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腹侧顶内沟皮层中自我运动的前庭和视觉线索的表示。

Representation of vestibular and visual cues to self-motion in ventral intraparietal cortex.

机构信息

Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

J Neurosci. 2011 Aug 17;31(33):12036-52. doi: 10.1523/JNEUROSCI.0395-11.2011.

Abstract

Convergence of vestibular and visual motion information is important for self-motion perception. One cortical area that combines vestibular and optic flow signals is the ventral intraparietal area (VIP). We characterized unisensory and multisensory responses of macaque VIP neurons to translations and rotations in three dimensions. Approximately one-half of VIP cells show significant directional selectivity in response to optic flow, one-half show tuning to vestibular stimuli, and one-third show multisensory responses. Visual and vestibular direction preferences of multisensory VIP neurons could be congruent or opposite. When visual and vestibular stimuli were combined, VIP responses could be dominated by either input, unlike the medial superior temporal area (MSTd) where optic flow tuning typically dominates or the visual posterior sylvian area (VPS) where vestibular tuning dominates. Optic flow selectivity in VIP was weaker than in MSTd but stronger than in VPS. In contrast, vestibular tuning for translation was strongest in VPS, intermediate in VIP, and weakest in MSTd. To characterize response dynamics, direction-time data were fit with a spatiotemporal model in which temporal responses were modeled as weighted sums of velocity, acceleration, and position components. Vestibular responses in VIP reflected balanced contributions of velocity and acceleration, whereas visual responses were dominated by velocity. Timing of vestibular responses in VIP was significantly faster than in MSTd, whereas timing of optic flow responses did not differ significantly among areas. These findings suggest that VIP may be proximal to MSTd in terms of vestibular processing but hierarchically similar to MSTd in terms of optic flow processing.

摘要

前庭和视觉运动信息的融合对于自我运动感知很重要。一个整合前庭和光流信号的皮层区域是腹侧内顶区(VIP)。我们描述了猕猴 VIP 神经元对三维平移和旋转的单感觉和多感觉反应。大约一半的 VIP 细胞对光流表现出显著的方向选择性,一半对前庭刺激有调谐,三分之一表现出多感觉反应。多感觉 VIP 神经元的视觉和前庭方向偏好可以一致或相反。当视觉和前庭刺激结合时,VIP 反应可以由任一输入主导,与内侧上颞区(MSTd)不同,MSTd 中光流调谐通常占主导地位,或与视觉后颞叶区(VPS)不同,VPS 中前庭调谐占主导地位。VIP 中的光流选择性比 MSTd 弱,但比 VPS 强。相比之下,VPS 中平移的前庭调谐最强,VIP 次之,MSTd 最弱。为了描述反应动力学,方向-时间数据通过时空模型拟合,其中时间响应被建模为速度、加速度和位置分量的加权和。VIP 中的前庭反应反映了速度和加速度的平衡贡献,而视觉反应则主要由速度决定。VIP 中前庭反应的时间明显快于 MSTd,而光流反应的时间在各区域之间没有显著差异。这些发现表明,VIP 在前庭处理方面可能与 MSTd 接近,但在光流处理方面与 MSTd 具有类似的层次结构。

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