Luders E, Narr K L, Thompson P M, Rex D E, Woods R P, Deluca H, Jancke L, Toga A W
Laboratory of Neuro Imaging, Department of Neurology, UCLA Geffen School of Medicine, Los Angeles, California 90095-1769, USA.
Hum Brain Mapp. 2006 Apr;27(4):314-24. doi: 10.1002/hbm.20187.
Using magnetic resonance imaging and well-validated computational cortical pattern matching methods in a large and well-matched sample of healthy subjects (n = 60), we analyzed the regional specificity of gender-related cortical thickness differences across the lateral and medial cortices at submillimeter resolution. To establish the influences of brain size correction on gender effects, comparisons were performed with and without applying affine transformations to scale each image volume to a template. We revealed significantly greater cortical thickness in women compared to men, after correcting for individual differences in brain size, while no significant regional thickness increases were observed in males. The pattern and direction of the results were similar without brain size correction, although effects were less pronounced and a small cortical region in the lateral temporal lobes showed greater thickness in males. Our gender-specific findings support a dimorphic organization in male and female brains that appears to involve the architecture of the cortical mantle and that manifests as increased thickness in female brains. This sexual dimorphism favoring women, even without correcting for brain size, may have functional significance and possibly account for gender-specific abilities and/or behavioral differences between sexes.
在一个由60名健康受试者组成的大型且匹配良好的样本中,我们使用磁共振成像和经过充分验证的计算性皮质模式匹配方法,以亚毫米分辨率分析了外侧和内侧皮质中与性别相关的皮质厚度差异的区域特异性。为了确定脑容量校正对性别效应的影响,我们分别在对每个图像体积进行仿射变换以将其缩放到模板前后进行了比较。在校正了个体脑容量差异后,我们发现女性的皮质厚度显著大于男性,而男性未观察到明显的区域厚度增加。在未进行脑容量校正时,结果的模式和方向相似,尽管效应不太明显,并且外侧颞叶的一个小皮质区域显示男性的厚度更大。我们针对性别的研究结果支持了男性和女性大脑中的双态组织,这种组织似乎涉及皮质表层的结构,并且表现为女性大脑中厚度增加。这种即使不校正脑容量也有利于女性的性别二态性可能具有功能意义,并可能解释了两性之间特定性别的能力和/或行为差异。