Task difficulty in a simultaneous face matching task modulates activity in face fusiform area

A.L.W. Bokde , W. Dong , C. Born , G. Leinsinger , T. Meindl , S.J. Teipel , M. Reiser , H. Hampel
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引用次数: 40

Abstract

The level of difficulty of a task can alter the neural network that activates for performance of the task. Previous studies have shown increased activation with task difficulty in the frontal lobes while the effects in the extrastriate visual areas have been unclear. We hypothesized that the face fusiform area (FFA), an area specialized for face processing, would increase activation as task difficulty increased in a face matching task. The difficulty level was increased by degrading the quality of the images. The degradation levels were 10%, 20%, 40% and 60%. Based on the correct response rate, the data were divided into a baseline level (composed of non-degraded and 10% degraded images) and a difficult level (composed of the 20%, 40% and 60% degraded images). Brain activation was measured using functional magnetic resonance imaging. The baseline face matching task activated a wide network of regions that included bilaterally the occipital, temporal and parietal lobes and the right frontal lobe. A novel behavioral finding was that task difficulty did not linearly increase with image degradation. The novel brain imaging finding was that the FFA is modulated by task difficulty and performance in the task was linearly correlated to activation in FFA. In addition, we found that activation in the dorsolateral prefrontal cortex (DLPFC) had increased activation as task difficulty increased. When adding the response time as a covariate, the differences in the DLPFC did not remain statistically significant. Increased task difficulty also led to a decrease in activation of visual areas in the extrastriate cortex. Task difficulty increased activation in the FFA to enhance the face processing and suppressed activation in visual extrastriate areas that processed low level properties of the stimuli. Task difficulty led to enhanced response in the FFA and suppressed response in other visual areas.

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同时人脸匹配任务的任务难度调节了人脸梭状回区的活动
任务的难易程度可以改变为完成任务而激活的神经网络。先前的研究表明,前额叶的活动随着任务难度的增加而增加,而对外皮层视觉区域的影响尚不清楚。我们假设在人脸匹配任务中,人脸梭状回区(FFA)的激活会随着任务难度的增加而增加。通过降低图像质量来提高难度等级。降解程度分别为10%、20%、40%和60%。根据正确的响应率,将数据分为基线级别(由未退化和10%退化的图像组成)和困难级别(由20%、40%和60%退化的图像组成)。大脑活动用功能性磁共振成像测量。基线面部匹配任务激活了广泛的区域网络,包括双侧枕叶、颞叶、顶叶和右额叶。一个新的行为学发现是,任务难度并没有随着图像的退化而线性增加。新的脑成像发现FFA受任务难度的调节,任务中的表现与FFA的激活呈线性相关。此外,我们发现背外侧前额叶皮层(DLPFC)的激活随着任务难度的增加而增加。当增加响应时间作为协变量时,DLPFC的差异没有统计学意义。任务难度的增加也会导致纹状体外皮层视觉区域的激活减少。任务难度增加FFA的激活以增强面部处理,抑制处理低水平刺激特性的视觉外皮层的激活。任务困难导致FFA区的反应增强,其他视觉区域的反应抑制。
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