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一项针对年轻人双任务步行过程中离散和连续认知需求的功能近红外光谱研究。

An fNIRS Investigation of Discrete and Continuous Cognitive Demands During Dual-Task Walking in Young Adults.

作者信息

Rahman Tabassum Tahmina, Polskaia Nadia, St-Amant Gabrielle, Salzman Talia, Vallejo Diana Tobón, Lajoie Yves, Fraser Sarah Anne

机构信息

Interdisciplinary School of Health Sciences, Faculty of Health Science, University of Ottawa, Ottawa, ON, Canada.

School of Human Kinetics, Faculty of Health Science, University of Ottawa, Ottawa, ON, Canada.

出版信息

Front Hum Neurosci. 2021 Nov 16;15:711054. doi: 10.3389/fnhum.2021.711054. eCollection 2021.

Abstract

: Dual-task studies have demonstrated that walking is attention-demanding for younger adults. However, numerous studies have attributed this to task type rather than the amount of required to accomplish the task. This study examined four tasks: two discrete (i.e., short intervals of attention) and two continuous (i.e., sustained attention) to determine whether greater attentional demands result in greater dual-task costs due to an overloaded processing capacity. : Nineteen young adults (21.5 ± 3.6 years, 13 females) completed simple reaction time (SRT) and go/no-go (GNG) discrete cognitive tasks and n-back (NBK) and double number sequence (DNS) continuous cognitive tasks with or without self-paced walking. Prefrontal cerebral hemodynamics were measured using functional near-infrared spectroscopy (fNIRS) and performance was measured using response time, accuracy, and gait speed. : Repeated measures ANOVAs revealed decreased accuracy with increasing cognitive demands ( = 0.001) and increased dual-task accuracy costs ( < 0.001). Response times were faster during the single compared to dual-tasks during the SRT ( = 0.005) and NBK ( = 0.004). DNS gait speed was also slower in the dual compared to single task ( < 0.001). Neural findings revealed marginally significant interactions between dual-task walking and walking alone in the DNS ( = 0.06) and dual -task walking compared to the NBK cognitive task alone ( = 0.05). : Neural findings suggest a trend towards increased PFC activation during continuous tasks. Cognitive and motor measures revealed worse performance during the discrete compared to continuous tasks. Future studies should consider examining different attentional demands of motor tasks.

摘要

双任务研究表明,步行对年轻人来说需要注意力。然而,许多研究将此归因于任务类型,而非完成任务所需的量。本研究考察了四项任务:两项离散任务(即短时间的注意力)和两项连续任务(即持续注意力),以确定更高的注意力需求是否会因处理能力过载而导致更大的双任务成本。

19名年轻人(21.5±3.6岁,13名女性)完成了简单反应时(SRT)和go/no-go(GNG)离散认知任务以及n-back(NBK)和双数字序列(DNS)连续认知任务,有或没有自定步速的步行。使用功能近红外光谱(fNIRS)测量前额叶脑血流动力学,并使用反应时间、准确性和步速测量表现。

重复测量方差分析显示,随着认知需求增加,准确性下降( = 0.001),双任务准确性成本增加( < 0.001)。在SRT( = 0.005)和NBK( = 0.004)期间,单任务时的反应时间比双任务时更快。与单任务相比,DNS双任务时的步速也更慢( < 0.001)。神经学研究结果显示,DNS中双任务步行与单独步行之间存在边缘显著的交互作用( = 0.06),与单独的NBK认知任务相比,双任务步行存在边缘显著的交互作用( = 0.05)。

神经学研究结果表明,在连续任务中,前额叶皮层激活有增加的趋势。认知和运动测量显示,与连续任务相比,离散任务期间的表现更差。未来的研究应考虑考察运动任务的不同注意力需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55f5/8637836/5113720fd75f/fnhum-15-711054-g003.jpg

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