Bueti Domenica, van Dongen Eelco V, Walsh Vincent
Institute of Cognitive Neuroscience, University College London, London, United Kingdom.
PLoS One. 2008 Jun 25;3(6):e2481. doi: 10.1371/journal.pone.0002481.
Recently, there has been upsurge of interest in the neural mechanisms of time perception. A central question is whether the representation of time is distributed over brain regions as a function of stimulus modality, task and length of the duration used or whether it is centralized in a single specific and supramodal network. The answers seem to be converging on the former, and many areas not primarily considered as temporal processing areas remain to be investigated in the temporal domain. Here we asked whether the superior temporal gyrus, an auditory modality specific area, is involved in processing of auditory timing. Repetitive transcranial magnetic stimulation was applied over left and right superior temporal gyri while participants performed either a temporal or a frequency discrimination task of single tones. A significant decrease in performance accuracy was observed after stimulation of the right superior temporal gyrus, in addition to an increase in response uncertainty as measured by the Just Noticeable Difference. The results are specific to auditory temporal processing and performance on the frequency task was not affected. Our results further support the idea of distributed temporal processing and speak in favor of the existence of modality specific temporal regions in the human brain.
最近,人们对时间感知的神经机制兴趣大增。一个核心问题是,时间表征是否根据刺激模态、任务以及所使用时长的长度分布于多个脑区,还是集中于单个特定的超模态网络。答案似乎趋向于前者,并且许多原本未被主要视为时间处理区域的脑区仍有待在时间领域进行研究。在此,我们探究了颞上回(一个听觉模态特异性区域)是否参与听觉时间处理。在参与者执行单音的时间或频率辨别任务时,对左右颞上回施加重复经颅磁刺激。刺激右侧颞上回后,观察到表现准确性显著下降,此外,用最小可觉差衡量的反应不确定性增加。这些结果特定于听觉时间处理,频率任务的表现未受影响。我们的结果进一步支持了分布式时间处理的观点,并支持人类大脑中存在模态特异性时间区域的观点。