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Effects of testosterone administration on threat and escape anticipation in the orbitofrontal cortex

机译:睾酮给药对眶内皮质威胁和逃生预期的影响

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Recent evidence suggests that the steroid hormone testosterone can decrease the functional coupling between orbitofrontal cortex (OFC) and amygdala. Theoretically this decoupling has been linked to a testosterone-driven increase of goal-directed behaviour in case of threat, but this has never been studied directly. Therefore, we placed twenty-two women in dynamically changing situations of escapable and inescapable threat after a within-subject placebo controlled testosterone administration. Using functional magnetic resonance imaging (fMRI) we provide evidence that testosterone activates the left lateral OFC (LOFC) in preparation of active goal-directed escape and decouples this OFC area from a subcortical threat system including the central-medial amygdala, hypothalamus and periaqueductal gray. This LOFC decoupling was specific to threatening situations, a point that was further emphasized by an absence of such decoupling in a second experiment focused on resting-state connectivity. These results not only confirm that testosterone administration decouples the LOFC from the subcortical threat system, but also show that this is specifically the case in response to acute threat, and ultimately leads to an increase in LOFC activity when the participant prepares a goal-directed action to escape. Together these results for the first time provide a detailed understanding of functional brain alterations induced by testosterone under threat conditions, and corroborate and extend the view that testosterone prepares the brain for goal-directed action in case of threat.
机译:最近的证据表明,类固醇激素睾酮可以降低眶内皮质(OFC)和Amygdala之间的功能偶联。理论上,这种去耦与威胁的睾丸激素驱动的行为的增加有关,但这从未直接研究过。因此,我们在受试者内安慰剂控制睾酮管理后动态改变了22名女性在动态改变逃离和不可避免的威胁的情况。使用功能磁共振成像(FMRI),我们提供睾酮激活左侧侧向OFC(LOFC)的证据,以准备从包括中枢神经杏仁型,下丘脑和Periaqueycuctal灰色的皮塔威胁系统。该LOFC去耦是特定于威胁情况的特定于威胁情况,通过在休息状态连接的第二个实验中没有这种解耦进一步强调。这些结果不仅证实睾丸激素给药从属威胁系统中将LOFC脱钩,而且表明这是响应急性威胁的情况,最终导致参与者准备目标导向的行动时的LOFC活动增加逃离。这些结果首次在一起,详细了解睾酮条件下的睾酮诱导的功能性脑改变,并证实并延长睾丸激素在威胁下为目标定向行动准备大脑的视野。

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