首页> 外文期刊>Cortex: A Journal Devoted to the Study of the Nervous System and Behavior >Simultaneous recording of electroencephalographic data in musicians playing in ensemble.
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Simultaneous recording of electroencephalographic data in musicians playing in ensemble.

机译:在合奏中的音乐家同时记录脑电图数据。

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Here we describe a methodological approach for the simultaneous electroencephalographic (EEG) recording in musicians playing in ensemble. Four professional saxophonists wore pre-wired EEG caps (30 electrodes placed according to an augmented 10-20 system; cephalic reference and ground). Each cap was connected to a single multi-channel amplifier box [Brain Explorer (BE), EB-Neuro((c))]. The four boxes converged to a single workstation equipped with a software (GALILEO NT, EB-Neuro((c))) allowing the simultaneous recording of sounds, digital trigger, and EEG-electrooculographic (EOG)-electromyographic (EMG) data, and providing a separate output file for each individual. Noteworthy, the subjects were electrically decoupled to satisfy international safety guidelines. The quality of the EEG data was confirmed by the rate of artifact-free EEG epochs (about 80%) and by EEG spectral features. During the resting state, dominant EEG power density values were observed at alpha band (8-12Hz) in posterior cortex. The quality of EMG can be used to identify "on" and off investigation of the relationships between EEG dynamics and different characteristics of the specific performance. During the music performance, alpha power density values decreased in amplitude in several cortical regions, whereas power density values enhanced within narrow high-frequency bands. In conclusion, the present methodological approach appeared to be suitable for simultaneous EEG recordings in musicians playing in ensemble.
机译:在这里,我们描述了在合奏演奏的音乐家中同时进行脑电图(EEG)录音的方法学方法。四名专业的萨克斯管手戴上了预接线的EEG帽(根据增强的10-20系统放置了30个电极;头颅参考和接地)。每个盖子都连接到单个多通道放大器盒[Brain Explorer(BE),EB-Neuro((c))]。这四个盒子汇聚到一个配有软件(GALILEO NT,EB-Neuro((c)))的工作站上,该软件可以同时记录声音,数字触发和EEG-眼电图(EOG)-肌电图(EMG)数据,以及为每个人提供单独的输出文件。值得一提的是,对这些受试者进行了电气分离以满足国际安全准则。 EEG数据的质量由无伪影的EEG时期(约80%)和EEG光谱特征证实。在静止状态下,在后皮质的α带(8-12Hz)处观察到主要的EEG功率密度值。 EMG的质量可用于识别对EEG动力学与特定性能的不同特征之间的关系的“打开”和“关闭”调查。在音乐表演期间,α功率密度值在几个皮质区域中幅度减小,而功率密度值在狭窄的高频带内增强。总之,本方法学方法似乎适用于合奏演奏的音乐家同时进行EEG录音。

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