Arthritis & Rheumatism· 2010
Intrinsic brain connectivity in fibromyalgia is associated with chronic pain intensity
- 660citations
- 2010year
Short summary
Fibromyalgia patients show increased connectivity within the default mode network (DMN) and right executive attention network (EAN), and between the DMN and the insula, compared to controls.
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Key points
- Fibromyalgia patients had greater DMN and right EAN connectivity than controls.
- Increased connectivity was observed between the DMN and the insula in fibromyalgia patients.
- Higher spontaneous pain intensity correlated with greater insula connectivity to the DMN and right EAN.
- Medial visual network connectivity did not differ between groups.
AI-generated from the title and abstract; the full text is not read.
Abstract
OBJECTIVE: Fibromyalgia (FM) is considered to be the prototypical central chronic pain syndrome and is associated with widespread pain that fluctuates spontaneously. Multiple studies have demonstrated altered brain activity in these patients. The objective of this study was to investigate the degree of connectivity between multiple brain networks in patients with FM, as well as how activity in these networks correlates with the level of spontaneous pain. METHODS: Resting-state functional magnetic resonance imaging (FMRI) data from 18 patients with FM and 18 age-matched healthy control subjects were analyzed using dual-regression independent components analysis, which is a data-driven approach for the identification of independent brain networks. Intrinsic, or resting-state, connectivity was evaluated in multiple brain networks: the default mode network (DMN), the executive attention network (EAN), and the medial visual network (MVN), with the MVN serving as a negative control. Spontaneous pain levels were also analyzed for covariance with intrinsic connectivity. RESULTS: Patients with FM had greater connectivity within the DMN and right EAN (corrected P [P(corr)] < 0.05 versus controls), and greater connectivity between the DMN and the insular cortex, which is a brain region known to process evoked pain. Furthermore, greater intensity of spontaneous pain at the time of the FMRI scan correlated with greater intrinsic connectivity between the insula and both the DMN and right EAN (P(corr) < 0.05). CONCLUSION: These findings indicate that resting brain activity within multiple networks is associated with spontaneous clinical pain in patients with FM. These findings may also have broader implications for how subjective experiences such as pain arise from a complex interplay among multiple brain networks.
The authors' abstract, as published at the source. Arthritis & Rheumatism, 2010 · DOI ↗
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Field: Cognitive Neuroscience
Cognitive NeuroscienceNeuroscience