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Elevated nucleus accumbens structural connectivity associated with proneness to hypomania: a reward hypersensitivity perspective

机译:升高的核心抵抗与丑陋症状相关的结构连通性:奖励超敏反景

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摘要

The Reward Hypersensitivity Model of bipolar disorder argues that hypersensitivity to reward-relevant cues characterizes risk for hypo/mania. This hypersensitivity leads to increased goal-directed motivation during reward-relevant life events that, in the extreme, is reflected in hypo/manic symptoms. In line with this perspective, individuals with bipolar disorder display elevated activation in a cortico-striatal reward circuit including the nucleus accumbens (NAcc) and medial orbitofrontal cortex (mOFC). To date, however, research on reward-related neural circuitry underlying bipolar symptoms focuses on syndromal bipolar disorder (bipolar I, bipolar II), and typically examines neural regions in isolation of each other. Accordingly, this study examines the relationship between subsyndromal hypo/mania proneness and structural connectivity between the NAcc and both the mOFC and amygdala in a medication-free sample. Fifty-four community participants completed diffusion-weighted imaging and a self-report measure of bipolar risk (hypo/mania proneness). As predicted, elevated structural connectivity between the NAcc and both the mOFC and amygdala were associated with elevated hypo/mania proneness. This relationship was specific to NAcc-centered reward connectivity, as there was no relationship between hypo/mania proneness and either whole-brain or cortico-amygdala connectivity. Results suggest that reward-relevant tractography from cortical (mOFC) and subcortical (amygdala) regions amplify NAcc-centered reward processing in bipolar risk.
机译:双相障碍的奖励超敏感模型认为,对奖励相关提示的过敏率特征是Hypo / Mania的风险。这种超敏反应导致奖励相关的生活事件期间增加了目标导向的动机,即在极端的症状中反映在厌氧症状中。根据这种观点,具有双极性障碍的个体显示在包括核心腺(NACC)和内侧胰腺癌皮质(MOFC)的皮质段奖励电路中升高激活。然而,迄今为止,关于奖励相关的神经电路潜在的双极症状的研究侧重于综合征双相障碍(双极I,双极II),并且通常彼此隔离检查神经区域。因此,本研究探讨了NACC和MOFC和Amygdala之间的Subsyndromal Hypo / Mania耳垂和结构连通性之间的关系。五十四个社区参与者完成了扩散加权成像和双极风险的自我报告衡量(Hypo / MANIA尺寸)。如预测,NACC和MOFC和Amygdala之间的升高的结构连接与升高的Hypo / mania尺寸相关。这种关系是特定于Nacc中心的奖励连通性,因为Hypo / Mania尺寸和全脑或皮质型amygdala连通性没有关系。结果表明,从皮质(MOFC)和皮质波动(Amygdala)区域的奖励相关牵引区域扩增了双极风险的Nacc中心奖励加工。

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