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通过对多个个体进行密集采样,研究发现激素环境在整个月经周期中影响全脑结构动力学。

Hormonal milieu influences whole-brain structural dynamics across the menstrual cycle using dense sampling in multiple individuals.

作者信息

Heller Carina, Güllmar Daniel, Colic Lejla, Pritschet Laura, Gell Martin, Javaheripour Nooshin, de la Cruz Feliberto, Rojczyk Philine, Koeppel Carina J, Larsen Bart, Ganjgahi Habib, Lange Frederik J, Buck Ann-Christine, Jesgarzewsky Tim L, Dahnke Robert, Kiehntopf Michael, Jacobs Emily G, Kikinis Zora, Walter Martin, Croy Ilona, Gaser Christian

机构信息

Department of Psychiatry and Psychotherapy, Jena University Hospital, Jena, Germany.

Masonic Institute for the Developing Brain, University of Minnesota, Minneapolis, MN, USA.

出版信息

Nat Neurosci. 2025 Sep 26. doi: 10.1038/s41593-025-02066-2.

Abstract

Gonadal hormone receptors are widely distributed across the brain, yet their influence on brain structure remains understudied. Here, using precision imaging, we examined four females, including one with endometriosis and one using oral contraceptives (OC), across a monthly period. Whole-brain analyses revealed spatiotemporal patterns of brain volume changes, with substantial variations across the monthly period. In typical cycles, spatiotemporal patterns were associated with serum progesterone levels, while in cycles with endometriosis and during OC intake, patterns were associated with serum estradiol levels. The volume changes were widely distributed rather than region-specific, suggesting a widespread but coordinated influence of hormonal fluctuations. These findings underscore the importance of considering diverse hormonal milieus beyond typical menstrual cycles in understanding structural brain dynamics and suggest that hormonal rhythms may drive widespread structural brain changes.

摘要

性腺激素受体广泛分布于大脑中,但其对脑结构的影响仍未得到充分研究。在此,我们使用精准成像技术,在一个月的时间里对四名女性进行了检查,其中包括一名患有子宫内膜异位症的女性和一名正在服用口服避孕药(OC)的女性。全脑分析揭示了脑容量变化的时空模式,在一个月的周期中存在显著差异。在典型周期中,时空模式与血清孕酮水平相关,而在患有子宫内膜异位症的周期以及服用口服避孕药期间,模式与血清雌二醇水平相关。体积变化分布广泛而非特定于某个区域,这表明激素波动具有广泛但协调的影响。这些发现强调了在理解脑结构动态时考虑典型月经周期之外的多种激素环境的重要性,并表明激素节律可能驱动广泛的脑结构变化。

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