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Neuronal Mental Workload Registration during Execution of Cognitive Tasks

机译:执行认知任务期间的神经元心理工作量注册

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Neuronal workload measurement is a key-technology for optimizing work conditions in human-machine systems. Specific aims are the identification of neurophysiological parameters indicative for workload and their validation by systematic variation of external load conditions. The battery consists of tasks with diverse complexity and difficulty. The sample consists of 34 people and shows high variability in respect to the cognitive capacity and hence to the experienced mental workload. The electroencephalogram (EEG) as well as further workload relevant bio signal data and the NASA-TLX as a subjective questionnaire method are registered. Results from the NASA-TLX questionnaire reveal the predominant role of the mental dimension at the implemented task battery. Furthermore, the NASA-TLX indicates the existence of diverse levels of difficulty with several tasks per level. Analysis of EEG spectra demonstrates an increase of frontal theta band power and a decrease of alpha band power with increasing task difficulty level.
机译:神经元工作量测量是用于优化人机系统工作条件的一项关键技术。具体目标是识别指示工作量的神经生理参数,并通过系统地改变外部负荷条件对其进行验证。电池由复杂度和难度各异的任务组成。该样本由34人组成,并且在认知能力和因此有经验的精神工作量方面显示出高度的可变性。脑电图(EEG)以及其他与工作量相关的生物信号数据和NASA-TLX作为主观问卷调查方法进行了注册。 NASA-TLX调查表的结果表明,心理维度在已实施任务组中的主要作用。此外,NASA-TLX指出存在各种难度级别,每个级别都有多项任务。脑电波频谱分析表明,随着任务难度的提高,额叶θ带功率增加,而α带功率减小。

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