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杏仁核亚核团对暴力行为的反应所呈现的连通性揭示了非法医样本中个体在精神病态特征上的差异所产生的独特影响。

Amygdala subnuclei connectivity in response to violence reveals unique influences of individual differences in psychopathic traits in a nonforensic sample.

作者信息

Yoder Keith J, Porges Eric C, Decety Jean

机构信息

Department of Psychology, University of Chicago, Chicago, Illinois.

出版信息

Hum Brain Mapp. 2015 Apr;36(4):1417-28. doi: 10.1002/hbm.22712. Epub 2014 Dec 30.

Abstract

Atypical amygdala function and connectivity have reliably been associated with psychopathy. However, the amygdala is not a unitary structure. To examine how psychopathic traits in a nonforensic sample are linked to amygdala response to violence, this study used probabilistic tractography to classify amygdala subnuclei based on anatomical projections to and from amygdala subnuclei in a group of 43 male participants. The segmentation identified the basolateral complex (BLA; lateral, basal, and accessory basal subnuclei) and the central subnucleus (CE), which were used as seeds in a functional connectivity analysis to identify differences in neuronal coupling specific to observed violence. While a full amygdala seed showed significant connectivity only to right middle occipital gyrus, subnuclei seeds revealed unique connectivity patterns. BLA showed enhanced coupling with anterior cingulate and prefrontal regions, while CE showed increased connectivity with the brainstem, but reduced connectivity with superior parietal and precentral gyrus. Further, psychopathic personality factors were related to specific patterns of connectivity. Fearless Dominance scores on the psychopathic personality inventory predicted increased coupling between the BLA seed and sensory integration cortices, and increased connectivity between the CE seed and posterior insula. Conversely, Self-Centered Impulsivity scores were negatively correlated with coupling between BLA and ventrolateral prefrontal cortex, and Coldheartedness scores predicted increased functional connectivity between BLA and dorsal anterior cingulate cortex. Taken together, these findings demonstrate how subnuclei segmentations reveal important functional connectivity differences that are otherwise inaccessible. Such an approach yields a better understanding of amygdala dysfunction in psychopathy.

摘要

非典型杏仁核功能及连接性一直被可靠地认为与精神病态有关。然而,杏仁核并非一个单一结构。为了研究非法医样本中的精神病态特质如何与杏仁核对暴力的反应相联系,本研究使用概率性纤维束成像技术,根据43名男性参与者杏仁核亚核的解剖投射来对杏仁核亚核进行分类。分割识别出基底外侧复合体(BLA;外侧、基底和副基底亚核)和中央亚核(CE),在功能连接分析中将其用作种子,以识别特定于所观察到的暴力的神经元耦合差异。虽然完整的杏仁核种子仅与右侧枕中回显示出显著连接,但亚核种子揭示了独特的连接模式。BLA与前扣带回和前额叶区域的耦合增强,而CE与脑干的连接增加,但与顶上叶和中央前回的连接减少。此外,精神病态人格因素与特定的连接模式有关。精神病态人格量表上的无畏支配得分预测BLA种子与感觉整合皮层之间的耦合增加,以及CE种子与后岛叶之间的连接增加。相反,以自我为中心的冲动得分与BLA和腹外侧前额叶皮层之间的耦合呈负相关,冷酷得分预测BLA与背侧前扣带回皮层之间的功能连接增加。综上所述,这些发现表明亚核分割如何揭示出原本无法获得的重要功能连接差异。这种方法有助于更好地理解精神病态中的杏仁核功能障碍。

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