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前额叶皮层氧合在线性和曲线双重任务行走中的变化:一项 fNIRS 和 IMU 联合研究。

Modifications in Prefrontal Cortex Oxygenation in Linear and Curvilinear Dual Task Walking: A Combined fNIRS and IMUs Study.

机构信息

Department of Movement, Human and Health Sciences, Interuniversity Centre of Bioengineering of the Human Neuromusculoskeletal System, University of Rome "Foro Italico", Piazza Lauro de Bosis 15, 00135 Roma, Italy.

IRCCS Santa Lucia Foundation, Via Ardeatina 306, 00179 Roma, Italy.

出版信息

Sensors (Basel). 2021 Sep 14;21(18):6159. doi: 10.3390/s21186159.

Abstract

Increased oxygenated hemoglobin concentration of the prefrontal cortex (PFC) has been observed during linear walking, particularly when there is a high attention demand on the task, like in dual-task (DT) paradigms. Despite the knowledge that cognitive and motor demands depend on the complexity of the motor task, most studies have only focused on usual walking, while little is known for more challenging tasks, such as curved paths. To explore the relationship between cortical activation and gait biomechanics, 20 healthy young adults were asked to perform linear and curvilinear walking trajectories in single-task and DT conditions. PFC activation was assessed using functional near-infrared spectroscopy, while gait quality with four inertial measurement units. The Figure-of-8-Walk-Test was adopted as the curvilinear trajectory, with the "Serial 7s" test as concurrent cognitive task. Results show that walking along curvilinear trajectories in DT led to increased PFC activation and decreased motor performance. Under DT walking, the neural correlates of executive function and gait control tend to be modified in response to the cognitive resources imposed by the motor task. Being more representative of real-life situations, this approach to curved walking has the potential to reveal crucial information and to improve people' s balance, safety, and life's quality.

摘要

在进行直线行走时,人们观察到前额皮质(prefrontal cortex,PFC)的氧合血红蛋白浓度增加,尤其是当任务对注意力有较高要求时,如在双重任务(dual-task,DT)范式中。尽管人们知道认知和运动需求取决于运动任务的复杂性,但大多数研究仅关注常规行走,而对于更具挑战性的任务,如曲线行走,了解甚少。为了探索皮质激活与步态生物力学之间的关系,20 名健康的年轻成年人被要求在单任务和 DT 条件下进行直线和曲线行走轨迹。使用功能近红外光谱评估 PFC 激活,使用四个惯性测量单元评估步态质量。采用 8 字形走测试作为曲线轨迹,采用“连续 7 秒”测试作为同时进行的认知任务。结果表明,在 DT 下进行曲线行走会导致 PFC 激活增加和运动表现下降。在 DT 行走下,执行功能和步态控制的神经相关性往往会发生变化,以适应运动任务所施加的认知资源。这种对曲线行走的研究方法更能代表现实生活中的情况,有潜力揭示关键信息,并改善人们的平衡、安全和生活质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5df/8471068/c7a2234da470/sensors-21-06159-g001.jpg

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