Role of uncertainty in sensorimotor control

被引:173
作者
van Beers, RJ [1 ]
Baraduc, P [1 ]
Wolpert, DM [1 ]
机构
[1] UCL, Sobell Dept Motor Neurosci & Movement Disorders, Inst Neurol, London WC1N 3BG, England
关键词
noise; uncertainty; motor control; motor planning; multisensory integration;
D O I
10.1098/rstb.2002.1101
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Neural signals are corrupted by noise and this places limits on information processing. We review the processes involved in goal-directed movements and how neural noise and uncertainty determine aspects of our behaviour. First, noise in sensory signals limits perception. We show that, when localizing our hand, the central nervous system (CNS) integrates visual and proprioceptive information, each with different noise properties, in a way that minimizes the uncertainty in the overall estimate. Second, noise in motor commands leads to inaccurate movements. We review an optimal-control framework, known as 'task optimization in the presence of signal-dependent noise', which assumes that movements are planned so as to minimize the deleterious consequences of noise and thereby minimize inaccuracy. Third, during movement, sensory and motor signals have to be integrated to allow estimation of the body's state. Models are presented that show how these signals are optimally combined. Finally, we review how the CNS deals with noise at the neural and network levels. In all of these processes, the CNS carries out the tasks in such a way that the detrimental effects of noise are minimized. This shows that it is important to consider effects at the neural level in order to understand performance at the behavioural level.
引用
收藏
页码:1137 / 1145
页数:9
相关论文
共 70 条
[1]   The effect of correlated variability on the accuracy of a population code [J].
Abbott, LF ;
Dayan, P .
NEURAL COMPUTATION, 1999, 11 (01) :91-101
[2]   AN EVALUATION OF CAUSES FOR UNRELIABILITY OF SYNAPTIC TRANSMISSION [J].
ALLEN, C ;
STEVENS, CF .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (22) :10380-10383
[3]  
ATKESON CG, 1985, J NEUROSCI, V5, P2318
[4]  
BAHILL A T, 1975, Mathematical Biosciences, V24, P191, DOI 10.1016/0025-5564(75)90075-9
[5]   Recoding arm position to learn visuomotor transformations [J].
Baraduc, P ;
Guigon, E ;
Burnod, Y .
CEREBRAL CORTEX, 2001, 11 (10) :906-917
[6]   Central cancellation of self-produced tickle sensation [J].
Blakemore, SJ ;
Wolpert, DM ;
Frith, CD .
NATURE NEUROSCIENCE, 1998, 1 (07) :635-640
[7]   The perception of self-produced sensory stimuli in patients with auditory hallucinations and passivity experiences: evidence for a breakdown in self-monitoring [J].
Blakemore, SJ ;
Smith, J ;
Steel, R ;
Johnstone, EC ;
Frith, CD .
PSYCHOLOGICAL MEDICINE, 2000, 30 (05) :1131-1139
[8]   The cerebellum is involved in predicting the sensory consequences of action [J].
Blakemore, SJ ;
Frith, CD ;
Wolpert, DM .
NEUROREPORT, 2001, 12 (09) :1879-1884
[9]   Spatio-temporal prediction modulates the perception of self-produced stimuli [J].
Blakemore, SJ ;
Frith, CD ;
Wolpert, DM .
JOURNAL OF COGNITIVE NEUROSCIENCE, 1999, 11 (05) :551-559
[10]   BINOCULAR COORDINATION OF HUMAN HORIZONTAL SACCADIC EYE-MOVEMENTS [J].
COLLEWIJN, H ;
ERKELENS, CJ ;
STEINMAN, RM .
JOURNAL OF PHYSIOLOGY-LONDON, 1988, 404 :157-182