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Open AccessJournal ArticleDOI

Intracortical and Thalamocortical Connections of the Hand and Face Representations in Somatosensory Area 3b of Macaque Monkeys and Effects of Chronic Spinal Cord Injuries.

Prem Chand, +1 more
- 30 Sep 2015 - 
- Vol. 35, Iss: 39, pp 13475-13486
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TLDR
It is shown that reorganization of primary somatosensory area 3b is not accompanied with either an increase in intrinsic cortical connections between the hand and face representations, or any change in thalamocortical inputs to these areas.
Abstract
Brains of adult monkeys with chronic lesions of dorsal columns of spinal cord at cervical levels undergo large-scale reorganization. Reorganization results in expansion of intact chin inputs, which reactivate neurons in the deafferented hand representation in the primary somatosensory cortex (area 3b), ventroposterior nucleus of the thalamus and cuneate nucleus of the brainstem. A likely contributing mechanism for this large-scale plasticity is sprouting of axons across the hand-face border. Here we determined whether such sprouting takes place in area 3b. We first determined the extent of intrinsic corticocortical connectivity between the hand and the face representations in normal area 3b. Small amounts of neuroanatomical tracers were injected in these representations close to the electrophysiologically determined hand-face border. Locations of the labeled neurons were mapped with respect to the detailed electrophysiological somatotopic maps and histologically determined hand-face border revealed in sections of the flattened cortex stained for myelin. Results show that intracortical projections across the hand-face border are few. In monkeys with chronic unilateral lesions of the dorsal columns and expanded chin representation, connections across the hand-face border were not different compared with normal monkeys. Thalamocortical connections from the hand and face representations in the ventroposterior nucleus to area 3b also remained unaltered after injury. The results show that sprouting of intrinsic connections in area 3b or the thalamocortical inputs does not contribute to large-scale cortical plasticity. Significance statement: Long-term injuries to dorsal spinal cord in adult primates result in large-scale somatotopic reorganization due to which chin inputs expand into the deafferented hand region. Reorganization takes place in multiple cortical areas, and thalamic and medullary nuclei. To what extent this brain reorganization due to dorsal column injuries is related to axonal sprouting is not known. Here we show that reorganization of primary somatosensory area 3b is not accompanied with either an increase in intrinsic cortical connections between the hand and face representations, or any change in thalamocortical inputs to these areas. Axonal sprouting that causes reorganization likely takes place at subthalamic levels.

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Citations
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Journal ArticleDOI

Tactile learning transfer from the hand to the face but not to the forearm implies a special hand-face relationship

TL;DR: It is suggested that RSS-induced tactile learning transfers preferentially from the hand to the face rather than to the forearm, reflecting a fundamental coupling between these body parts.
Journal ArticleDOI

Nerve root magnetic stimulation improves locomotor function following spinal cord injury with electrophysiological improvements and cortical synaptic reconstruction

TL;DR: It is found that nerve root magnetic stimulation improved the locomotor function and enhanced nerve conduction in the injured spinal cord and promoted the recovery of synaptic ultrastructure in the sensorimotor cortex.
Posted ContentDOI

Resting-State Functional Networks of Different Topographic Representations in the Somatosensory Cortex of Macaque Monkeys and Humans

TL;DR: The results show that different body part representations in area 3b have independent functional networks perhaps reflecting differences in the behavioral use of different body parts, and that large cortical areas if considered together, do not give a complete and accurate picture of the network architecture.
Posted ContentDOI

Reorganization in cerebral and cerebellar cortices is not restricted by proximity between body-part representations

TL;DR: It is demonstrated that information from the same body-parts is processed in the hand regions of both the cerebral cortex and cerebellum, demonstrating alternative drivers of reorganization, and particularly the possible role of adaptive behavior and sub-cortical plasticity.
Dissertation

Sensorimotor cortex plasticity in upper-limb amputees

Sanne Kikkert
TL;DR: It is demonstrated that the topographical representation of a missing hand’s individual digits is preserved in primary somatosensory cortex, even decades after arm amputation, questions the extent to which continued sensory input is necessary to maintain organisation in sensory cortex.
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Journal ArticleDOI

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