Executive Functions Assessment Based on Wireless EEG and 3D Gait Analysis During Dual-Task: A Feasibility Study

IF 3.7 3区 医学 Q2 ENGINEERING, BIOMEDICAL IEEE Journal of Translational Engineering in Health and Medicine-Jtehm Pub Date : 2024-01-22 DOI:10.1109/JTEHM.2024.3357287
Pasquale Arpaia;Renato Cuocolo;Allegra Fullin;Ludovica Gargiulo;Francesca Mancino;Nicola Moccaldi;Ersilia Vallefuoco;Paolo De Blasiis
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Abstract

Executive functions (EFs) are neurocognitive processes planning and regulating daily life actions. Performance of two simultaneous tasks, requiring the same cognitive resources, lead to a cognitive fatigue. Several studies investigated cognitive-motor task and the interference during walking, highlighting an increasing risk of falls especially in elderly and people with neurological diseases. A few studies instrumentally explored relationship between activation-no-activation of two EFs (working memory and inhibition) and spatial-temporal gait parameters. Aim of our study was to detect activation of inhibition and working memory during progressive difficulty levels of cognitive tasks and spontaneous walking using, respectively, wireless electroencephalography (EEG) and 3D-gait analysis. Thirteen healthy subjects were recruited. Two cognitive tasks were performed, activating inhibition (Go-NoGo) and working memory (N-back). EEG features (absolute and relative power in different bands) and kinematic parameters (7 spatial-temporal ones and Gait Variable Score for 9 range of motion of lower limbs) were analyzed. A significant decrease of stride length and an increase of external-rotation of foot progression were found during dual task with Go-NoGo. Moreover, a significant correlation was found between the relative power in the delta band at channels Fz, C4 and progressive difficulty levels of Go-NoGo (activating inhibition) during walking, whereas working memory showed no correlation. This study reinforces the hypothesis of the prevalent involvement of inhibition with respect to working memory during dual task walking and reveals specific kinematic adaptations. The foundations for EEG-based monitoring of cognitive processes involved in gait are laid. Clinical and Translational Impact Statement: Clinical and instrumental evaluation and training of executive functions (as inhibition), during cognitive-motor task, could be useful for rehabilitation treatment of gait disorder in elderly and people with neurological disease.
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基于双任务期间无线脑电图和 3D 步态分析的执行功能评估:可行性研究
执行功能(EFs)是规划和调节日常生活行为的神经认知过程。同时执行两项任务,需要相同的认知资源,会导致认知疲劳。有几项研究调查了认知-运动任务以及行走过程中的干扰,结果表明,尤其是老年人和患有神经系统疾病的人,跌倒的风险越来越大。少数研究用工具探索了两种 EF(工作记忆和抑制)的激活与否与空间-时间步态参数之间的关系。我们的研究旨在通过无线脑电图(EEG)和三维步态分析,分别检测在认知任务和自发行走的渐进难度过程中抑制和工作记忆的激活情况。我们招募了 13 名健康受试者。他们完成了两项认知任务,即激活抑制(Go-NoGo)和工作记忆(N-back)。对脑电图特征(不同波段的绝对和相对功率)和运动学参数(7 个空间-时间参数和下肢 9 个运动范围的步态变量评分)进行了分析。结果发现,在进行 Go-NoGo 双重任务时,步长明显缩短,脚外旋率明显增加。此外,研究还发现,在行走过程中,Fz、C4 频道三角波段的相对功率与 Go-NoGo 的渐进难度水平(激活抑制)之间存在明显的相关性,而工作记忆则没有相关性。这项研究加强了在双重任务步行过程中抑制与工作记忆普遍相关的假设,并揭示了特定的运动适应性。为基于脑电图监测步态中的认知过程奠定了基础。临床和转化影响声明:在认知运动任务过程中,对执行功能(如抑制)进行临床和工具评估与训练,有助于老年人和神经系统疾病患者步态障碍的康复治疗。
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来源期刊
CiteScore
7.40
自引率
2.90%
发文量
65
审稿时长
27 weeks
期刊介绍: The IEEE Journal of Translational Engineering in Health and Medicine is an open access product that bridges the engineering and clinical worlds, focusing on detailed descriptions of advanced technical solutions to a clinical need along with clinical results and healthcare relevance. The journal provides a platform for state-of-the-art technology directions in the interdisciplinary field of biomedical engineering, embracing engineering, life sciences and medicine. A unique aspect of the journal is its ability to foster a collaboration between physicians and engineers for presenting broad and compelling real world technological and engineering solutions that can be implemented in the interest of improving quality of patient care and treatment outcomes, thereby reducing costs and improving efficiency. The journal provides an active forum for clinical research and relevant state-of the-art technology for members of all the IEEE societies that have an interest in biomedical engineering as well as reaching out directly to physicians and the medical community through the American Medical Association (AMA) and other clinical societies. The scope of the journal includes, but is not limited, to topics on: Medical devices, healthcare delivery systems, global healthcare initiatives, and ICT based services; Technological relevance to healthcare cost reduction; Technology affecting healthcare management, decision-making, and policy; Advanced technical work that is applied to solving specific clinical needs.
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