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Towards the bio-personalization of music recommendation systems: A single-sensor EEG biomarker of subjective music preference

机译:迈向音乐推荐系统的生物个性化:主观音乐偏好的单传感器EEG生物标记

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Recent advances in biosensors technology and mobile electroencephalographic (EEG)-interfaces have opened new application fields for cognitive monitoring. A computable biomarker for the assessment of spontaneous aesthetic brain responses during music listening is introduced here. It derives from well-established measures of cross-frequency coupling (CFC) and quantifies the music-induced alterations in the dynamic relationships between brain rhythms. During a stage of exploratory analysis, and using the signals from a suitably designed experiment, we established the biomarker, which acts on brain activations recorded over the left prefrontal cortex and focuses on the functional coupling between high-beta and low-gamma oscillations. Based on data from an additional experimental paradigm, we validated the introduced biomarker and showed its relevance for expressing the subjective aesthetic appreciation of a piece of music. Our approach resulted in an affordable tool that can promote human machine interaction and, by serving as, a personalized music annotation strategy, can be potentially integrated into modern flexible music recommendation systems. (C) 2016 Elsevier Inc. All rights reserved.
机译:生物传感器技术和移动脑电图(EEG)接口的最新进展为认知监测打开了新的应用领域。这里介绍了一种可计算的生物标记,用于评估音乐聆听过程中自发的审美大脑反应。它源自完善的跨频耦合(CFC)量度,并量化了音乐诱发的脑节律之间动态关系的变化。在探索性分析阶段,并使用适当设计的实验中的信号,我们建立了生物标志物,其作用于记录在左前额叶皮层上的大脑激活,并着重于高β和低伽马振荡之间的功能耦合。基于来自其他实验范式的数据,我们验证了引入的生物标记,并证明了其与表达音乐的主观审美欣赏的相关性。我们的方法产生了一种价格合理的工具,可以促进人机交互,并且通过充当个性化的音乐注释策略,可以潜在地集成到现代灵活的音乐推荐系统中。 (C)2016 Elsevier Inc.保留所有权利。

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