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Published on: June 9, 2018
[Morphological changes of the central sulcus in children with complete growth hormone deficiency: a 3.0 T MRI study]
1Department of Medical Imaging, Shandong Provincial Hospital Affiliated to Shandong University, Jinan 250021, China.
Insights
Children with complete growth hormone deficiency (CGHD) show altered central sulcus morphology, including wider sulci and reduced depth. These brain changes may explain developmental delays in motor, cognitive, and language skills.
Area of Science:
- Neuroscience
- Pediatric Endocrinology
- Developmental Biology
Background:
- Complete growth hormone deficiency (CGHD) impacts growth and development.
- Morphological brain changes in children with CGHD are not fully understood.
- The central sulcus plays a role in motor and cognitive functions.
Purpose of the Study:
- To investigate morphological differences in the central sulcus of children with CGHD compared to those with idiopathic short stature.
- To identify specific measurements of the central sulcus that are altered in CGHD.
Main Methods:
- A case-control study involving 30 children with CGHD and 30 with idiopathic short stature (ages 5-14).
- Brain imaging analysis using Brain VISA software to measure central sulcus width, depth, and depth position-based profiles (DPP).
- Statistical analysis to compare measurements between the CGHD and control groups.
Main Results:
- Children with CGHD exhibited significantly wider bilateral central sulci compared to controls.
- The left central sulcus maximum depth and right central sulcus average depth were significantly lower in children with CGHD.
- Significantly reduced DPP was observed in specific regions of the central sulcus in children with CGHD.
Conclusions:
- Significant morphological alterations of the central sulcus are present in children with CGHD.
- These structural changes may underlie the observed delays in motor, cognitive, and linguistic development in children with CGHD.
Abstract:
Objective: To analyze morphological changes in central sulcus of the cerebral cortex in children with complete growth hormone deficiency (CGHD). Methods: Patients attending the Shandong Provincial Hospital who were diagnosed with CGHD or idiopathic short stature were recruited from January 2015 to January 2019. Thirty children with CGHD (18 males and 12 females, 5 to 14 years old) and 30 children with idiopathic short stature (22 males and 8 females, 5 to 14 years old) were included. Measurements of the central sulcus, including the average width, maximum depth, average depth, top length, bottom length and depth position-based profiles (DPP), were obtained using Brain VISA software. The significant differences between groups were statistically analyzed. Results: The average width of bilateral central sulci in children with CGHD (left: (2.26±0.41) mm; right: (2.19±0.34) mm) were significantly higher than those in children with idiopathic short stature (left: (2.10±0.27) mm; right: (2.02±0.18) mm) (P<0.05) ; The maximum depth of the left central sulcus ((19.67±1.29) mm) and the average depth of the right central sulcus ((14.18±1.41) mm) were significantly lower than those in children with idiopathic short stature (left maximum depth: (20.69±1.43) mm; right average depth: (14.92±1.21) mm) (P<0.05) . Children with CGHD had significantly lower DPP at the middle part of the left central sulcus (sites: 46-54) and the inferior part of the right central sulcus(sites: 91-98). Conclusion: There are significant morphological changes of the central sulcus in children with CGHD, which may represent the structural basis of their relatively slower development in motor, cognitive and linguistic functional performance.
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