Fiedler Lorenz, Wöstmann Malte, Graversen Carina, Brandmeyer Alex, Lunner Thomas, Obleser Jonas
Department of Psychology, University of Lübeck, Lübeck, Germany. Max Planck Research Group 'Auditory Cognition', Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.
J Neural Eng. 2017 Jun;14(3):036020. doi: 10.1088/1741-2552/aa66dd. Epub 2017 Apr 6.
Conventional, multi-channel scalp electroencephalography (EEG) allows the identification of the attended speaker in concurrent-listening ('cocktail party') scenarios. This implies that EEG might provide valuable information to complement hearing aids with some form of EEG and to install a level of neuro-feedback.
To investigate whether a listener's attentional focus can be detected from single-channel hearing-aid-compatible EEG configurations, we recorded EEG from three electrodes inside the ear canal ('in-Ear-EEG') and additionally from 64 electrodes on the scalp. In two different, concurrent listening tasks, participants (n = 7) were fitted with individualized in-Ear-EEG pieces and were either asked to attend to one of two dichotically-presented, concurrent tone streams or to one of two diotically-presented, concurrent audiobooks. A forward encoding model was trained to predict the EEG response at single EEG channels.
Each individual participants' attentional focus could be detected from single-channel EEG response recorded from short-distance configurations consisting only of a single in-Ear-EEG electrode and an adjacent scalp-EEG electrode. The differences in neural responses to attended and ignored stimuli were consistent in morphology (i.e. polarity and latency of components) across subjects.
In sum, our findings show that the EEG response from a single-channel, hearing-aid-compatible configuration provides valuable information to identify a listener's focus of attention.
传统的多通道头皮脑电图(EEG)能够在同时聆听(“鸡尾酒会”)场景中识别出被关注的说话者。这意味着脑电图可能提供有价值的信息,以某种形式的脑电图来补充助听器,并实现一定程度的神经反馈。
为了研究是否能从单通道助听器兼容的脑电图配置中检测到听众的注意力焦点,我们记录了耳道内三个电极(“耳内脑电图”)以及头皮上另外64个电极的脑电图。在两项不同的同时聆听任务中,参与者(n = 7)佩戴个性化的耳内脑电图装置,被要求关注两个双耳呈现的同时出现的音调流之一,或者两个双耳呈现的同时出现的有声读物之一。训练了一个前向编码模型来预测单个脑电图通道的脑电图反应。
每个参与者的注意力焦点都可以从仅由单个耳内脑电图电极和相邻头皮脑电图电极组成的短距离配置记录的单通道脑电图反应中检测到。不同受试者对被关注和被忽略刺激的神经反应差异在形态学上(即成分的极性和潜伏期)是一致的。
总之,我们的研究结果表明,单通道助听器兼容配置的脑电图反应为识别听众的注意力焦点提供了有价值的信息。