Evidence of Implicit and Explicit Motor Learning during Gait Training with Distorted Rhythmic Auditory Cues.

IF 1.1 4区 心理学 Q4 NEUROSCIENCES
Journal of Motor Behavior Pub Date : 2024-01-01 Epub Date: 2023-07-02 DOI:10.1080/00222895.2023.2231874
Chelsea Parker Duppen, Hailey Wrona, Eran Dayan, Michael D Lewek
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引用次数: 0

Abstract

Gait training with rhythmic auditory cues contains motor learning mechanisms that are weighted more explicitly than implicitly. However, various clinical populations may benefit from a shift to gait training with greater implicit motor learning mechanisms. To investigate the ability to incorporate more implicit-weighted motor learning processes during rhythmic auditory cueing, we attempted to induce error-based recalibration using a subtly varying metronome cue for naïve unimpaired young adults. We assessed the extent of implicit and explicit retention after both an isochronous metronome and subtly varying metronome frequency during treadmill and overground walking. Despite 90% of participants remaining unaware of the changing metronome frequency, participants adjusted their cadence and step length to the subtly changing metronome, both on a treadmill and overground (p < 0.05). However, despite evidence of both implicit and explicit processes involved with each metronome (i.e., isochronous and varying), there were no between-condition differences in implicit or explicit retention for cadence, step length, or gait speed, and thus no increased implicit learning advantage with the addition of error-based recalibration for young, unimpaired adults.

利用失真节奏听觉线索进行步态训练时的内隐和外显运动学习证据
利用节奏性听觉线索进行的步态训练包含的运动学习机制,其显性权重高于隐性权重。然而,不同的临床人群可能会从转向含更多内隐运动学习机制的步态训练中获益。为了研究在节奏性听觉提示过程中纳入更多内隐加权运动学习过程的能力,我们尝试使用微妙变化的节拍器提示来诱导基于错误的重新校准,对象是天真无邪、没有运动障碍的年轻成年人。我们评估了在跑步机和地面行走过程中,使用等速节拍器和微妙变化节拍器频率后的内隐和外显保持程度。尽管90%的参与者仍未意识到节拍器频率的变化,但无论是在跑步机上还是在地面上,参与者都会根据微妙变化的节拍器调整自己的步频和步长(p
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来源期刊
Journal of Motor Behavior
Journal of Motor Behavior 医学-神经科学
CiteScore
3.10
自引率
0.00%
发文量
39
审稿时长
>12 weeks
期刊介绍: The Journal of Motor Behavior, a multidisciplinary journal of movement neuroscience, publishes articles that contribute to a basic understanding of motor control. Articles from different disciplinary perspectives and levels of analysis are encouraged, including neurophysiological, biomechanical, electrophysiological, psychological, mathematical and physical, and clinical approaches. Applied studies are acceptable only to the extent that they provide a significant contribution to a basic issue in motor control. Of special interest to the journal are those articles that attempt to bridge insights from different disciplinary perspectives to infer processes underlying motor control. Those approaches may embrace postural, locomotive, and manipulative aspects of motor functions, as well as coordination of speech articulators and eye movements. Articles dealing with analytical techniques and mathematical modeling are welcome.
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