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Task-Specific Modulation of Human Auditory Evoked Response in a Delayed-Match-To-Sample Task

机译:延迟匹配样本任务中人类听觉诱发反应的任务特定调制。

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摘要

In this study, we focus our investigation on task-specific cognitive modulation of early cortical auditory processing in human cerebral cortex. During the experiments, we acquired whole-head magnetoencephalography data while participants were performing an auditory delayed-match-to-sample (DMS) task and associated control tasks. Using a spatial filtering beamformer technique to simultaneously estimate multiple source activities inside the human brain, we observed a significant DMS-specific suppression of the auditory evoked response to the second stimulus in a sound pair, with the center of the effect being located in the vicinity of the left auditory cortex. For the right auditory cortex, a non-invariant suppression effect was observed in both DMS and control tasks. Furthermore, analysis of coherence revealed a beta band (12∼20 Hz) DMS-specific enhanced functional interaction between the sources in left auditory cortex and those in left inferior frontal gyrus, which has been shown to be involved in short-term memory processing during the delay period of DMS task. Our findings support the view that early evoked cortical responses to incoming acoustic stimuli can be modulated by task-specific cognitive functions by means of frontal–temporal functional interactions.
机译:在这项研究中,我们将研究重点放在人类大脑皮层的早期皮质听觉处理的特定于任务的认知调节上。在实验过程中,我们在参与者执行听觉延迟匹配样本(DMS)任务和相关控制任务的同时获取了整个头部的脑磁图数据。使用空间滤波波束形成器技术同时估计人脑内部的多种源活动,我们观察到了声音对第二刺激的听觉诱发反应的显着DMS特异性抑制,其作用中心位于附近左听皮层。对于右听皮层,在DMS和控制任务中均观察到了不变的抑制作用。此外,相干性分析显示,左侧听觉皮层和左侧下额回之间的β-带(12〜20 Hz)DMS特异性增强的功能相互作用,已被证明参与了短时记忆过程中。 DMS任务的延迟时间。我们的发现支持这样的观点,即早期特定的认知功能可以通过额颞功能相互作用来调节早期诱发的皮层对传入声刺激的反应。

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