Vector field approximation: A computational paradigm for motor control and learning (Q1202328)
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scientific article; zbMATH DE number 108853
| Language | Label | Description | Also known as |
|---|---|---|---|
| English | Vector field approximation: A computational paradigm for motor control and learning |
scientific article; zbMATH DE number 108853 |
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Vector field approximation: A computational paradigm for motor control and learning (English)
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23 February 1993
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Recent experiments in the spinalized frog have shown that focal microstimulation of a site in the premotor layers in the lumbar grey matter of the spinal cord results in a field of forces acting on the frog's ankle and converging to a single equilibrium position. These experiments suggested that the neural circuits in the spinal cord are organized in a set of control modules that ``store'' a few limb postures in the form of convergent force fields acting on the limb's end-point. Here, we investigate how such postural modules can be combined by the central nervous system for generating and representing a wider repertoire of control patterns. We regard the issue of generating motor repertoires as a problem of vector-field approximation. To this end, we characterize the output of a control module as a ``basis field'', that is as the vectorial equivalent of a basis function. Our theoretical findings indicate that by combining basis fields, the central nervous system may achieve a number of goals such as (1) the generation of a wide repertoire of control patterns and (2) the representation of these control patterns with a set of coefficients that are invariant under coordinate transformations.
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basis field
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neural circuits
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spinal cord
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control modules
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central nervous system
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vector-field approximation
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coordinate transformations
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