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Highways of the emotional intellect: white matter microstructural correlates of an ability-based measure of emotional intelligence

机译:情感智力的高速公路:白质微观结构相关的情绪智力的能力

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摘要

Individuals differ in their ability to understand emotional information and apply that understanding to make decisions and solve problems effectively - a construct known as Emotional Intelligence (EI). While considerable evidence supports the importance of EI in social and occupational functioning, the neural underpinnings of this capacity are relatively unexplored. We used Tract-Based Spatial Statistics (TBSS) to determine the white matter correlates of EI as measured by the ability-based Mayer-Salovey-Caruso Emotional Intelligence Test (MSCEIT). Participants included 32 healthy adults (16 men; 16 women), aged 18-45 years. White matter integrity in key tracts was positively correlated with the Strategic Area branches of the MSCEIT (Understanding Emotions and Managing Emotions), but not the Experiential branches (Perceiving and Facilitating Emotions). Specifically, the Understanding Emotions branch was associated with greater fractional anisotropy (FA) within somatosensory and sensory-motor fiber bundles, particularly those of the left superior longitudinal fasciculus and corticospinal tract. Managing Emotions was associated with greater FA within frontal-affective association tracts including the anterior forceps and right uncinate fasciculus, along with frontal-parietal cingulum and interhemispheric corpus callosum tracts. These findings suggest that specific components of EI are directly related to the structural microarchitecture of major axonal pathways.
机译:个人在理解情绪信息的能力方面有所不同,并适用于有效地制定决策和解决问题 - 一种称为情商(EI)的构建。虽然相当大的证据支持EI在社会和职业运作方面的重要性,但这种能力的神经内衬相对未探索。我们使用基于沟的空间统计(TBS)来确定EI的白质相关,以基于能力的Mayer-Salovey-Caruso情报测试(MSCEIT)测量。参与者包括32名健康成年人(16名男子; 16名女性),年龄在18-45岁。密钥束中的白质诚信与墨西哥特人的战略区分支呈正相关(理解情绪和管理情绪),但不是经验分支(感知和促进情绪)。具体而言,了解情绪分支与躯体感觉血管和感觉 - 电动机纤维束内的更大的分数各向异性(FA)相关,特别是左上优异的纵向坐毛和皮质脊髓束。管理情绪与额外的FA在额外镊子和右侧突出的束型,以及额外曲线和卵闭胼callosumars中的额外FA相关联。这些发现表明EI的特定组分与主要轴突途径的结构微体系结构直接相关。

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