Centre for Neurolinguistics and Psycholinguistics (CNPL), Faculty of Psychology, Vita-Salute San Raffaele University, Via Olgettina, 58 - 20132, Milan, Italy.
Faculty of Psychology, Vita-Salute San Raffaele University, Milan, Italy.
Brain Struct Funct. 2022 Jan;227(1):11-21. doi: 10.1007/s00429-021-02376-8. Epub 2021 Sep 16.
Computational morphometry of magnetic resonance images represents a powerful tool for studying macroscopic differences in human brains. In the present study (N participants = 829), we combined different techniques and measures of brain morphology to investigate one of the most compelling topics in neuroscience: sexual dimorphism in human brain structure. When accounting for overall larger male brains, results showed limited sex differences in gray matter volume (GMV) and surface area. On the other hand, we found larger differences in cortical thickness, favoring both males and females, arguably as a result of region-specific differences. We also observed higher values of fractal dimension, a measure of cortical complexity, for males versus females across the four lobes. In addition, we applied source-based morphometry, an alternative method for measuring GMV based on the independent component analysis. Analyses on independent components revealed higher GMV in fronto-parietal regions, thalamus and caudate nucleus for females, and in cerebellar- temporal cortices and putamen for males, a pattern that is largely consistent with previous findings.
磁共振图像的计算形态学是研究人类大脑宏观差异的有力工具。在本研究中(N 名参与者=829 人),我们结合了不同的技术和大脑形态学测量方法,研究了神经科学中最引人注目的话题之一:人类大脑结构的性别二态性。在考虑到男性大脑总体较大的情况下,结果显示灰质体积(GMV)和表面积的性别差异有限。另一方面,我们发现皮质厚度的差异更大,男性和女性都更倾向于此,这可能是由于区域特异性差异所致。我们还观察到,在四个脑叶中,男性的分形维数(衡量皮质复杂性的指标)值更高。此外,我们应用了基于源的形态测量学,这是一种基于独立成分分析测量 GMV 的替代方法。对独立成分的分析显示,女性的额顶叶区域、丘脑和尾状核的 GMV 较高,而男性的小脑-颞叶皮质和壳核的 GMV 较高,这种模式与之前的发现基本一致。