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Altered resting-state functional connectivity of insula in children with primary nocturnal enuresis
Shaogen Zhong1, Jiayao Shen2, Mengxing Wang3
1Department of Developmental and Behavioral Pediatrics, Shanghai Children's Medical Center, School of Medicine, Shanghai Jiao Tong University, Shanghai, China.
Insights
Primary nocturnal enuresis (PNE) in children is linked to altered brain connectivity. This study found reduced insula functional connectivity with the medial prefrontal cortex in PNE patients, suggesting salience and default mode network dysconnectivity.
Area of Science:
- Neuroscience
- Developmental Pediatrics
- Functional Neuroimaging
Background:
- Primary nocturnal enuresis (PNE) is a prevalent developmental condition affecting school-aged children.
- Understanding the neural underpinnings of PNE is crucial for developing targeted interventions.
Purpose of the Study:
- To investigate the pathophysiology of PNE using insula-centered resting-state functional connectivity (rsFC).
- To explore differences in insular rsFC between children with PNE and healthy controls.
- To examine the relationship between aberrant insular rsFC and clinical characteristics in PNE.
Main Methods:
- Recruited 66 children (33 PNE, 33 healthy controls), matched for age and gender.
- Acquired functional and structural MRI data.
- Employed seed-based rsFC analysis focusing on the insula and correlation analyses with clinical variables.
Main Results:
- Children with PNE showed decreased insular rsFC with the right medial superior frontal gyrus (SFG) compared to controls.
- Significant positive correlations between bladder volume and insular rsFC were observed with global signal regression (GSR).
- Aberrant connectivity suggests potential dysregulation within the salience network (SN)-default mode network (DMN).
Conclusions:
- This is the first study to explore insular rsFC patterns in children with PNE.
- Findings suggest that insula-medial prefrontal cortex dysconnectivity, potentially involving the SN-DMN, may contribute to PNE pathophysiology.
- Further research is needed to clarify the inconsistent associations between bladder volume and SN-DMN dysconnectivity.
Objective:
Primary nocturnal enuresis (PNE) is a common developmental condition in school-aged children. The objective is to better understand the pathophysiology of PNE by using insula-centered resting-state functional connectivity (rsFC).
Methods:
We recruited 66 right-handed participants in our analysis, 33 with PNE and 33 healthy control (HC) children without enuresis matched for gender and age. Functional and structural MRI data were obtained from all the children. Seed-based rsFC was used to examine differences in insular functional connectivity between the PNE and HC groups. Correlation analyses were carried out to explore the relationship between abnormal insula-centered functional connectivity and clinical characteristics in the PNE group.
Results:
Compared with HC children, the children with PNE demonstrated decreased left and right insular rsFC with the right medial superior frontal gyrus (SFG). In addition, the bilateral dorsal anterior insula (dAI) seeds also indicated the reduced rsFC with right medial SFG. Furthermore, the right posterior insula (PI) seed showed the weaker rsFC with the right medial SFG, while the left PI seed displayed the weaker rsFC with the right SFG. No statistically significant correlations were detected between aberrant insular rsFC and clinical variables (e.g., micturition desire awakening, bed-wetting frequency, and bladder volume) in results without global signal regression (GSR) in the PNE group. However, before and after setting age as a covariate, significant and positive correlations between bladder volume and the rsFC of the left dAI with right medial SFG and the rsFC of the right PI with right medial SFG were found in results with GSR in the PNE group.
Conclusion:
To the best of our knowledge, this study explored the rsFC patterns of the insula in children with PNE for the first time. These results uncovered the abnormal rsFC of the insula with the medial prefrontal cortex without and with GSR in the PNE group, suggesting that dysconnectivity of the salience network (SN)-default mode network (DMN) may involve in the underlying pathophysiology of children with PNE. However, the inconsistent associations between bladder volume and dysconnectivity of the SN-DMN in results without and with GSR need further studies.
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