Influence of Perceptual Load on Attentional Orienting in Post-Stroke Fatigue: A Study of Auditory Evoked Potentials.

Neurorehabilitation and neural repair Pub Date : 2024-04-01 Epub Date: 2024-02-10 DOI:10.1177/15459683241230030
William De Doncker, Annapoorna Kuppuswamy
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Abstract

Objective: Increasing perceptual load alters behavioral outcomes in post-stroke fatigue (PSF). While the effect of perceptual load on top-down attentional processing is known, here we investigate if increasing perceptual load modulates bottom-up attentional processing in a fatigue dependent manner.

Methods: In this cross-sectional observational study, in 29 first-time stroke survivors with no clinical depression, an auditory oddball task consisting of target, standard, and novel tones was performed in conditions of low and high perceptual load. Electroencephalography was used to measure auditory evoked potentials. Perceived effort was rated using the visual analog scale at regular intervals during the experiment. Fatigue was measured using the fatigue severity scale. The effect of fatigue and perceptual load on behavior (response time, accuracy, and effort rating) and auditory evoked potentials (amplitude and latency) was examined using mixed model ananlysis of variances (ANOVA).

Results: Response time was prolonged with greater perceptual load and fatigue. There was no effect of load or fatigue on accuracy. Greater effort was reported with higher perceptual load both in high and low fatigue. p300a amplitude of auditory evoked potentials (AEP) for novel stimuli was attenuated in high fatigue with increasing load when compared to low fatigue. Latency of p300a was longer in low fatigue with increasing load when compared to high fatigue. There were no effects on p300b components, with smaller N100 in high load conditions.

Interpretation: High fatigue specific modulation of p300a component of AEP with increasing load is indicative of distractor driven alteration in orienting response, suggestive of compromise in bottom-up selective attention in PSF.

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中风后疲劳时知觉负荷对注意定向的影响:听觉诱发电位研究。
目的增加知觉负荷会改变卒中后疲劳(PSF)的行为结果。虽然知觉负荷对自上而下的注意加工的影响是已知的,但我们在此研究知觉负荷的增加是否会以疲劳依赖的方式调节自下而上的注意加工:在这项横断面观察性研究中,29 名没有临床抑郁症的首次中风幸存者在低知觉负荷和高知觉负荷条件下完成了一项由目标音、标准音和新音调组成的听觉奇异任务。脑电图用于测量听觉诱发电位。在实验过程中,每隔一段时间都会使用视觉模拟量表对感知努力程度进行评分。疲劳程度采用疲劳严重程度量表进行测量。疲劳和知觉负荷对行为(反应时间、准确性和努力程度评分)和听觉诱发电位(振幅和潜伏期)的影响采用混合模型方差分析(ANOVA)进行检验:结果:反应时间随知觉负荷和疲劳程度的增加而延长。负荷或疲劳对准确性没有影响。与低疲劳度相比,高疲劳度随着知觉负荷的增加,对新刺激的听觉诱发电位(AEP)p300a 振幅减弱。与高度疲劳相比,随着负荷的增加,低度疲劳时 p300a 的延迟时间更长。p300b成分没有受到影响,但在高负荷条件下N100较小:随着负荷的增加,AEP 的 p300a 分量会受到高疲劳度的特定调节,这表明定向反应受分心驱动发生了改变,表明 PSF 中自下而上的选择性注意受到了影响。
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