Explaining Savings for Visuomotor Adaptation: Linear Time-Invariant State-Space Models Are Not Sufficient

被引:106
作者
Zarahn, Eric [1 ]
Weston, Gregory D. [1 ]
Liang, Johnny [1 ]
Mazzoni, Pietro [1 ]
Krakauer, John W. [1 ]
机构
[1] Neurol Inst, Motor Performance Lab, New York, NY 10032 USA
关键词
D O I
10.1152/jn.90529.2008
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Zarahn E, Weston GD, Liang J, Mazzoni P, Krakauer JW. Explaining savings for visuomotor adaptation: linear time-invariant state-space models are not sufficient. J Neurophysiol 100: 2537-2548, 2008. First published July 2, 2008; doi:10.1152/jn.90529.2008. Adaptation of the motor system to sensorimotor perturbations is a type of learning relevant for tool use and coping with an ever-changing body. Memory for motor adaptation can take the form of savings: an increase in the apparent rate constant of readaptation compared with that of initial adaptation. The assessment of savings is simplified if the sensory errors a subject experiences at the beginning of initial adaptation and the beginning of readaptation are the same. This can be accomplished by introducing either 1) a sufficiently small number of counterperturbation trials (counterperturbation paradigm [ CP]) or 2) a sufficiently large number of zero-perturbation trials (washout paradigm [ WO]) between initial adaptation and readaptation. A two-rate, linear time-invariant state-space model (SSMLTI,2) was recently shown to theoretically produce savings for CP. However, we reasoned from superposition that this model would be unable to explain savings for WO. Using the same task (planar reaching) and type of perturbation (visuomotor rotation), we found comparable savings for both CP and WO paradigms. Although SSMLTI,2 explained some degree of savings for CP it failed completely for WO. We conclude that for visuomotor rotation, savings in general is not simply a consequence of LTI dynamics. Instead savings for visuomotor rotation involves meta-learning, which we show can be modeled as changes in system parameters across the phases of an adaptation experiment.
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收藏
页码:2537 / 2548
页数:12
相关论文
共 25 条
[1]   Metaplasticity: The plasticity of synaptic plasticity [J].
Abraham, WC ;
Bear, MF .
TRENDS IN NEUROSCIENCES, 1996, 19 (04) :126-130
[2]   NEW LOOK AT STATISTICAL-MODEL IDENTIFICATION [J].
AKAIKE, H .
IEEE TRANSACTIONS ON AUTOMATIC CONTROL, 1974, AC19 (06) :716-723
[4]  
Burnham K.P., 2002, Model Selection and Multi-Model Inference: A Practical Information-Theoretic Approach, V172, P488, DOI [DOI 10.1007/B97636, 10.1007/978-1-4757-2917-7]
[5]   Failure to consolidate the consolidation theory of learning for sensorimotor adaptation tasks [J].
Caithness, G ;
Osu, R ;
Bays, P ;
Chase, H ;
Klassen, J ;
Kawato, M ;
Wolpert, DM ;
Flanagan, JR .
JOURNAL OF NEUROSCIENCE, 2004, 24 (40) :8662-8671
[6]   Modeling sensorimotor learning with linear dynamical systems [J].
Cheng, S ;
Sabes, PN .
NEURAL COMPUTATION, 2006, 18 (04) :760-793
[7]   Motor adaptation to single force pulses: Sensitive to direction but insensitive to within-movement pulse placement and magnitude [J].
Fine, Michael S. ;
Thoroughman, Kurt A. .
JOURNAL OF NEUROPHYSIOLOGY, 2006, 96 (02) :710-720
[8]   The interference effects of non-rotated versus counter-rotated trials in visuomotor adaptation [J].
Hinder, Mark R. ;
Walk, Laura ;
Woolley, Daniel G. ;
Riek, Stephan ;
Carson, Richard G. .
EXPERIMENTAL BRAIN RESEARCH, 2007, 180 (04) :629-640
[9]  
HURVICH CM, 1991, BIOMETRIKA, V78, P499
[10]   INTERNAL REPRESENTATIONS OF THE MOTOR APPARATUS - IMPLICATIONS FROM GENERALIZATION IN VISUOMOTOR LEARNING [J].
IMAMIZU, H ;
UNO, Y ;
KAWATO, M .
JOURNAL OF EXPERIMENTAL PSYCHOLOGY-HUMAN PERCEPTION AND PERFORMANCE, 1995, 21 (05) :1174-1198