Department of Psychiatry, Ruhr-University Bochum, Germany.
Cortex. 2011 May;47(5):569-74. doi: 10.1016/j.cortex.2010.04.004. Epub 2010 Apr 21.
Humour involves the ability to detect incongruous ideas violating social rules and norms. Accordingly, humour requires a complex array of cognitive skills for which intact frontal lobe functioning is critical. Here, we sought to examine the association of facial expression during an emotion inducing experiment with frontal cortex morphology in healthy subjects. Thirty-one healthy male subjects (mean age: 30.8±8.9 years; all right-handers) watching a humorous movie ("Mr. Bean") were investigated. Markers fixed at certain points of the face emitting high-frequency ultrasonic signals allowed direct measurement of facial movements with high spatial-temporal resolution. Magnetic resonance images of the frontal cortex were obtained with a 1.5-T Magnetom using a coronar T2- and protondensity-weighted Dual-Echo-Sequence and a 3D-magnetization-prepared rapid gradient echo (MPRAGE) sequence. Volumetric analysis was performed using BRAINS. Frontal cortex volume was partly associated with slower speed of "laughing" movements of the eyes ("genuine" or Duchenne smile). Specifically, grey matter volume was associated with longer emotional reaction time ipsilaterally, even when controlled for age and daily alcohol intake. These results lend support to the hypothesis that superior cognitive evaluation of humorous stimuli - mediated by larger prefrontal grey and white matter volume - leads to a measurable reduction of speed of emotional expressivity in normal adults.
幽默涉及到识别违反社会规则和规范的不协调想法的能力。因此,幽默需要一系列复杂的认知技能,而额叶的完整功能对于这些技能至关重要。在这里,我们试图研究在健康受试者中,情绪诱发实验期间的面部表情与额叶皮层形态之间的关联。 31 名健康男性受试者(平均年龄:30.8±8.9 岁;均为右利手)观看了一部幽默电影(《憨豆先生》)。固定在面部某些点的标记会发出高频超声波信号,从而可以用高时空分辨率直接测量面部运动。使用 1.5-T Magnetom 获得额叶皮质的磁共振图像,使用冠状 T2 和质子密度加权双回波序列和 3D 磁化准备快速梯度回波(MPRAGE)序列。使用 BRAINS 进行容积分析。额叶皮质体积与眼睛“笑”动速度较慢(“真正”或杜兴微笑)部分相关。具体来说,灰质体积与同侧情绪反应时间较长有关,即使在控制年龄和日常饮酒量后也是如此。这些结果支持了这样一种假设,即对幽默刺激的高级认知评估——通过更大的前额叶灰质和白质体积来介导——会导致正常成年人情绪表达速度的可测量降低。