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正弦视觉运动跟踪:间歇伺服控制还是耦合振荡?

Sinusoidal visuomotor tracking: intermittent servo-control or coupled oscillations?

作者信息

Russell D M, Sternad D

机构信息

Department of Kinesiology, Berks-Lehigh Valley College of The Pennsylvania State University, University Park 16802, USA.

出版信息

J Mot Behav. 2001 Dec;33(4):329-49. doi: 10.1080/00222890109601918.

Abstract

In visuomotor tasks that involve accuracy demands, small directional changes in the trajectories have been taken as evidence of feedback-based error corrections. In the present study variability, or intermittency, in visuomanual tracking of sinusoidal targets was investigated. Two lines of analyses were pursued: First, the hypothesis that humans fundamentally act as intermittent servo-controllers was re-examined, probing the question of whether discontinuities in the movement trajectory directly imply intermittent control. Second, an alternative hypothesis was evaluated: that rhythmic tracking movements are generated by entrainment between the oscillations of the target and the actor, such that intermittency expresses the degree of stability. In 2 experiments, participants (N = 6 in each experiment) swung 1 of 2 different hand-held pendulums, tracking a rhythmic target that oscillated at different frequencies with a constant amplitude. In 1 line of analyses, the authors tested the intermittency hypothesis by using the typical kinematic error measures and spectral analysis. In a 2nd line, they examined relative phase and its variability, following analyses of rhythmic interlimb coordination. The results showed that visually guided corrective processes play a role, especially for slow movements. Intermittency, assessed as frequency and power components of the movement trajectory, was found to change as a function of both target frequency and the manipulandum's inertia. Support for entrainment was found in conditions in which task frequency was identical to or higher than the effector's eigenfrequency. The results suggest that it is the symmetry between task and effector that determines which behavioral regime is dominant.

摘要

在涉及准确性要求的视觉运动任务中,轨迹上的微小方向变化被视为基于反馈的误差校正的证据。在本研究中,对正弦目标的视觉手动跟踪中的变异性或间歇性进行了研究。进行了两条分析思路:第一,重新审视人类基本上作为间歇性伺服控制器的假设,探究运动轨迹中的不连续性是否直接意味着间歇性控制这一问题。第二,评估了另一种假设:有节奏的跟踪运动是由目标和行动者的振荡之间的同步产生的,使得间歇性表达了稳定程度。在2个实验中,参与者(每个实验N = 6)摆动2个不同手持摆锤中的1个,跟踪一个以恒定幅度在不同频率振荡的有节奏目标。在一条分析思路中,作者通过使用典型的运动学误差测量和频谱分析来测试间歇性假设。在第二条思路中,他们在对有节奏的肢体间协调进行分析后,检查了相对相位及其变异性。结果表明,视觉引导的校正过程起了作用,特别是对于缓慢运动。作为运动轨迹的频率和功率成分评估的间歇性,被发现会随着目标频率和操作对象的惯性而变化。在任务频率与效应器的固有频率相同或更高的条件下发现了对同步的支持。结果表明,是任务和效应器之间的对称性决定了哪种行为模式占主导地位。

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