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Load-dependent brain activation assessed by time-domain functional near-infrared spectroscopy during a working memory task with graded levels of difficulty

机译:在难度分级的工作记忆任务中,通过时域功能近红外光谱法评估负荷依赖性大脑的激活

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摘要

We evaluated frontal brain activation during a mixed attentional/working memory task with graded levels of difficulty in a group of 19 healthy subjects, by means of time-domain functional near-infrared spectroscopy (fNIRS). Brain activation was assessed, and load-related oxy- and deoxy-hemoglobin changes were studied. Generalized linear model (GLM) was applied to the data to explore the metabolic processes occurring during the mental effort and, possibly, their involvement in short-term memorization. GLM was applied to the data twice: for modeling the task as a whole and for specifically investigating brain activation at each cognitive load. This twofold employment\udof GLM allowed (1) the extraction and isolation of different information from the same signals, obtained\udthrough the modeling of different cognitive categories (sustained attention and working memory), and (2) the\udevaluation of model fitness, by inspection and comparison of residuals (i.e., unmodeled part of the signal) obtained\udin the two different cases. Results attest to the presence of a persistent attentional-related metabolic activity, superimposed\udto a task-related mnemonic contribution. Some hemispherical differences have also been highlighted frontally: deoxy-hemoglobin changes manifested a strong right lateralization, whereas modifications in oxy- and total hemoglobin showed a medial localization. The present work successfully explored the capability of fNIRS to detect the two neurophysiological categories under investigation and distinguish their activation patterns.
机译:我们通过时域功能性近红外光谱(fNIRS)评估了19名健康受试者的混合注意力/工作记忆任务中的额度难度分级。评估了大脑的激活,并研究了负荷相关的氧合和脱氧血红蛋白变化。将广义线性模型(GLM)应用于数据,以探讨在脑力劳动过程中可能发生的代谢过程,以及可能参与了短期记忆的代谢过程。 GLM两次应用于数据:用于整体建模任务,以及专门研究每个认知负荷下的大脑激活。 GLM的这种双重使用允许(1)从相同信号中提取和隔离不同的信息,通过对不同认知类别(持续注意力和工作记忆)进行建模而获得/ ud,以及(2)对模型适应性的\评估,通过检查和比较在两种不同情况下获得的残差(即信号的未建模部分)。结果证明存在持续的注意力相关的代谢活动,叠加在任务相关的助记符上。前面还突出了一些半球差异:脱氧血红蛋白的变化表现出强烈的右侧偏侧化,而对血红蛋白和总血红蛋白的修饰则显示了内侧定位。目前的工作成功地探索了fNIRS检测被调查的两个神经生理学类别并区分其激活模式的能力。

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