Emmerling Thomas C, Zimmermann Jan, Sorger Bettina, Frost Martin A, Goebel Rainer
Department of Cognitive Neuroscience, Maastricht University, 6229 EV Maastricht, The Netherlands; Maastricht Brain Imaging Center, 6229 ER Maastricht, The Netherlands.
Department of Cognitive Neuroscience, Maastricht University, 6229 EV Maastricht, The Netherlands; Maastricht Brain Imaging Center, 6229 ER Maastricht, The Netherlands.
Neuroimage. 2016 Jan 15;125:61-73. doi: 10.1016/j.neuroimage.2015.10.022. Epub 2015 Oct 16.
There is a long-standing debate about the neurocognitive implementation of mental imagery. One form of mental imagery is the imagery of visual motion, which is of interest due to its naturalistic and dynamic character. However, so far only the mere occurrence rather than the specific content of motion imagery was shown to be detectable. In the current study, the application of multi-voxel pattern analysis to high-resolution functional data of 12 subjects acquired with ultra-high field 7T functional magnetic resonance imaging allowed us to show that imagery of visual motion can indeed activate the earliest levels of the visual hierarchy, but the extent thereof varies highly between subjects. Our approach enabled classification not only of complex imagery, but also of its actual contents, in that the direction of imagined motion out of four options was successfully identified in two thirds of the subjects and with accuracies of up to 91.3% in individual subjects. A searchlight analysis confirmed the local origin of decodable information in striate and extra-striate cortex. These high-accuracy findings not only shed new light on a central question in vision science on the constituents of mental imagery, but also show for the first time that the specific sub-categorical content of visual motion imagery is reliably decodable from brain imaging data on a single-subject level.
关于心理意象的神经认知实现存在长期争论。心理意象的一种形式是视觉运动意象,因其自然主义和动态特性而备受关注。然而,到目前为止,仅显示出运动意象的单纯出现是可检测的,而非其具体内容。在当前研究中,将多体素模式分析应用于通过超高场7T功能磁共振成像获取的12名受试者的高分辨率功能数据,使我们能够表明视觉运动意象确实可以激活视觉层级的最早水平,但其程度在受试者之间差异很大。我们的方法不仅能够对复杂意象进行分类,还能对其实际内容进行分类,因为在三分之二的受试者中成功从四个选项中识别出了想象运动的方向,个别受试者的准确率高达91.3%。探照灯分析证实了可解码信息在纹状和纹外皮层的局部起源。这些高精度的发现不仅为视觉科学中关于心理意象构成的核心问题提供了新的见解,还首次表明视觉运动意象的特定子类别内容可以在单受试者水平上从脑成像数据中可靠地解码。