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Plasticity in the frequency representation of primary auditory cortex following discrimination training in adult owl monkeys

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TLDR
It is demonstrated that attended natural stimulation can modify the tonotopic organization of Al in the adult primate, and that this alteration is correlated with changes in perceptual acuity.
Abstract
Previous studies have shown that the tonotopic organization of primary auditory cortex is altered subsequent to restricted cochlear lesions (Robertson and Irvine, 1989) and that the topographic reorganization of the primary somatosensory cortex is correlated with changes in the perceptual acuity of the animal (Recanzone et al., 1992a-d). Here we report an increase in the cortical area of representation of a restricted frequency range in primary auditory cortex of adult owl monkeys that is correlated with the animal's performance at a frequency discrimination task. Monkeys trained for several weeks to discriminate small differences in the frequency of sequentially presented tonal stimuli revealed a progressive improvement in performance with training. At the end of the training period, the tonotopic organization of Al was defined by recording multiple-unit responses at 70-258 cortical locations. These responses were compared to those derived from three normal monkeys and from two monkeys that received the same auditory stimuli but that were engaged in a tactile discrimination task. The cortical representation, the sharpness of tuning, and the latency of the response were greater for the behaviorally relevant frequencies of trained monkeys when compared to the same frequencies of control monkeys. The cortical area of representation was the only studied parameter that was correlated with behavioral performance. These results demonstrate that attended natural stimulation can modify the tonotopic organization of Al in the adult primate, and that this alteration is correlated with changes in perceptual acuity.

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CORTICAL PLASTICITY: From Synapses to Maps

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Increased Cortical Representation of the Fingers of the Left Hand in String Players

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Use-dependent alterations of movement representations in primary motor cortex of adult squirrel monkeys

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The acquisition of skilled motor performance: Fast and slow experience-driven changes in primary motor cortex

TL;DR: It is shown that a few minutes of daily practice on a sequential finger opposition task can be sufficient to trigger performance gains that require time to become evident, and proposed that skilled motor performance is acquired in several stages: "fast" learning, an initial, within-session improvement phase, followed by a period of consolidation of several hours duration, and then "slow" learnings, consisting of delayed, incremental gains in performance emerging after continued practice.
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Cortical map reorganization enabled by nucleus basalis activity.

TL;DR: It is demonstrated that episodic electrical stimulation of the nucleus basalis, paired with an auditory stimulus, results in a massive progressive reorganization of the primary auditory cortex in the adult rat, suggesting that input characteristics may be able to drive appropriate alterations of receptive fields independently of explicit knowledge of the task.
References
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Book

The Principles of Psychology

William James
TL;DR: For instance, the authors discusses the multiplicity of the consciousness of self in the form of the stream of thought and the perception of space in the human brain, which is the basis for our work.
Journal ArticleDOI

Plasticity of sensory and motor maps in adult mammals.

TL;DR: This rev iew addresses questions about the capacity of sensory and motor maps in the brains of adul t mammals to change as a resul t of alterations in the effectiveness of inputs, the availability of effectors, and direct damage.
Journal ArticleDOI

Functional reorganization of primary somatosensory cortex in adult owl monkeys after behaviorally controlled tactile stimulation

TL;DR: These experiments demonstrate that functional cortical remodeling of the S1 koniocortical field, area 3b, results from behavioral manipulations in normal adult owl monkeys.
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