Morphological changes in the central sulcus of children with isolated growth hormone deficiency versus idiopathic short stature

IGHD 中央沟 特发性矮身高 生物 解剖 生长激素 运动皮层 神经科学 激素 生长激素缺乏 内分泌学 刺激
作者
Zhonghe Zhang,Yu Wang,Yue Gao,Zhuoran Li,Shuhan Zhang,Xiangtao Lin,Zhonghe Zhang,Qingxi Yu,Ximing Wang,Shuwei Liu
出处
期刊:Developmental Neurobiology [Wiley]
卷期号:81 (1): 36-46 被引量:1
标识
DOI:10.1002/dneu.22797
摘要

Abstract In this study, the morphological changes in the central sulcus between children with isolated growth hormone deficiency (IGHD) and those with idiopathic short stature (ISS) were analyzed. Thirty children with IGHD (peak growth hormone < 5 µg/L) and 30 children with ISS (peak growth hormone > 10.0 µg/L) were included. Morphological measurements of the central sulcus were obtained from T1‐weighted MRIs using BrainVISA, including the average sulcal width, maximum depth, average depth, top length, bottom length, and depth position‐based profiles (DPPs). The bilateral average width of the central sulci was significantly wider, while the left maximum depth and right average depth of the central sulcus were significantly smaller, in children with IGHD than in children with ISS. There were no significant differences in the right maximum depth, left average depth, or bilateral top length and bottom length of the central sulcus between groups. The DPPs of the middle part of both central sulci (corresponding to the hand motor activation area) and the inferior part of the right central sulcus (corresponding to the oral movement area) near the Sylvian fissure were significantly smaller in children with IGHD than in controls before false discovery rate (FDR) correction. However, all the above significant DPP sites disappeared after FDR correction. There were significant morphological changes in the three‐dimensional structure of the central sulcus in children with IGHD, which were the outcome of other more essential cortical or subcortical changes, resulting in their relatively slower development in motor, cognitive, and linguistic functional performance.
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