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Brain complexity analysis of functional near infrared spectroscopy for working memory study

机译:工作记忆研究中功能近红外光谱近红外光谱的脑复杂性分析

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Working memory is an important brain function for memorizing information in everyday life. This study proposed an alternative approach for analyzing visual working memory based on brain complexity to identify brain state condition for memorizing new scenes. Multi-scale entropy (MSE) was used for analyzing the complexity of function Near Infrared Spectroscopy (fNIRS) data measuring the hemodynamic response of brain during a cognitive experiment. The results revealed the distinctive entropy between remembered and forgotten cases in premotor cortex area at FC3 position. The entropy of remembered case is higher than that of forgotten case; this could indicate that the brain requires more activity and, then, more hemodynamic responses for good memorizing. Hence, the results indicated the potential of using the complexity of fNIRS for characterizing the brain state for working memory.
机译:工作记忆是记忆日常生活中信息的重要大脑功能。本研究提出了一种基于大脑复杂性分析视觉工作记忆的替代方法,以确定纪念新场景的脑状态条件。多尺度熵(MSE)用于分析红外光谱(FNIRS)数据近的功能的复杂性,测量认知实验期间脑血液动力学响应。结果表明,在FC3位置的热量皮质区域中的记住和被遗忘的病例之间的独特熵。记住案例的熵高于被遗忘的案例;这可能表明大脑需要更多的活动,然后更好地造成血液动力学的反应,以满足良好的记忆。因此,结果表明了使用Fnir的复杂性来表征工作记忆的脑状态的潜力。

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