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Simultaneous measurement of time-domain fNIRS and physiological signals during a cognitive task

机译:在认知任务期间同时测量时域fnirs和生理信号的测量

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Functional near-infrared spectroscopy (fNIRS) is a commonly used technique to measure the cerebral vascular response related to brain activation. It is known that systemic physiological processes, either independent or correlated with the stimulation task, can influence the optical signal making its interpretation challenging. The aim of the present work is to investigate the impact of task-evoked changes in the systemic physiology on fNIRS measurements for a cognitive paradigm. For this purpose we carried out simultaneous measurements of time-domain fNIRS on the forehead and systemic physiological signals, i.e. mean blood pressure, heart rate, respiration, galvanic skin response, scalp blood flow (flux) and red blood cell (RBC) concentration changes. We performed measurements on 15 healthy volunteers during a semantic continuous performance task (CPT). The optical data was analyzed in terms of depth-selective moments of distributions of times of flight of photons through the tissue. In addition, cerebral activation was localized by a subsequent fMRI experiment on the same subject population using the same task. We observed strong non-cerebral task-evoked changes in concentration changes of oxygenated hemoglobin in the forehead. We investigated the temporal behavior and mutual correlations between hemoglobin changes and the systemic processes. Mean blood pressure (BP), galvanic skin response (GSR) and heart rate exhibited significant changes during the activation period, whereby BP and GSR showed the highest correlation with optical measurements.
机译:功能近红外光谱(FNIR)是一种常用的技术,用于测量与脑激活相关的脑血管响应。众所周知,与刺激任务的独立或相关的系统生理过程可以影响使其解释具有挑战性的光学信号。本作本作的目的是调查对认知范例的FNIR测量的全身生理中的任务诱发变化的影响。为此目的,我们对前额和全身生理信号进行时域FNIR的同时测量,即平均血压,心率,呼吸,电催化剂响应,头皮血流(助焊剂)和红细胞(RBC)浓度变化。在语义连续性能任务(CPT)期间,我们对15名健康志愿者进行了测量。在通过组织飞行的飞行时间分布的深度选择性时刻,分析光学数据。此外,使用相同任务的同一主题群体的后续FMRI实验本地化脑激活。我们观察到额头中含氧血红蛋白浓度变化的强烈非脑任务诱发变化。我们调查了血红蛋白变化与系统过程之间的时间行为和相互关联。平均血压(BP),电催化皮肤响应(GSR)和心率在激活期间表现出显着的变化,从而BP和GSR与光学测量显示最高的相关性。

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