Davis Ben, Christie John, Rorden Christopher
Department of Communication Sciences and Disorders, University of South Carolina, Columbia, South Carolina 29208, USA.
J Neurosci. 2009 Mar 11;29(10):3182-8. doi: 10.1523/JNEUROSCI.5793-08.2009.
Perceptual temporal order judgments require an individual to determine the relative timing of two spatially separate events. Here we reveal the brain regions involved with this task. We had participants observe perceptually identical visual stimuli while conducting two different tasks: discriminating temporal order or discriminating spatial properties. By contrasting the functional magnetic resonance imaging signals during these tasks, we were able to isolate regions specifically engaged by each task. Participants observed two briefly presented rectangles. In one task, participants were instructed to report which appeared first, and, in the other, they were requested to report which rectangle was squarer. A potential confound of this study is that the temporal order judgment (TOJ) task required processing of brief events (onsets), whereas the shape task did not require temporal selectivity. To address this, we conducted a second study in which both tasks required discriminating brief events concurrent with the object onsets. The stimuli were similar to the first experiment, except a gray line was briefly superimposed on each rectangle at onset. Participants reported either which rectangle appeared first (TOJ) or which rectangle had a slightly wider gray line (shape). The first study found that the TOJ task resulted in greater bilateral activation of the temporal parietal junction (TPJ). The second revealed TOJ activation in the TPJ of the left hemisphere. This suggests that TPJ activation increases when we need to temporally sequence information. This finding supports the notion that the TPJ may be a crucial component of the "when" pathway.
知觉性时间顺序判断要求个体确定两个空间上分离的事件的相对时间。在此,我们揭示了与该任务相关的脑区。我们让参与者在执行两项不同任务时观察在感知上相同的视觉刺激:辨别时间顺序或辨别空间属性。通过对比这些任务期间的功能磁共振成像信号,我们能够分离出每个任务所特有的脑区。参与者观察两个短暂呈现的矩形。在一项任务中,参与者被指示报告哪个先出现,而在另一项任务中,他们被要求报告哪个矩形更方。本研究的一个潜在混淆因素是,时间顺序判断(TOJ)任务需要处理短暂事件(起始点),而形状任务不需要时间选择性。为了解决这个问题,我们进行了第二项研究,其中两项任务都需要辨别与物体起始点同时发生的短暂事件。刺激与第一个实验相似,只是在每个矩形起始时短暂叠加一条灰色线条。参与者报告是哪个矩形先出现(TOJ),或者是哪个矩形的灰色线条稍宽(形状)。第一项研究发现,TOJ任务导致颞顶联合区(TPJ)出现更大的双侧激活。第二项研究揭示了左半球TPJ中的TOJ激活。这表明当我们需要对信息进行时间排序时,TPJ的激活会增加。这一发现支持了TPJ可能是“何时”通路关键组成部分的观点。