INSERM, Lyon Neuroscience Research Center, Brain Dynamics and Cognition Team, France.
Brain Res. 2011 Jun 17;1396:35-44. doi: 10.1016/j.brainres.2011.04.016. Epub 2011 Apr 15.
Whether or not multisensory interactions can improve detection thresholds, and thus widen the range of perceptible events is a long-standing debate. Here we revisit this question, by testing the influence of auditory stimuli on visual detection threshold, in subjects exhibiting a wide range of visual-only performance. Above the perceptual threshold, crossmodal interactions have indeed been reported to depend on the subject's performance when the modalities are presented in isolation. We thus tested normal-seeing subjects and short-sighted subjects wearing their usual glasses. We used a paradigm limiting potential shortcomings of previous studies: we chose a criterion-free threshold measurement procedure and precluded exogenous cueing effects by systematically presenting a visual cue whenever a visual target (a faint Gabor patch) might occur. Using this carefully controlled procedure, we found that concurrent sounds only improved visual detection thresholds in the sub-group of subjects exhibiting the poorest performance in the visual-only conditions. In these subjects, for oblique orientations of the visual stimuli (but not for vertical or horizontal targets), the auditory improvement was still present when visual detection was already helped with flanking visual stimuli generating a collinear facilitation effect. These findings highlight that crossmodal interactions are most efficient to improve perceptual performance when an isolated modality is deficient.
多感觉交互是否能提高检测阈值,从而拓宽可感知事件的范围,这是一个长期存在的争论。在这里,我们通过测试听觉刺激对视觉检测阈值的影响,重新探讨了这个问题,实验对象的视觉表现范围很广。在感知阈值以上,已有研究报告称,当模态单独呈现时,跨模态相互作用确实取决于主体的表现。因此,我们测试了正常视力的受试者和戴通常眼镜的近视受试者。我们使用了一种限制先前研究潜在缺陷的范式:我们选择了一种无标准的阈值测量程序,并通过系统地呈现视觉提示,排除了外源性提示效应,每当可能出现视觉目标(一个微弱的 Gabor 补丁)时都会呈现视觉提示。使用这种精心控制的程序,我们发现,在仅视觉条件下表现最差的受试者亚组中,同时出现的声音仅能提高视觉检测阈值。在这些受试者中,对于视觉刺激的倾斜方向(而不是垂直或水平目标),当用产生共线促进效应的侧翼视觉刺激已经帮助视觉检测时,听觉改善仍然存在。这些发现强调了,当一种孤立的模态存在缺陷时,跨模态相互作用最有效地提高了感知表现。