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Radiological evidence to changes in the olfactory bulb volume depending on body mass index in the childhood
Murat Karaoglan1, Hale Colakoglu Er2
1Division of Pediatric Endocrinology, Gaziantep University Faculty of Medicine, 27070, Gaziantep, Turkey.
Insights
Olfactory bulb volume (OBV) is larger in obese children, correlating positively with BMI in overweight and obese groups. Morbidly obese children showed a negative correlation, suggesting complex olfactory regulation of energy balance.
Area of Science:
- Neuroscience
- Pediatrics
- Radiology
Background:
- Energy balance is regulated by complex neuro-endocrine and metabolic networks.
- Olfactory control plays a role in energy homeostasis, but its regulation of obesity remains unclear.
- Previous research on olfactory regulation of obesity has yielded controversial results.
Purpose of the Study:
- To investigate the relationship between olfactory bulb volume (OBV) and obesity in children.
- To use OBV as a radiological indicator of olfactory control in pediatric obesity.
Main Methods:
- 195 children were categorized into normal weight, overweight, obese, and morbidly obese groups based on BMI percentiles.
- Olfactory bulb volumes (OBV) were measured using Magnetic Resonance Imaging (MRI).
Main Results:
- Mean OBV was significantly higher in obese children compared to normal weight children.
- A positive correlation between BMI and OBV was observed in overweight and obese children.
- A negative correlation between BMI and OBV was found in the morbidly obese group.
Conclusions:
- Olfactory bulb volume is elevated in obese children.
- Bimodal correlations between OBV and BMI suggest a dual role for olfactory control in energy balance.
- Positive feedback in overweight/obese and negative feedback in morbidly obese children may contribute to energy balance regulation.
Objective:
Energy balance is preserved through the exchange between body weight and adipose tissue across the multi-faceted complex network that is composed of the sensorial, metabolic, and neuro-endocrine circuits. The olfactory control of energy homeostasis is maintained through the interplay between the olfactory bulb (OB) and adipose tissue. While extremely studied, most researches still report controversial results and sensorial regulation of obesity is not fully understood. This study aims to investigate the interplay between olfactory bulb volume (OBV) as a radiological clue of sensorial control and obesity in children.
Subjects And Method:
Children (n = 195) were classified into four groups based on body mass index (BMI) percentiles: normal weight (n = 89), overweight (n = 31), obese (n = 32) and morbidly obese (n = 43). OBV were calculated using MRI.
Results:
Mean OBV was higher in children with obesity than in those of normal weights. The means of OBV are found higher in the overweight and obese children (43.76 ± 9.50-49.29 ± 8.61 mm3) than in those of morbidly obese (38.23 ± 11.52 mm3) (p < 0.001). In overweight and obese children, a positive correlation were found between the BMI and OBV (roverweigh = 0.275-robese = 0.377), while in the morbidly obese group, there was a negative correlation (rseverelyobese = -0.445).
Conclusion:
This study reveals that OBV is higher in obese children. Also, it shows that there is a positive correlation between OBV and BMI in overweight and obese children and a negative correlation in the morbidly obese group. These radiological bimodal changes in OBV indicate that olfactory control acts to provide energy balance, mediated by positive in the overweight and obese children, negative feedback in the morbidly obese group.
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