Pascucci David, Megna Nicola, Panichi Michela, Baldassi Stefano
Department of Psychology, University of Florence, Florence, Italy.
J Vis. 2011 May 11;11(6):7. doi: 10.1167/11.6.7.
A non-informative sound is known to improve contrast detection thresholds for a synchronous visual target (M. Lippert, N. K. Logothetis, & C. Kayser, 2007). We investigated the spatio-temporal characteristics of the mechanisms underlying this crossmodal effect by using a classification image paradigm specifically suited to investigate perceptual templates across both space and time (P. Neri & D. J. Heeger, 2002). A bright bar was embedded in 2D (space-time) dynamic noise and observers were asked to detect its presence in both unimodal (only visual) and bimodal (audio-visual) conditions. Classification image analysis was performed and the 1st and 2nd order kernels were derived. Our results show that the cross-modal facilitation of detection consists in a reduction of activity of the early mechanisms elicited by the onset of the stimulation and not directly involved in the identification of the target. In fact, the sound sharpens the 2nd order kernels (involved in target detection) by suppressing the activation preceding the target, whereas it does not influence the 1st order kernels. These data suggest that the sound affects some non-linear process involved with the detection of a visual stimulus by, decreasing the activity of contrast energy filters temporally uncorrelated with the target, hence reducing temporal uncertainty.
已知非信息性声音可提高对同步视觉目标的对比度检测阈值(M. Lippert、N. K. Logothetis和C. Kayser,2007年)。我们通过使用一种特别适合于研究跨空间和时间的感知模板的分类图像范式,研究了这种跨模态效应背后机制的时空特征(P. Neri和D. J. Heeger,2002年)。一个明亮的条形被嵌入到二维(时空)动态噪声中,要求观察者在单模态(仅视觉)和双模态(视听)条件下检测其存在。进行了分类图像分析并导出了一阶和二阶核。我们的结果表明,检测的跨模态促进在于减少由刺激开始引发的早期机制的活动,且这些机制不直接参与目标识别。事实上,声音通过抑制目标之前的激活来锐化二阶核(参与目标检测),而不影响一阶核。这些数据表明,声音通过降低与目标在时间上不相关的对比度能量滤波器的活动,从而减少时间不确定性,影响了与视觉刺激检测相关的一些非线性过程。