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The relation of skin conductance and pupillary fluctuations assessed by phase-rectified signal averaging

机译:通过相位校正信号平均评估皮肤电导与瞳孔波动的关系

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The reaction of pupil diameter and skin conductance are widely studied marker of the autonomic response to arousing stimuli. However, little is known about their relation at rest.In this study, we used bivariate phase-rectified signal averaging to investigate the relationship of skin conductance fluctuations (SCF) and pupillary fluctuations in 83 healthy volunteers. The onset of each SCF was detected by a pattern matching algorithm. Those time points were corrected for a different neurotransmission delay. Cross-correlation of temporal derivatives of pupil diameter and skin conductance revealed an average time lag of 2.5s. Thus, anchor points 2.5s before an SCF were defined. The pupillary signal following these anchors (7s) were extracted and normalized to baseline 1s prior to the anchor point. Aligned segments were averaged to determine the amplitude and area under the curve (AUC) of characteristic pupil diameter fluctuations (PDF) concurrent to SCF. The same procedure was applied to random time points (non-SCF) with at least 1s distance to actually detected SCF which served as control condition.SCF were accompanied by increases of pupil diameter with a maximum dilation of 9% on average. The one sample t-test indicated an AUC of PDF (70 ± 110 n.u., p<0.001). The maximum change and AUC of pupillary reactions were significantly higher when PDF extraction was triggered by actual SCF (both p<0.001). Both measures of pupillary dilations contributed significantly to pupillary unrest.Our results suggest that sympathetic arousal as detected by skin conductance fluctuations is accompanied by pupil dilation.
机译:瞳孔直径和皮肤电导的反应是引起刺激的自主神经反应的广泛研究标志。然而,人们对它们静止时的关系知之甚少。在这项研究中,我们使用双变量相位校正信号平均技术研究了83名健康志愿者的皮肤电导波动(SCF)和瞳孔波动之间的关系。通过模式匹配算法检测每个SCF的发作。那些时间点已针对不同的神经传递延迟进行了校正。瞳孔直径和皮肤电导的时间导数的互相关显示平均时滞为2.5s。因此,定义了SCF之前的锚点2.5s。提取这些锚点(7s)之后的瞳孔信号,并将其归一化为锚点之前的基线1s。对对齐的节段取平均值,以确定与SCF同时出现的特征瞳孔直径波动(PDF)的幅度和曲线下面积(AUC)。对随机时间点(非SCF)进行相同的操作,距离实际检测到的SCF至少有1s的距离作为控制条件.SCF伴随着瞳孔直径的增加,最大扩张平均为9%。一个样本t检验表明AUC为PDF(70±110 n.u.,p <0.001)。当实际SCF触发PDF提取时,瞳孔反应的最大变化和AUC显着更高(均p <0.001)。两种测量瞳孔扩张的方法均会导致瞳孔动乱。我们的结果表明,由皮肤电导率波动检测到的交感觉伴随着瞳孔扩张。

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