Eck Judith, Kaas Amanda L, Mulders Joost L, Hausfeld Lars, Kourtzi Zoe, Goebel Rainer
Department of Cognitive Neuroscience, Maastricht University, The Netherlands.
Brain Innovation B.V., Maastricht, The Netherlands.
Cereb Cortex. 2016 Jan;26(1):384-401. doi: 10.1093/cercor/bhu294. Epub 2014 Dec 9.
Perceived roughness is associated with a variety of physical factors and multiple peripheral afferent types. The current study investigated whether this complexity of the mapping between physical and perceptual space is reflected at the cortical level. In an integrative psychophysical and imaging approach, we used dot pattern stimuli for which previous studies reported a simple linear relationship of interdot spacing and perceived spatial density and a more complex function of perceived roughness. Thus, by using both a roughness and a spatial estimation task, the physical and perceived stimulus characteristics could be dissociated, with the spatial density task controlling for the processing of low-level sensory aspects. Multivoxel pattern analysis was used to investigate which brain regions hold information indicative of the level of the perceived texture characteristics. While information about differences in perceived roughness was primarily available in higher-order cortices, that is, the operculo-insular cortex and a ventral visual cortex region, information about perceived spatial density could already be derived from early somatosensory and visual regions. This result indicates that cortical processing reflects the different complexities of the evaluated haptic texture dimensions. Furthermore, this study is to our knowledge the first to show a contribution of the visual cortex to tactile roughness perception.
感知粗糙度与多种物理因素和多种外周传入类型相关。当前研究调查了物理空间与感知空间之间映射的这种复杂性是否在皮层水平上有所体现。在一种综合的心理物理学和成像方法中,我们使用了点图案刺激,此前的研究报告了点间距与感知空间密度之间存在简单的线性关系,以及感知粗糙度的更复杂函数关系。因此,通过使用粗糙度和空间估计任务,可以区分物理和感知刺激特征,空间密度任务控制低水平感官方面的处理。多体素模式分析用于研究哪些脑区持有指示感知纹理特征水平的信息。虽然关于感知粗糙度差异的信息主要存在于高阶皮层,即岛盖部皮质和腹侧视觉皮质区域,但关于感知空间密度的信息已经可以从早期体感和视觉区域获得。这一结果表明,皮层处理反映了所评估的触觉纹理维度的不同复杂性。此外,据我们所知,这项研究首次表明视觉皮层对触觉粗糙度感知有贡献。