Verbal retrieval deficits due to traumatic brain injury are associated with changes in event related potentials during a Go-NoGo task

IF 3.7 3区 医学 Q1 CLINICAL NEUROLOGY Clinical Neurophysiology Pub Date : 2024-04-16 DOI:10.1016/j.clinph.2024.04.002
Hsueh-Sheng Chiang , Michael Motes , Borna Afkhami-Rohani , Ashna Adhikari , Christian LoBue , Michael Kraut , C. Munro Cullum , John Hart Jr
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Abstract

Objective

Verbal retrieval (VR) deficits often occur after traumatic brain injury (TBI), but the mechanisms remain unclear. We examined how event-related potentials (ERPs) during a Go-NoGo task were associated with VR deficits.

Methods

Sixty veterans with a history of TBI underwent a neuropsychological battery and a Go-NoGo task with concurrent EEG recording. We compared task performance and ERP measures (N2, P3) between those with and those without persistent injury-related VR deficits. We then used generalized linear modeling to examine the relationship between ERP measures and scores on measures of executive function and processing speed.

Results

Go-NoGo task performance was comparable between the groups. Those with VR deficits had larger N2 amplitude in NoGo than in Go conditions. In participants with VR deficits, larger NoGo N2/P3 amplitude predicted faster processing speed. Furthermore, larger P3 amplitude and shorter P3 latency of the difference wave (NoGo – Go) predicted faster processing speed in those with VR deficits.

Conclusions

Despite no difference in Go-NoGo task performance, ERP amplitude and latency measures associated with cognitive control during Go-NoGo distinguished TBI individuals with VR deficits from those without.

Significance

This study furthers our understanding of VR deficits in TBI and implicates potential application of ERP measures in monitoring and treating such deficits.

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脑外伤导致的言语检索缺陷与 Go-NoGo 任务中事件相关电位的变化有关
目的创伤性脑损伤(TBI)后经常会出现言语检索(VR)障碍,但其机制仍不清楚。我们研究了Go-NoGo任务中的事件相关电位(ERP)与VR缺陷的关系。方法60名有TBI病史的退伍军人接受了神经心理测试和Go-NoGo任务,并同时进行了脑电图记录。我们比较了有和没有持续性损伤相关 VR 缺陷的退伍军人的任务表现和 ERP 测量(N2、P3)。然后,我们使用广义线性模型研究了 ERP 测量与执行功能和处理速度测量得分之间的关系。有 VR 缺陷的参与者在 NoGo 条件下的 N2 振幅大于 Go 条件下的 N2 振幅。在有虚拟现实障碍的参与者中,NoGo N2/P3 振幅越大,预示着处理速度越快。此外,差波(NoGo - Go)中较大的 P3 振幅和较短的 P3 潜伏期预示着 VR 缺陷者的处理速度更快。结论尽管在 Go-NoGo 任务的表现上没有差异,但在 Go-NoGo 过程中与认知控制相关的 ERP 振幅和潜伏期测量可将有 VR 缺陷的 TBI 患者与无 VR 缺陷的 TBI 患者区分开来。
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来源期刊
Clinical Neurophysiology
Clinical Neurophysiology 医学-临床神经学
CiteScore
8.70
自引率
6.40%
发文量
932
审稿时长
59 days
期刊介绍: As of January 1999, The journal Electroencephalography and Clinical Neurophysiology, and its two sections Electromyography and Motor Control and Evoked Potentials have amalgamated to become this journal - Clinical Neurophysiology. Clinical Neurophysiology is the official journal of the International Federation of Clinical Neurophysiology, the Brazilian Society of Clinical Neurophysiology, the Czech Society of Clinical Neurophysiology, the Italian Clinical Neurophysiology Society and the International Society of Intraoperative Neurophysiology.The journal is dedicated to fostering research and disseminating information on all aspects of both normal and abnormal functioning of the nervous system. The key aim of the publication is to disseminate scholarly reports on the pathophysiology underlying diseases of the central and peripheral nervous system of human patients. Clinical trials that use neurophysiological measures to document change are encouraged, as are manuscripts reporting data on integrated neuroimaging of central nervous function including, but not limited to, functional MRI, MEG, EEG, PET and other neuroimaging modalities.
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