Literature DB >> 25635458

Identification of a spinal circuit for light touch and fine motor control.

Steeve Bourane1, Katja S Grossmann1, Olivier Britz1, Antoine Dalet1, Marta Garcia Del Barrio1, Floor J Stam1, Lidia Garcia-Campmany1, Stephanie Koch1, Martyn Goulding2.   

Abstract

Sensory circuits in the dorsal spinal cord integrate and transmit multiple cutaneous sensory modalities including the sense of light touch. Here, we identify a population of excitatory interneurons (INs) in the dorsal horn that are important for transmitting innocuous light touch sensation. These neurons express the ROR alpha (RORα) nuclear orphan receptor and are selectively innervated by cutaneous low threshold mechanoreceptors (LTMs). Targeted removal of RORα INs in the dorsal spinal cord leads to a marked reduction in behavioral responsiveness to light touch without affecting responses to noxious and itch stimuli. RORα IN-deficient mice also display a selective deficit in corrective foot movements. This phenotype, together with our demonstration that the RORα INs are innervated by corticospinal and vestibulospinal projection neurons, argues that the RORα INs direct corrective reflex movements by integrating touch information with descending motor commands from the cortex and cerebellum.
Copyright © 2015 Elsevier Inc. All rights reserved.

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Year:  2015        PMID: 25635458      PMCID: PMC4431637          DOI: 10.1016/j.cell.2015.01.011

Source DB:  PubMed          Journal:  Cell        ISSN: 0092-8674            Impact factor:   41.582


  63 in total

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  59 in total

Review 1.  Genetically identified spinal interneurons integrating tactile afferents for motor control.

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Review 4.  Making sense out of spinal cord somatosensory development.

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5.  Timing Mechanisms Underlying Gate Control by Feedforward Inhibition.

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6.  Gate control of mechanical itch by a subpopulation of spinal cord interneurons.

Authors:  Steeve Bourane; Bo Duan; Stephanie C Koch; Antoine Dalet; Olivier Britz; Lidia Garcia-Campmany; Euiseok Kim; Longzhen Cheng; Anirvan Ghosh; Qiufu Ma; Martyn Goulding
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Review 7.  Motor cortex - to act or not to act?

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8.  Decoding Cell Type Diversity Within the Spinal Cord.

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9.  RORβ Spinal Interneurons Gate Sensory Transmission during Locomotion to Secure a Fluid Walking Gait.

Authors:  Stephanie C Koch; Marta Garcia Del Barrio; Antoine Dalet; Graziana Gatto; Thomas Günther; Jingming Zhang; Barbara Seidler; Dieter Saur; Roland Schüle; Martyn Goulding
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10.  Spinal Locomotor Circuits Develop Using Hierarchical Rules Based on Motorneuron Position and Identity.

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