Department of Physiology, Faculty of Medicine, Hacettepe University, Ankara, Turkey.
Department of Biophysics, Faculty of Medicine, Baskent University, Ankara, Turkey.
Brain Behav. 2024 Oct;14(10):e70089. doi: 10.1002/brb3.70089.
We developed a low-cost, user-friendly complementary research tool to evaluate autonomic nervous system (ANS) activity at varying levels of cognitive workload. This was achieved using visual stimuli as cognitive tasks, administered through a specially designed computer-based test battery.
To assess sympathetic stress responses, skin conductance response (SCR) was measured, and electrocardiograms (ECG) were recorded to evaluate heart rate variability (HRV), an indicator of cardiac vagal tone. Twenty-five healthy adults participated in the study. SCR and ECG recordings were made during both tonic and phasic phases using a computer-based system designed for visual stimuli. Participants performed a button-pressing task upon seeing the target stimulus, and the relationship between reaction time (RT) and cognitive load was evaluated.
Analysis of the data showed higher skin conductance levels (SCLs) during tasks compared to baseline, indicating successful elicitation of sympathetic responses. RTs differed significantly between simple and cognitive tasks, increasing with mental load. Additionally, significant changes in vagally mediated HRV parameters during tasks compared to baseline highlighted the impact of cognitive load on the parasympathetic branch of the ANS, thereby influencing the brain-heart connection.
Our findings indicate that the developed research tool can successfully induce cognitive load, significantly affecting SCL, RTs, and HRV. This validates the tool's effectiveness in evaluating ANS responses to cognitive tasks.
我们开发了一种低成本、用户友好的补充研究工具,用于评估自主神经系统 (ANS) 在不同认知负荷水平下的活动。这是通过使用视觉刺激作为认知任务,并通过专门设计的基于计算机的测试电池来实现的。
为了评估交感神经应激反应,测量皮肤电导率反应 (SCR),并记录心电图 (ECG) 以评估心率变异性 (HRV),这是心脏迷走神经张力的指标。 25 名健康成年人参加了这项研究。使用专为视觉刺激设计的基于计算机的系统在紧张和相性阶段进行 SCR 和 ECG 记录。当参与者看到目标刺激时,他们执行按钮按下任务,并评估反应时间 (RT) 和认知负荷之间的关系。
数据分析显示,任务期间的皮肤电导水平 (SCL) 高于基线,表明成功引发了交感反应。与简单任务相比,认知任务的 RT 差异显著,随着心理负荷的增加而增加。此外,与基线相比,任务期间迷走神经介导的 HRV 参数发生显著变化,突出了认知负荷对 ANS 副交感分支的影响,从而影响大脑-心脏的连接。
我们的研究结果表明,所开发的研究工具可以成功地诱导认知负荷,显著影响 SCL、RT 和 HRV。这验证了该工具在评估认知任务对 ANS 反应的有效性。