被动聆听过程中女性听觉加工强于男性的电生理特征。

IF 2 4区 医学 Q3 NEUROSCIENCES Cognitive Neuroscience Pub Date : 2021-07-01 Epub Date: 2020-09-08 DOI:10.1080/17588928.2020.1806224
Marika Berchicci, Valentina Bianco, Francesco Di Russo
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引用次数: 3

摘要

现有文献表明,听觉皮层的解剖结构和功能与性别有关。然而,关于被动倾听的数据很少。通过事件相关电位(ERPs),我们分析了36名健康青年参与者与被动倾听相关的主动和被动加工阶段,男女比例相等。前正性(aP)是一种新发现的源自听觉皮层的前刺激成分,可指示听觉准备程度,性别间无显著差异;刺激后成分(源自初级和次级听觉皮层的N1和N2)在雌性中大于雄性。这些结果不仅为听力过程中与性别相关的差异提供了重要的见解,而且还鼓励了被动任务的潜在使用,这可以更好地理解基本的神经处理,而不会受到主动任务的认知要求的干扰。
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Electrophysiological sign of stronger auditory processing in females than males during passive listening.

Available literature shows sex-related differences in both anatomy and functions of the auditory cortex. However, only few data are available on passive listening. By means of event-related potentials (ERPs), we analyzed the proactive and reactive stages of processing related to passive listening in 36 healthy young participants, equally balanced between genders. The anterior positivity (aP), a newly discovered pre-stimulus component originating in auditory cortices and indexing auditory readiness, was not different between genders; the post-stimulus components (the N1 and the N2, originating in primary and secondary auditory cortices) were larger in females than males. These results not only provide significant insights on sex-related differences during listening, but also encourage the potential use of passive tasks, which allow for better understanding of basic neural processing, without interferences from cognitive requirements of active tasks.

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来源期刊
Cognitive Neuroscience
Cognitive Neuroscience NEUROSCIENCES-
CiteScore
3.60
自引率
0.00%
发文量
27
审稿时长
>12 weeks
期刊介绍: Cognitive Neuroscience publishes high quality discussion papers and empirical papers on any topic in the field of cognitive neuroscience including perception, attention, memory, language, action, social cognition, and executive function. The journal covers findings based on a variety of techniques such as fMRI, ERPs, MEG, TMS, and focal lesion studies. Contributions that employ or discuss multiple techniques to shed light on the spatial-temporal brain mechanisms underlying a cognitive process are encouraged.
期刊最新文献
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