Temporal Patterns of Brain Network Plasticity During the Onset and Maintenance of Neuropathic Pain in Male Mice
Cazzanelli, S.; Lemeur, S. D.; Jouanneau, Y. T.; Eglin, L.; Yalcin, I.; Bertolo, A.; Dizeux, A.; Ialy-Radio, N.; Deffieux, T.; Tanter, M.; Osmanski, B. F.; Ferrier, J.; Pezet, S.
Show abstract
Neuropathic pain arises from complex peripheral and central mechanisms and induces long-lasting maladaptive changes in the brain. To investigate the temporal dynamics of these changes, we examined resting-state functional connectivity (FC) in a mouse model of neuropathic pain across its initiation and maintenance phases. Using functional ultrasound imaging to capture whole-brain FC over disease progression, we conducted two complementary studies: a longitudinal assessment in anesthetized animals and an analysis of awake cohorts at distinct disease stages. Both exploratory and literature-guided analyses revealed that FC across most large-scale networks remained remarkably stable during pain maintenance. In contrast, pain onset was marked by enhanced FC between key regions involved in sensory, emotional, and motivational processing, including the motor cortex and nucleus accumbens, the prelimbic and insular cortices, and the infralimbic cortex and hypothalamus. As pain persisted, we observed reduced FC within the somatomotor network, reflecting functional disconnection. Additionally, postsurgical pain alone produced enduring FC changes within the prefrontal cortex, hippocampus, and insula, indicating long-term central plasticity independent of neuropathic injury. Together, these findings reveal dynamic, network-specific adaptations that distinguish the onset and maintenance phases of neuropathic pain and surgery-related plasticity.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Individually Unique Dynamics of Cortical Connectivity Reflect the Ongoing Intensity of Chronic Pain 96%
- Differential maturation of the brain networks required for the sensory, emotional and cognitive aspects of pain in human newborns 94%
- Assessing the predictive value of peak alpha frequency for the sensitivity to pain 94%
Similar papers in this journal
- Brain states govern the spatio-temporal dynamics of resting state functional connectivity 95%
- Brain white matter pathways of resilience to chronic back pain: a multisite validation 94%
- Cortico-spinal coupling along descending pain system differentiates between opioid and saline treatment in healthy participants 93%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.