Transdiagnostic psychopathology in the light of robust single-trial event-related potentials.

IF 2.9 2区 心理学 Q2 NEUROSCIENCES
Psychophysiology Pub Date : 2024-07-01 Epub Date: 2024-03-08 DOI:10.1111/psyp.14562
Martin Randau, Bo Bach, Nina Reinholt, Cyril Pernet, Bob Oranje, Belinda S Rasmussen, Sidse Arnfred
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引用次数: 0

Abstract

Recent evidence indicates that event-related potentials (ERPs) as measured on the electroencephalogram (EEG) are more closely related to transdiagnostic, dimensional measures of psychopathology (TDP) than to diagnostic categories. A comprehensive examination of correlations between well-studied ERPs and measures of TDP is called for. In this study, we recruited 50 patients with emotional disorders undergoing 14 weeks of transdiagnostic group psychotherapy as well as 37 healthy comparison subjects (HC) matched in age and sex. HCs were assessed once and patients three times throughout treatment (N = 172 data sets) with a battery of well-studied ERPs and psychopathology measures consistent with the TDP framework The Hierarchical Taxonomy of Psychopathology (HiTOP). ERPs were quantified using robust single-trial analysis (RSTA) methods and TDP correlations with linear regression models as implemented in the EEGLAB toolbox LIMO EEG. We found correlations at several levels of the HiTOP hierarchy. Among these, a reduced P3b was associated with the general p-factor. A reduced error-related negativity correlated strongly with worse symptomatology across the Internalizing spectrum. Increases in the correct-related negativity correlated with symptoms loading unto the Distress subfactor in the HiTOP. The Flanker N2 was related to specific symptoms of Intrusive Cognitions and Traumatic Re-experiencing and the mismatch negativity to maladaptive personality traits at the lowest levels of the HiTOP hierarchy. Our study highlights the advantages of RSTA methods and of using validated TDP constructs within a consistent framework. Future studies could utilize machine learning methods to predict TDP from a set of ERP features at the subject level.

从强大的单次事件相关电位看跨诊断精神病理学。
最近的证据表明,脑电图(EEG)测量的事件相关电位(ERPs)与跨诊断的精神病理学维度测量(TDP)的关系比与诊断类别的关系更为密切。因此,有必要对研究充分的 ERP 与 TDP 测量之间的相关性进行全面检查。在这项研究中,我们招募了 50 名正在接受为期 14 周的跨诊断小组心理治疗的情绪障碍者,以及 37 名年龄和性别相匹配的健康对比受试者(HC)。在整个治疗过程中,HC 接受了一次评估,患者接受了三次评估(N = 172 组数据),评估内容包括一系列经过充分研究的ERPs 和精神病理学测量指标,这些指标与TDP 框架 "精神病理学层次分类法"(HiTOP)相一致。我们使用稳健单次试验分析(RSTA)方法对 ERP 进行了量化,并使用 EEGLAB 工具箱 LIMO EEG 中的线性回归模型对 TDP 相关性进行了分析。我们发现了 HiTOP 层次结构中多个级别的相关性。其中,P3b 的降低与一般 p 因子相关。错误相关负性的降低与整个内化谱系的症状恶化密切相关。正确相关负性的增加与加载到 HiTOP 压力子因子的症状相关。Flanker N2 与侵入性认知和创伤性再体验的特定症状有关,而错配负性则与 HiTOP 层次结构最低层的适应不良人格特质有关。我们的研究凸显了 RSTA 方法和在一致的框架内使用经过验证的 TDP 构建的优势。未来的研究可以利用机器学习方法,从一组受试者水平的ERP特征中预测TDP。
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来源期刊
Psychophysiology
Psychophysiology 医学-神经科学
CiteScore
6.80
自引率
8.10%
发文量
225
审稿时长
2 months
期刊介绍: Founded in 1964, Psychophysiology is the most established journal in the world specifically dedicated to the dissemination of psychophysiological science. The journal continues to play a key role in advancing human neuroscience in its many forms and methodologies (including central and peripheral measures), covering research on the interrelationships between the physiological and psychological aspects of brain and behavior. Typically, studies published in Psychophysiology include psychological independent variables and noninvasive physiological dependent variables (hemodynamic, optical, and electromagnetic brain imaging and/or peripheral measures such as respiratory sinus arrhythmia, electromyography, pupillography, and many others). The majority of studies published in the journal involve human participants, but work using animal models of such phenomena is occasionally published. Psychophysiology welcomes submissions on new theoretical, empirical, and methodological advances in: cognitive, affective, clinical and social neuroscience, psychopathology and psychiatry, health science and behavioral medicine, and biomedical engineering. The journal publishes theoretical papers, evaluative reviews of literature, empirical papers, and methodological papers, with submissions welcome from scientists in any fields mentioned above.
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