Brain Connectivity Laboratory, Department of Neuroscience and Neurorehabilitation, IRCCS San Raffaele Roma, 00166 Rome, Italy.
Department of Theoretical and Applied Sciences, eCampus University, 22060 Novedrate, Italy.
Sensors (Basel). 2023 Mar 15;23(6):3143. doi: 10.3390/s23063143.
Different visual stimuli can capture and shift attention into different directions. Few studies have explored differences in brain response due to directional (DS) and non-directional visual stimuli (nDS). To explore the latter, event-related potentials (ERP) and contingent negative variation (CNV) during a visuomotor task were evaluated in 19 adults. To examine the relation between task performance and ERPs, the participants were divided into faster (F) and slower (S) groups based on their reaction times (RTs). Moreover, to reveal ERP modulation within the same subject, each recording from the single participants was subdivided into F and S trials based on the specific RT. ERP latencies were analysed between conditions ((DS, nDS); (F, S subjects); (F, S trials)). Correlation was analysed between CNV and RTs. Our results reveal that the ERPs' late components are modulated differently by DS and nDS conditions in terms of amplitude and location. Differences in ERP amplitude, location and latency, were also found according to subjects' performance, i.e., between F and S subjects and trials. In addition, results show that the CNV slope is modulated by the directionality of the stimulus and contributes to motor performance. A better understanding of brain dynamics through ERPs could be useful to explain brain states in healthy subjects and to support diagnoses and personalized rehabilitation in patients with neurological diseases.
不同的视觉刺激可以吸引并将注意力转移到不同的方向。很少有研究探讨过由于定向(DS)和非定向视觉刺激(nDS)引起的大脑反应差异。为了探索后者,我们评估了 19 名成年人在视觉运动任务期间的事件相关电位(ERP)和条件负变(CNV)。为了研究任务表现与 ERPs 之间的关系,根据参与者的反应时间(RT)将他们分为更快(F)和更慢(S)组。此外,为了揭示同一受试者内的 ERP 调制,根据特定的 RT 将每个参与者的单个记录细分为 F 和 S 试验。在条件之间分析 ERP 潜伏期((DS,nDS);(F,S 受试者);(F,S 试验))。分析了 CNV 与 RTs 之间的相关性。我们的结果表明,在振幅和位置方面,DS 和 nDS 条件会以不同的方式调制 ERPs 的晚期成分。根据受试者的表现,即 F 和 S 受试者和试验,还发现了 ERP 振幅、位置和潜伏期的差异。此外,结果表明,刺激的方向性调制 CNV 斜率并有助于运动表现。通过 ERPs 更好地了解大脑动态,对于解释健康受试者的大脑状态以及支持神经疾病患者的诊断和个性化康复可能很有用。