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Journal ArticleDOI

Signal-dependent noise determines motor planning

Chris Harris, +1 more
- 20 Aug 1998 - 
- Vol. 394, Iss: 6695, pp 780-784
TLDR
This theory provides a simple and powerful unifying perspective for both eye and arm movement control and accurately predicts the trajectories of both saccades and arm movements and the speed–accuracy trade-off described by Fitt's law.
Abstract
When we make saccadic eye movements or goal-directed arm movements, there is an infinite number of possible trajectories that the eye or arm could take to reach the target1,2. However, humans show highly stereotyped trajectories in which velocity profiles of both the eye and hand are smooth and symmetric for brief movements3,4. Here we present a unifying theory of eye and arm movements based on the single physiological assumption that the neural control signals are corrupted by noise whose variance increases with the size of the control signal. We propose that in the presence of such signal-dependent noise, the shape of a trajectory is selected to minimize the variance of the final eye or arm position. This minimum-variance theory accurately predicts the trajectories of both saccades and arm movements and the speed–accuracy trade-off described by Fitt's law5. These profiles are robust to changes in the dynamics of the eye or arm, as found empirically6,7. Moreover, the relation between path curvature and hand velocity during drawing movements reproduces the empirical ‘two-thirds power law’8,9. This theory provides a simple and powerful unifying perspective for both eye and arm movement control.

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Citations
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Journal ArticleDOI

Disturbances in programming goal-directed arm movements in children with ADHD.

TL;DR: Analysis showed that movement control was impaired in children with ADHD and that their problems were especially pronounced during the without‐visual‐feedback condition, which indicates poorer motor programming inChildren with ADHD.
Journal ArticleDOI

A Population Coding Account for Systematic Variation in Saccadic Dead Time

TL;DR: A stochastic accumulator model of the oculomotor decision mechanism accounts comprehensively for the findings and predicts a gap effect through changes in baseline activity without producing variations in the dead time.
Journal ArticleDOI

Models of human movement: Trajectory planning and inverse kinematics studies

TL;DR: One principle of motor coordination during human locomotion emerging from this body of work is the intersegmental law of coordination, which is related to the principles governing the control of human arm movements.
Journal ArticleDOI

Learning to Reach by Constraining the Movement Search Space

TL;DR: In this article, the authors propose a computational model of reaching based on the notion that early sensorimotor control is driven by the generation of exploratory movements, followed by the selection and maintenance of adaptive movement patterns.
Journal ArticleDOI

Maximising somersault rotation in tumbling.

TL;DR: It is concluded that the limiting factor to maximising somersault rotation is the ability to generate high linear and angular velocities during the approach phase coupled with the able to adopt consonant activation timings during the takeoff phase.
References
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Journal ArticleDOI

The information capacity of the human motor system in controlling the amplitude of movement.

TL;DR: The motor system in the present case is defined as including the visual and proprioceptive feedback loops that permit S to monitor his own activity, and the information capacity of the motor system is specified by its ability to produce consistently one class of movement from among several alternative movement classes.
Journal ArticleDOI

The coordination of arm movements: an experimentally confirmed mathematical model.

TL;DR: A mathematical model is formulated which is shown to predict both the qualitative features and the quantitative details observed experimentally in planar, multijoint arm movements, and is successful only when formulated in terms of the motion of the hand in extracorporal space.
Journal ArticleDOI

An Internal Model for Sensorimotor Integration

TL;DR: A sensorimotor integration task was investigated in which participants estimated the location of one of their hands at the end of movements made in the dark and under externally imposed forces, providing direct support for the existence of an internal model.
Journal ArticleDOI

Adaptive representation of dynamics during learning of a motor task

TL;DR: The investigation of how the CNS learns to control movements in different dynamical conditions, and how this learned behavior is represented, suggests that the elements of the adaptive process represent dynamics of a motor task in terms of the intrinsic coordinate system of the sensors and actuators.
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