• Neuroscience · Jun 2017

    Mapping of pain circuitry in early post-natal development using manganese-enhanced MRI in rats.

    • M M Sperry, B M Kandel, S Wehrli, K N Bass, S R Das, P S Dhillon, J C Gee, and G A Barr.
    • Department of Bioengineering, University of Pennsylvania, United States.
    • Neuroscience. 2017 Jun 3; 352: 180189180-189.

    AbstractPremature or ill full-term infants are subject to a number of noxious procedures as part of their necessary medical care. Although we know that human infants show neural changes in response to such procedures, we know little of the sensory or affective brain circuitry activated by pain. In rodent models, the focus has been on spinal cord and, more recently, midbrain and medulla. The present study assesses activation of brain circuits using manganese-enhanced magnetic resonance imaging (MEMRI). Uptake of manganese, a paramagnetic contrast agent that is transported across active synapses and along axons, was measured in response to a hindpaw injection of dilute formalin in 12-day-old rat pups, the age at which rats begin to show aversion learning and which is roughly the equivalent of full-term human infants. Formalin induced the oft-reported biphasic response at this age and induced a conditioned aversion to cues associated with its injection, thus demonstrating the aversiveness of the stimulation. Morphometric analyses, structural equation modeling and co-expression analysis showed that limbic and sensory paths were activated, the most prominent of which were the prefrontal and anterior cingulate cortices, nucleus accumbens, amygdala, hypothalamus, several brainstem structures, and the cerebellum. Therefore, both sensory and affective circuits, which are activated by pain in the adult, can also be activated by noxious stimulation in 12-day-old rat pups.Copyright © 2017 IBRO. Published by Elsevier Ltd. All rights reserved.

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