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Individual differences in the effect of menstrual cycle on basal ganglia inhibitory control

机译:月经周期对基底节抑制作用的个体差异

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摘要

Basal ganglia (BG) are involved in inhibitory control (IC) and known to change in structure and activation along the menstrual cycle. Therefore, we investigated BG activation and connectivity patterns related to IC during different cycle phases. Thirty-six naturally cycling women were scanned three times performing a Stop Signal Task and hormonal levels analysed from saliva samples. We found an impaired Stop signal reaction time (SSRT) during pre-ovulatory compared to menses the higher the baseline IC of women. Blood oxygen level dependent (BOLD)-response in bilateral putamen significantly decreased during the luteal phase. Connectivity strength from the left putamen displayed an interactive effect of cycle and IC. During pre-ovulatory the connectivity with anterior cingulate cortex and left inferior parietal lobe was significantly stronger the higher the IC, and during luteal with left supplementary motor area. Right putamen’s activation and left hemisphere’s connectivity predicted the SSRT across participants. Therefore, we propose a compensatory mechanism for the hormonal changes across the menstrual cycle based on a lateralized pattern.
机译:基底神经节(BG)参与抑制性控制(IC),并已知其会沿月经周期改变结构和激活。因此,我们研究了在不同周期阶段与IC相关的BG激活和连接模式。对36名自然骑自行车的妇女进行了3次扫描,执行了停止信号任务,并从唾液样本中分析了荷尔蒙水平。我们发现与月经相比,排卵前的停止信号反应时间(SSRT)受损,女性的基线IC越高。在黄体期,双侧壳核的血氧水平依赖性(BOLD)反应显着降低。左侧壳核的连接强度显示出周期和IC的相互作用。排卵前,IC越高,与前扣带回皮层和左下顶叶的连通性就越强,而在黄体带左辅助运动区。右壳核的激活和左半球的连通性预测了参与者的SSRT。因此,我们提出了一种基于横向模式的月经周期内激素变化的补偿机制。

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