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Published on: August 7, 2017
Impaired functional connectivity of limbic system in migraine without aura
Heng-Le Wei1, Jinan Chen2, Yu-Chen Chen3
1Department of Radiology, The Affiliated Jiangning Hospital of Nanjing Medical University, No. 168, Gushan Road, Nanjing, 211100, Jiangsu Province, China.
Abstract:
Aberrant functional connectivity of brain networks has been demonstrated in migraine sufferers. Functional magnetic resonance imaging (fMRI) may illustrate altered connectivity in patients suffering from migraine without aura (MwoA). Here, we applied a seed-based approach based on limbic regions to investigate disrupted functional connectivity between spontaneous migraine attacks. Resting-state fMRI data were obtained from 28 migraine patients without aura and 23 well-matched healthy controls (HC). The functional connectivity of the limbic system was characterized using a seed-based whole-brain correlation method. The resulting functional connectivity measurements were assessed for correlations with other clinical features. Neuropsychological data revealed significantly increased connectivity between the limbic system (bilateral amygdala and right hippocampus) and left middle occipital gyrus (MOG), and a positive correlation was revealed between disease duration and connective intensity of the left amygdala and the ipsilateral MOG. There was decreased functional connectivity between the right amygdala and contralateral orbitofrontal cortex (OFC). In addition, resting-state fMRI showed that, compared to HC, patients without aura had significant functional connectivity consolidation between the bilateral hippocampus and cerebellum, and a negative correlation was detected between scores on the headache impact test (HIT) and connectivity intensity of the right hippocampus and bilateral cerebellum. There was decreased functional connectivity between the left hippocampus and three brain areas, encompassing the bilateral inferior parietal gyri (IPG) and contralateral supplementary motor area (SMA). There were no structural differences between the two groups. Our data suggest that migraine patients have disrupted limbic functional connectivity to pain-related regions of the modulatory and encoding cortices, which are associated with specific clinical characteristics. Disturbances of resting-state functional connectivity may play a key role in neuropathological features, perception and affection of migraine. The current study provides further insights into the complex scenario of migraine mechanisms. .
Insights
Migraine without aura involves disrupted brain connectivity, particularly in limbic regions. These changes correlate with disease duration and headache impact, suggesting a role in migraine neuropathology.
Area of Science:
- Neuroscience
- Neurology
- Radiology
Background:
- Aberrant functional brain connectivity is observed in migraine sufferers.
- Functional magnetic resonance imaging (fMRI) can reveal altered connectivity in migraine without aura (MwoA).
- Investigating resting-state functional connectivity between migraine attacks is crucial for understanding underlying mechanisms.
Purpose of the Study:
- To investigate disrupted functional connectivity in the limbic system of MwoA patients compared to healthy controls (HC).
- To explore correlations between altered functional connectivity and clinical features such as disease duration and headache impact.
Main Methods:
- Resting-state fMRI data acquired from 28 MwoA patients and 23 HC.
- Seed-based whole-brain correlation analysis using limbic regions (amygdala, hippocampus) as seeds.
- Assessment of functional connectivity measurements and correlation with clinical data (disease duration, Headache Impact Test - HIT).
Main Results:
- Increased limbic connectivity (amygdala, hippocampus) with the left middle occipital gyrus (MOG); positive correlation between disease duration and left amygdala-MOG connectivity.
- Decreased connectivity between the right amygdala and orbitofrontal cortex (OFC).
- Consolidated hippocampal-cerebellar connectivity in MwoA patients; negative correlation between HIT scores and right hippocampus-cerebellum connectivity. Decreased left hippocampal connectivity with inferior parietal gyri (IPG) and supplementary motor area (SMA).
Conclusions:
- Migraine patients exhibit disrupted limbic functional connectivity to pain-related cortices, linked to specific clinical characteristics.
- Alterations in resting-state functional connectivity may be key to the neuropathology, perception, and affective components of migraine.
- The study offers insights into the complex mechanisms underlying migraine.
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