Grey Matter Hypertrophy and Atrophy in Early-Blind Adolescents: A Surface-Based Morphometric Study

Author:

Hou Fen1,Li Hengguo2ORCID,Li Ping1,Shen Hongrong1,Yang Yu1,Li Bo1,Long Qian 3,Fan Yang4,Li Hai4,Hou Gangqiang5,Jiang Wentao5,Zhou Zhifeng5ORCID,Liu Xia5ORCID

Affiliation:

1. Department of Radiology, First Affiliated Hospital of Hunan University of Chinese Medicine, 95 Shaoshan Middle Road, Yuhua District, Changsha 410007, China

2. Medical Imaging Center, The First Affiliated Hospital of Jinan University, Guangzhou 510632, China

3. 3GE Healthcare, Beijing, China

4. Beijing Intelligent Brain Cloud, Inc, Beijing, China

5. Neuropsychiatric Imaging Center, Shenzhen Kangning Hospital, Shenzhen Mental Health Center, Shenzhen 518000, China

Abstract

Objective. This study is aimed at exploring the regional changes in brain cortical morphology (thickness, volume, and surface area) in the early-blind adolescents (EBAs) by using the surface-based morphometric (SBM) method. Methods. High-resolution structural T1-weighted images (T1WI) of 23 early-blind adolescents (EBAs) and 21 age- and gender-matched normal-sighted controls (NSCs) were acquired. Structural indices, including cortical thickness (CT), cortical volume (CV), and surface area (SA), were analyzed by using FreeSurfer software, and the correlations between structural indices and the blindness duration were computed by Pearson correlation analysis. Results. Compared to controls, EBAs had significantly reduced CV and SA mainly in the primary visual cortex (V1) and decreased CV in the left vision-related cortices (r-MFC). There were no regions that EBAs had a significantly larger CV or SA than NSCs. EBAs had significantly increased CT in the V1 and strongly involved the visual cortex (right lateral occipital gyrus, LOG.R) and the left superior temporal gyrus (STG.L), while it had decreased CT in the left superior parietal lobule (SPL.L) and the right lingual gyrus (LING.R). Additionally, no correlation was found between cortical morphometric measures and clinical variables in the EBA group. Conclusions. SBM is a useful method for detecting human brain structural abnormalities in blindness. The results showed that these structural abnormalities in the visual cortex and visual-related areas outside the occipital cortex in the EBAs not only may be influenced by neurodevelopment, degeneration, plasticity, and so on but also involved the interaction of these factors after the early visual deprivation.

Funder

Shenzhen Fund for Guangdong Provincial High-level Clinical Key Specialties

Publisher

Hindawi Limited

Subject

Biochemistry (medical),Clinical Biochemistry,Genetics,Molecular Biology,General Medicine

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