Puschmann Sebastian, Huster René J, Thiel Christiane M
Biological Psychology Lab, Department of Psychology, Cluster of Excellence "Hearing4all,", European Medical School, Carl Von Ossietzky University, Oldenburg, Germany.
Department of Psychology, University of Oslo, Oslo, Norway.
Hum Brain Mapp. 2016 Oct;37(10):3400-16. doi: 10.1002/hbm.23248. Epub 2016 Jun 9.
The cortical processing of changes in auditory input involves auditory sensory regions as well as different frontoparietal brain networks. The spatiotemporal dynamics of the activation spread across these networks has, however, not been investigated in detail so far. We here approached this issue using concurrent functional magnetic resonance imaging (fMRI) and electroencephalography (EEG), providing us with simultaneous information on both the spatial and temporal patterns of change-related activity. We applied an auditory stimulus categorization task with switching categorization rules, allowing to analyze change-related responses as a function of the changing sound feature (pitch or duration) and the task relevance of the change. Our data show the successive progression of change-related activity from regions involved in early change detection to the ventral and dorsal attention networks, and finally the central executive network. While early change detection was found to recruit feature-specific networks involving auditory sensory but also frontal and parietal brain regions, the later spread of activity across the frontoparietal attention and executive networks was largely independent of the changing sound feature, suggesting the existence of a general feature-independent processing pathway of change-related information. Task relevance did not modulate early auditory sensory processing, but was mainly found to affect processing in frontal brain regions. Hum Brain Mapp 37:3400-3416, 2016. © 2016 Wiley Periodicals, Inc.
听觉输入变化的皮质处理涉及听觉感觉区域以及不同的额顶脑网络。然而,到目前为止,激活在这些网络中传播的时空动态尚未得到详细研究。我们在此使用同步功能磁共振成像(fMRI)和脑电图(EEG)来解决这个问题,为我们提供与变化相关活动的空间和时间模式的同时信息。我们应用了一个具有切换分类规则的听觉刺激分类任务,从而能够根据变化的声音特征(音高或时长)以及变化的任务相关性来分析与变化相关的反应。我们的数据显示,与变化相关的活动从参与早期变化检测的区域依次进展到腹侧和背侧注意网络,最后到达中央执行网络。虽然发现早期变化检测会招募涉及听觉感觉以及额叶和顶叶脑区的特征特异性网络,但活动随后在额顶注意和执行网络中的传播在很大程度上与变化的声音特征无关,这表明存在一条与变化相关信息的通用特征独立处理通路。任务相关性并未调节早期听觉感觉处理,但主要发现其影响额叶脑区的处理。《人类大脑图谱》37:3400 - 3416, 2016。© 2016威利期刊公司。