Chen Xiaodong, DeAngelis Gregory C, Angelaki Dora E
Department of Neuroscience, Baylor College of Medicine, Houston, Texas; Department of Anatomy & Neurobiology, Washington University, St. Louis, Missouri; and.
Department of Brain and Cognitive Sciences, University of Rochester, Rochester, New York.
J Neurophysiol. 2014 Jul 15;112(2):353-61. doi: 10.1152/jn.00057.2014. Epub 2014 Apr 30.
The ventral intraparietal area (VIP) processes multisensory visual, vestibular, tactile, and auditory signals in diverse reference frames. We recently reported that visual heading signals in VIP are represented in an approximately eye-centered reference frame when measured using large-field optic flow stimuli. No VIP neuron was found to have head-centered visual heading tuning, and only a small proportion of cells had reference frames that were intermediate between eye- and head-centered. In contrast, previous studies using moving bar stimuli have reported that visual receptive fields (RFs) in VIP are head-centered for a substantial proportion of neurons. To examine whether these differences in previous findings might be due to the neuronal property examined (heading tuning vs. RF measurements) or the type of visual stimulus used (full-field optic flow vs. a single moving bar), we have quantitatively mapped visual RFs of VIP neurons using a large-field, multipatch, random-dot motion stimulus. By varying eye position relative to the head, we tested whether visual RFs in VIP are represented in head- or eye-centered reference frames. We found that the vast majority of VIP neurons have eye-centered RFs with only a single neuron classified as head-centered and a small minority classified as intermediate between eye- and head-centered. Our findings suggest that the spatial reference frames of visual responses in VIP may depend on the visual stimulation conditions used to measure RFs and might also be influenced by how attention is allocated during stimulus presentation.
腹侧顶内区(VIP)在不同的参照系中处理多感官视觉、前庭、触觉和听觉信号。我们最近报告称,当使用大视野光流刺激进行测量时,VIP中的视觉航向信号以近似眼心参照系表示。未发现VIP神经元具有头心视觉航向调谐,只有一小部分细胞的参照系介于眼心和头心之间。相比之下,之前使用移动条形刺激的研究报告称,VIP中相当一部分神经元的视觉感受野(RFs)是以头心为中心的。为了研究之前这些结果的差异是否可能是由于所研究的神经元特性(航向调谐与RF测量)或所使用的视觉刺激类型(全视野光流与单个移动条形)造成的,我们使用大视野、多斑块、随机点运动刺激对VIP神经元的视觉RFs进行了定量映射。通过改变眼睛相对于头部的位置,我们测试了VIP中的视觉RFs是以头心还是眼心参照系表示的。我们发现,绝大多数VIP神经元具有眼心RFs,只有一个神经元被归类为头心,一小部分被归类为介于眼心和头心之间。我们的研究结果表明,VIP中视觉反应的空间参照系可能取决于用于测量RFs的视觉刺激条件,也可能受到刺激呈现过程中注意力分配方式的影响。