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Large-Scale Reorganization in the Somatosensory Cortex and Thalamus after Sensory Loss in Macaque Monkeys

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TLDR
A comparison of the extents of deafferentation across the monkeys shows that even if the dorsal column lesion is partial, preserving most of the hand representation, it is sufficient to induce an expansion of the face representation.
Abstract
Adult brains undergo large-scale plastic changes after peripheral and central injuries. Although it has been shown that both the cortical and thalamic representations can reorganize, uncertainties exist regarding the extent, nature, and time course of changes at each level. We have determined how cortical representations in the somatosensory area 3b and the ventroposterior (VP) nucleus of thalamus are affected by long standing unilateral dorsal column lesions at cervical levels in macaque monkeys. In monkeys with recovery periods of 22-23 months, the intact face inputs expanded into the deafferented hand region of area 3b after complete or partial lesions of the dorsal columns. The expansion of the face region could extend all the way medially into the leg and foot representations. In the same monkeys, similar expansions of the face representation take place in the VP nucleus of the thalamus, indicating that both these processing levels undergo similar reorganizations. The receptive fields of the expanded representations were similar in somatosensory cortex and thalamus. In two monkeys, we determined the extent of the brain reorganization immediately after dorsal column lesions. In these monkeys, the deafferented regions of area 3b and the VP nucleus became unresponsive to the peripheral touch immediately after the lesion. No reorganization was seen in the cortex or the VP nucleus. A comparison of the extents of deafferentation across the monkeys shows that even if the dorsal column lesion is partial, preserving most of the hand representation, it is sufficient to induce an expansion of the face representation.

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Citations
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Journal ArticleDOI

Afferent Fiber Remodeling in the Somatosensory Thalamus of Mice as a Neural Basis of Somatotopic Reorganization in the Brain and Ectopic Mechanical Hypersensitivity after Peripheral Sensory Nerve Injury.

TL;DR: A strong linkage between these plastic changes after peripheral sensory nerve injury is indicated, which may provide a neural circuit basis underlying large-scale reorganization of somatotopic representation and abnormal ectopic sensations.
Journal ArticleDOI

Large-scale reorganization of the somatosensory cortex of adult macaque monkeys revealed by fMRI

TL;DR: In monkeys with long-term unilateral lesions of the dorsal columns at cervical levels, tactile stimulation of the chin showed BOLD activation in the deafferented hand region of contralesional area 3b in the post-central gyrus.
Journal ArticleDOI

Brain Functional Connectivity Plasticity Within and Beyond the Sensorimotor Network in Lower-Limb Amputees.

TL;DR: Findings indicated a cascade of cortical reorganization at a more extensive network level following lower-limb amputation, and showed promise for the development of a possible neurobiological marker of changes in FC related to motor function recovery in LLAs.
Journal ArticleDOI

Cross-modal and compensatory plasticity in adult deafened cats: A longitudinal PET study

TL;DR: Auditory cortical plasticity subsequent to deafness was demonstrated and a significant metabolic upsurge occurred in bilateral occipital areas at Month 33, which suggests compensatory hyperactivity of the visual cortex after deafness.
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Circuit organization of the excitatory sensorimotor loop through hand/forelimb S1 and M1.

TL;DR: In this paper, a detailed wiring diagram for the hand/forelimb-related transcortical circuit is presented, delineating a basic but complex set of cell-type-specific feedforward excitatory connections that selectively and extensively engage diverse intratelencephalic projection neurons, thereby polysynaptically linking subcortical input to cortical motor output to spinal cord.
References
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Journal ArticleDOI

Changes in the visual system of monocularly sutured or enucleated cats demonstrable with cytochrome oxidase histochemistry

TL;DR: The results indicated that the deprivation caused by monocular suture produced a decrease in the cytochrome oxidase staining of the binocular segment of the deprived geniculate laminae of kittens, leading to a significant decreases in the level of oxidative enzyme activity one to several synapses away.
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Phantom-limb pain as a perceptual correlate of cortical reorganization following arm amputation

TL;DR: A very strong direct relationship is reported between the amount of cortical reorganization and the magnitude of phantom limb pain (but not non-painful phantom phenomena) experienced after arm amputation, indicating that phantom-limb pain is related to, and may be a consequence of, plastic changes in primary somatosensory cortex.
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Somatosensory cortical map changes following digit amputation in adult monkeys

TL;DR: The cortical representations of the hand in area 3b in adult owl monkeys were defined with use of microelectrode mapping techniques 2–8 months after surgical amputation of digit 3, or of both digits 2 and 3.
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Massive cortical reorganization after sensory deafferentation in adult macaques

TL;DR: The results show the need for a reevaluation of both the upper limit of cortical reorganization in adult primates and the mechanisms responsible for it.
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Topographic reorganization of somatosensory cortical areas 3b and 1 in adult monkeys following restricted deafferentation

TL;DR: This paper found that after the median nerve was transected and ligated in adult owl and squirrel monkeys, the cortical sectors representing it within skin surface representations in Areas 3b and 1 were completely occupied by 'new' and expanded representations of surrounding skin fields.
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