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沿月经周期的皮质下结构变化:超越海马体。

Subcortical structural changes along the menstrual cycle: beyond the hippocampus.

机构信息

Department of Psychology & Centre for Cognitive Neuroscience, University of Salzburg, Salzburg, Austria.

出版信息

Sci Rep. 2018 Oct 30;8(1):16042. doi: 10.1038/s41598-018-34247-4.

Abstract

Animal studies have robustly shown hormone related changes in spine density in various brain areas, specifically the hippocampus. Literature on hormone dependent gray matter volume changes in humans is however less consistent. While various areas have been reported to change along the menstrual cycle in women, many do not survive multiple-comparisons correction and only hippocampal changes have been replicated. We attribute these problems to small sample sizes and inconsistent definitions of menstrual cycle phases. In the present study a large sample of 55 women was scanned three times along their menstrual cycle in concisely defined time windows of hormonal changes. Accordingly this is the first study using a large enough sample size to assess menstrual cycle dependent changes in human brain structure with sufficient power. Results confirm a significant estradiol-dependent pre-ovulatory increase in gray matter volumes of the bilateral hippocampus, but also show a significant, progesterone-dependent increase in gray matter volumes of the right basal ganglia after ovulation. No other areas were affect by hormonal changes along the menstrual cycle. These hormone driven menstrual cycle changes in human brain structure are small, but may be the underlying cause of menstrual cycle dependent changes in cognition and emotion.

摘要

动物研究有力地表明,各种大脑区域(特别是海马体)的骨密度与激素有关。然而,关于人类激素依赖性灰质体积变化的文献则不太一致。虽然有研究报告称女性的各种大脑区域会随着月经周期而变化,但其中许多变化在经过多次比较校正后就不再存在,而且只有海马体的变化得到了复制。我们认为这些问题与样本量小和月经周期阶段的定义不一致有关。在本研究中,我们对 55 名女性进行了扫描,她们在月经周期的三个阶段,在荷尔蒙变化的明确界定的时间窗口中被扫描了三次。因此,这是第一项使用足够大的样本量评估人类大脑结构与月经周期相关变化的研究,具有足够的功效。结果证实,双侧海马体的灰质体积在雌激素依赖性的排卵前显著增加,但也显示出孕激素依赖性的排卵后右侧基底神经节的灰质体积显著增加。其他区域不受月经周期中荷尔蒙变化的影响。这些由荷尔蒙驱动的人类大脑结构的月经周期变化很小,但可能是认知和情绪与月经周期相关变化的潜在原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8b8/6207699/a63c0f73523e/41598_2018_34247_Fig1_HTML.jpg

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