Literature DB >> 26490855

The Periaqueductal Gray Orchestrates Sensory and Motor Circuits at Multiple Levels of the Neuraxis.

Stella Koutsikou1, Thomas C Watson2, Jonathan J Crook3, J Lianne Leith3, Charlotte L Lawrenson3, Richard Apps4, Bridget M Lumb3.   

Abstract

The periaqueductal gray (PAG) coordinates behaviors essential to survival, including striking changes in movement and posture (e.g., escape behaviors in response to noxious stimuli vs freezing in response to fear-evoking stimuli). However, the neural circuits underlying the expression of these behaviors remain poorly understood. We demonstrate in vivo in rats that activation of the ventrolateral PAG (vlPAG) affects motor systems at multiple levels of the neuraxis through the following: (1) differential control of spinal neurons that forward sensory information to the cerebellum via spino-olivo-cerebellar pathways (nociceptive signals are reduced while proprioceptive signals are enhanced); (2) alterations in cerebellar nuclear output as revealed by changes in expression of Fos-like immunoreactivity; and (3) regulation of spinal reflex circuits, as shown by an increase in α-motoneuron excitability. The capacity to coordinate sensory and motor functions is demonstrated in awake, behaving rats, in which natural activation of the vlPAG in fear-conditioned animals reduced transmission in spino-olivo-cerebellar pathways during periods of freezing that were associated with increased muscle tone and thus motor outflow. The increase in spinal motor reflex excitability and reduction in transmission of ascending sensory signals via spino-olivo-cerebellar pathways occurred simultaneously. We suggest that the interactions revealed in the present study between the vlPAG and sensorimotor circuits could form the neural substrate for survival behaviors associated with vlPAG activation. SIGNIFICANCE STATEMENT: Neural circuits that coordinate survival behaviors remain poorly understood. We demonstrate in rats that the periaqueductal gray (PAG) affects motor systems at the following multiple levels of the neuraxis: (1) through altering transmission in spino-olivary pathways that forward sensory signals to the cerebellum, reducing and enhancing transmission of nociceptive and proprioceptive information, respectively; (2) by alterations in cerebellar output; and (3) through enhancement of spinal motor reflex pathways. The sensory and motor effects occurred at the same time and were present in both anesthetized animals and behavioral experiments in which fear conditioning naturally activated the PAG. The results provide insights into the neural circuits that enable an animal to be ready and able to react to danger, thus assisting in survival.
Copyright © 2015 Koutsikou, Watson et al.

Entities:  

Keywords:  cerebellum; fear; nociception; periaqueductal grey; proprioception; spinal cord

Mesh:

Substances:

Year:  2015        PMID: 26490855      PMCID: PMC4683682          DOI: 10.1523/JNEUROSCI.0261-15.2015

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


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1.  Topography of cerebellar nuclear projections to the brain stem in the rat.

Authors:  T M Teune; J van der Burg; J van der Moer; J Voogd; T J Ruigrok
Journal:  Prog Brain Res       Date:  2000       Impact factor: 2.453

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Authors:  M Lidierth; R Apps
Journal:  J Physiol       Date:  1990-11       Impact factor: 5.182

3.  Subregions of the periaqueductal gray topographically innervate the rostral ventral medulla in the rat.

Authors:  E J Van Bockstaele; G Aston-Jones; V A Pieribone; M Ennis; M T Shipley
Journal:  J Comp Neurol       Date:  1991-07-15       Impact factor: 3.215

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Review 6.  Brainstem-spinal cord projections in the cat, related to control of head and axial movements.

Authors:  G Holstege
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Authors:  H H Molinari; J O Dostrovsky
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