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内部模型与间歇性:人类追踪行为的理论阐释

Internal models and intermittency: a theoretical account of human tracking behavior.

作者信息

Neilson P D, Neilson M D, O'Dwyer N J

机构信息

Spastic Centre Research Unit, School of Medicine, University of New South Wales, Sydney, Australia.

出版信息

Biol Cybern. 1988;58(2):101-12. doi: 10.1007/BF00364156.

Abstract

This paper concerns the use of tracking studies to test a theoretical account of the information processing performed by the human CNS during control of movement. The theory provides a bridge between studies of reaction time and continuous tracking. It is proposed that the human CNS includes neuronal circuitry to compute inverse internal models of the multiple input, multiple output, dynamic, non-linear relationships between outgoing motor commands and their resulting perceptual consequences. The inverse internal models are employed during movement execution to transform preplanned trajectories of desired perceptual consequences into appropriate outgoing motor commands to achieve them. A finite interval of time is required by the CNS to preplan the desired perceptual consequences of a movement and it does not commence planning a new movement until planning of the old one has been completed. This behavior introduces intermittency into the planning of movements. In this paper we show that the gain and phase frequency response characteristics of the human operator in a visual pursuit tracking task can be derived theoretically from these assumptions. By incorporating the effects of internal model inaccuracy and of speed-accuracy trade-off in performance, it is shown that various aspects of experimentally measured tracking behavior can be accounted for.

摘要

本文涉及使用跟踪研究来检验关于人类中枢神经系统(CNS)在运动控制过程中执行的信息处理的理论描述。该理论在反应时间研究和连续跟踪研究之间架起了一座桥梁。有人提出,人类中枢神经系统包含神经元回路,用于计算传出运动指令与其产生的感知结果之间的多输入、多输出、动态、非线性关系的逆内部模型。在运动执行过程中,逆内部模型用于将期望感知结果的预先规划轨迹转换为适当的传出运动指令以实现它们。中枢神经系统需要有限的时间间隔来预先规划运动的期望感知结果,并且在旧运动的规划完成之前不会开始规划新的运动。这种行为给运动规划引入了间歇性。在本文中,我们表明,视觉追踪任务中人类操作者的增益和相位频率响应特性可以从这些假设中理论推导出来。通过纳入内部模型不准确和性能中速度 - 准确性权衡的影响,表明可以解释实验测量的跟踪行为的各个方面。

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