Department of Experimental Psychology, Ghent, Belgium.
J Cogn Neurosci. 2011 Jun;23(6):1395-404. doi: 10.1162/jocn.2010.21525. Epub 2010 Jun 3.
A growing number of studies show that visual mental imagery recruits the same brain areas as visual perception. Although the necessity of hV5/MT+ for motion perception has been revealed by means of TMS, its relevance for motion imagery remains unclear. We induced a direction-selective adaptation in hV5/MT+ by means of an MAE while subjects performed a mental rotation task that elicits imagined motion. We concurrently measured behavioral performance and neural activity with fMRI, enabling us to directly assess the effect of a perturbation of hV5/MT+ on other cortical areas involved in the mental rotation task. The activity in hV5/MT+ increased as more mental rotation was required, and the perturbation of hV5/MT+ affected behavioral performance as well as the neural activity in this area. Moreover, several regions in the posterior parietal cortex were also affected by this perturbation. Our results show that hV5/MT+ is required for imagined visual motion and engages in an interaction with parietal cortex during this cognitive process.
越来越多的研究表明,视觉心理意象会激活与视觉感知相同的脑区。虽然 TMS 已经揭示了 hV5/MT+ 对于运动感知的必要性,但它对于运动意象的相关性仍不清楚。我们通过 MAE 在 hV5/MT+ 中诱导了一个方向选择性适应,同时让被试进行一个引发想象运动的心理旋转任务。我们通过 fMRI 同时测量了行为表现和神经活动,从而能够直接评估 hV5/MT+ 的干扰对心理旋转任务中涉及的其他皮质区域的影响。随着心理旋转任务所需的旋转量增加,hV5/MT+ 的活动增加,并且这种干扰会影响行为表现以及该区域的神经活动。此外,后顶叶皮层的几个区域也受到这种干扰的影响。我们的结果表明,hV5/MT+ 是想象视觉运动所必需的,并且在这个认知过程中与顶叶皮层相互作用。