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首页> 外文期刊>Journal of Neurophysiology >Divided attention impairs human motor adaptation but not feedback control.
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Divided attention impairs human motor adaptation but not feedback control.

机译:注意力分散会损害人体运动适应能力,但不会损害反馈控制能力。

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When humans experience externally induced errors in a movement, the motor system's feedback control compensates for those errors within the movement. The motor system's predictive control then uses information about those errors to inform future movements. The role of attention in these two distinct motor processes is unclear. Previous experiments have revealed a role for attention in motor learning over the course of many movements; however, these experimental paradigms do not determine how attention influences within-movement feedback control versus across-movement adaptation. Here we develop a dual-task paradigm, consisting of movement and audio tasks, which can differentiate and expose attention's role in these two processes of motor control. Over the course of several days, subjects performed horizontal reaching movements, with and without the audio task; movements were occasionally subjected to transient force perturbations. On movements with a force perturbation, subjects compensated for the force-induced movement errors, and on movements immediately after the force perturbation subjects exhibited adaptation. On every movement trial, subjects performed a two-tone frequency-discrimination task. The temporal specificity of the frequency-discrimination task allowed us to divide attention within and across movements. We find that divided attention did not impair the within-movement feedback control of the arm, but did reduce subsequent movement adaptation. We suggest that the secondary task interfered with the encoding and transformation of errors into changes in predictive control.
机译:当人类在机芯中遇到外部错误时,电机系统的反馈控制将补偿机芯中的这些错误。然后,电机系统的预测控制使用有关这些错误的信息来通知将来的运动。注意在这两个不同的运动过程中的作用尚不清楚。先前的实验已经揭示了在许多运动过程中注意力在运动学习中的作用。但是,这些实验范式无法确定注意力如何影响运动内反馈控制和跨运动适应。在这里,我们开发了一个由运动和音频任务组成的双任务范式,可以区分和暴露注意力在这两个电机控制过程中的作用。在几天的过程中,对象在有无音频任务的情况下进行了水平移动。运动偶尔会受到短暂的力扰动。在受力扰动的运动中,受试者补偿了因力引起的运动误差,而在受力扰动后的运动中,受试者立即表现出适应性。在每项运动试验中,受试者均执行了两声频率区分任务。频率区分任务的时间特殊性使我们能够将注意力分散在运动中和运动之间。我们发现,分散注意力不会损害手臂的运动内反馈控制,但会减少后续的运动适应性。我们建议,次要任务会干扰编码和将错误转换为预测控制的更改。

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