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An Objective System for Quantifying the Effect of Cognitive Load on Movement in Individuals with Autism Spectrum Disorder

机译:量化认知负荷对自闭症谱系障碍患者运动的影响的客观系统

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For someone with Autism Spectrum Disorder, performance on tasks that require coordinated motor and cognitive activities, such as walking while talking (or texting) on our phones, can take substantially more effort to accomplish. While it is more common to isolate and examine motor and cognitive skill in separate experiments, we propose a dual task experiment to allow us to examine performance in people with autism more realistically. We designed a system composed of three task types and accompanying hardware to simultaneously quantify balance, fine motor skill, and cognitive ability. We hypothesized that the additional demands of the balance and speeded finger-tapping tasks would degrade motor performance in the simultaneous conditions, but not impact cognitive (N-Back task) performance. Movement data were evaluated by comparing the change of each group across 3 levels of cognitive load (0-, 1-, and 2-back). We tested the task on a small sample of young adults with autism spectrum disorder (ASD; n=4) and matched controls (n=4). We observed a trend largely consistent with our hypotheses. The system's temporal precision and modular design also allow for the incorporation of other sensors as needed, like EEG or heart rate variability. We propose that a version of this system be tested as a putative outcome measure for interventions involving attention, cognitive load or certain types of motor skill training.
机译:对于患有自闭症谱系障碍的人而言,在需要协调运动和认知活动的任务上的表现(例如在我们的手机上边聊天(或发短信)时走路)可能需要花费更多的精力才能完成。尽管在单独的实验中隔离和检查运动和认知技能较为普遍,但我们提出了双重任务实验,以使我们能够更实际地检查自闭症患者的表现。我们设计了一个由三种任务类型和相应硬件组成的系统,以同时量化平衡,精细的运动技能和认知能力。我们假设平衡和加快手指敲击任务的额外要求会在同时条件下降低运动表现,但不会影响认知(N向后任务)表现。通过比较3种认知负荷水平(0、1和2后退)中每组的变化来评估运动数据。我们在一小部分患有自闭症谱系障碍(ASD; n = 4)和相匹配的对照组(n = 4)的年轻人中测试了这项任务。我们观察到的趋势在很大程度上与我们的假设相符。该系统的时间精度和模块化设计还允许根据需要并入其他传感器,例如EEG或心率变异性。我们建议将该系统的一个版本作为涉及注意力,认知负荷或某些类型的运动技能训练的干预措施的假定结果进行测试。

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