Hamilton Antonia F de C, Wolpert Daniel M, Frith Uta, Grafton Scott T
Department of Psychological and Brain Sciences, Dartmouth College, 6162 Moore Hall, Dartmouth College, Hanover, NH 03755, USA.
Neuroimage. 2006 Jan 15;29(2):524-35. doi: 10.1016/j.neuroimage.2005.07.037. Epub 2005 Aug 22.
Activation of premotor cortex during the observation and imitation of human actions is now increasingly accepted, but it remains unclear how the CNS is able to resolve potential conflicts between the observation of another person's action and the ongoing control of one's own action. Recent data suggest that this overlap leads to a systematic bias, where lifting a box influences participant's perceptual judgments of the weight of a box lifted by another person. We now investigate the neural basis of this bias effect using fMRI. Seventeen participants performed a perceptual weight judgment task or two control conditions while lifting a light box, a heavy box or no box during scanning. Brain regions related to perceptual bias were localized by correlating individual differences in bias with BOLD signal. Five regions were found to show correlations with psychophysical bias: left inferior frontal gyrus, left central sulcus, left extrastriate body area, left lingual gyrus and right intraparietal sulcus. The cluster in primary motor cortex was also activated by box lifting, and the cluster in extrastriate body area by the observation of hand actions and the weight judgment task. We suggest that these brain areas are part of a network where motor processing modulates perceptual judgment of observed human actions, and thus visual and motor processes cannot be thought of as two distinct systems, but instead interact at many levels.
目前,运动前区皮质在观察和模仿人类动作时的激活现象越来越被人们所接受,但中枢神经系统如何解决观察他人动作与自身动作持续控制之间的潜在冲突仍不清楚。最近的数据表明,这种重叠会导致一种系统性偏差,即举起一个箱子会影响参与者对他人举起箱子重量的感知判断。我们现在使用功能磁共振成像(fMRI)来研究这种偏差效应的神经基础。17名参与者在扫描过程中举起轻箱子、重箱子或不举箱子时,执行了一项感知重量判断任务或两种对照条件。通过将偏差的个体差异与血氧水平依赖(BOLD)信号相关联,确定了与感知偏差相关的脑区。发现有五个区域与心理物理学偏差存在相关性:左侧额下回、左侧中央沟、左侧纹外体区、左侧舌回和右侧顶内沟。初级运动皮质中的簇在举箱子时也被激活,纹外体区中的簇在观察手部动作和重量判断任务时被激活。我们认为,这些脑区是一个网络的一部分,在这个网络中,运动处理调节对观察到的人类动作的感知判断,因此视觉和运动过程不能被看作是两个不同的系统,而是在多个层面上相互作用。