在这里,我们测试了这些有区别的ERP响应是否仅反映了新鲜传入神经元群体(即不受音调影响的神经元回路)的激活,或者它们还索引了罕见声音和频繁声音之间的上下文不匹配的处理。在两个单独的实验中,我们为睡眠中的新生儿提供了150种不同的环境声音和相同数量的白噪声爆发。两种声音要么作为具有频繁标准刺激音调的奇异球范例中的偏离(轻声/杂音标准),要么作为具有异常音调的标准刺激(轻便/噪声标准),或者在相同的时机单独交付作为怪异状态下的变态者(仅小说/杂音)。尽管ERP对噪声偏差的响应与单独呈现的相同声音引起的响应相似,但在相应条件下环境声音引起的响应在形态上彼此不同。因此,尽管ERP对噪声的响应可以通过刺激特定神经元群体的不同不应状态来解释,但ERP对环境声音的响应表明上下文相关处理。这些结果提供了上下文相关听觉处理的固有趋势的证据,并为处理声学异常和上下文新颖性的不同发展轨迹提供了基础。

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