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Natural Vision Reveals Regional Specialization to Local Motion and to Contrast-Invariant, Global Flow in the Human Brain

机译:自然视觉揭示了人脑局部运动和对比度不变的全局流动的区域专业化

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摘要

Visual changes in feature movies, like in real-live, can be partitioned into global flow due to self/camera motion, local/differential flow due to object motion, and residuals, for example, due to illumination changes. We correlated these measures with brain responses of human volunteers viewing movies in an fMRI scanner. Early visual areas responded only to residual changes, thus lacking responses to equally large motion-induced changes, consistent with predictive coding. Motion activated V5+ (MT+), V3A, medial posterior parietal cortex (mPPC) and, weakly, lateral occipital cortex (LOC). V5+ responded to local/differential motion and depended on visual contrast, whereas mPPC responded to global flow spanning the whole visual field and was contrast independent. mPPC thus codes for flow compatible with unbiased heading estimation in natural scenes and for the comparison of visual flow with nonretinal, multimodal motion cues in it or downstream. mPPC was functionally connected to anterior portions of V5+, whereas laterally neighboring putative homologue of lateral intraparietal area (LIP) connected with frontal eye fields. Our results demonstrate a progression of selectivity from local and contrast-dependent motion processing in V5+ toward global and contrast-independent motion processing in mPPC. The function, connectivity, and anatomical neighborhood of mPPC imply several parallels to monkey ventral intraparietal area (VIP).
机译:像实时电影一样,功能电影中的视觉变化可分为由于自身/相机运动而引起的全局流,由于对象运动而引起的局部/微分流以及例如由于照明变化而引起的残差。我们将这些测量与人类志愿者在fMRI扫描仪中观看电影的大脑反应相关联。早期的视觉区域仅对残留的变化做出反应,因此缺乏对与预测编码一致的同样大的运动引起的变化的响应。运动激活了V5 +(MT +),V3A,内侧后顶叶皮层(mPPC),以及后枕外侧皮层(LOC)。 V5 +对局部/微分运动做出响应,并依赖于视觉对比度,而mPPC对跨越整个视野的全局流做出响应,并且与对比度无关。因此,mPPC编码为与自然场景中的无偏航向估计兼容的流量,以及用于将视觉流量与其中或下游的非视网膜,多模式运动提示进行比较的代码。 mPPC在功能上连接到V5 +的前部,而侧顶壁区域(LIP)的侧向相邻推定同源物与额叶视野连接。我们的结果证明了选择性的发展,从V5 +中的局部和依赖于对比度的运动处理到mPPC中的整体和非依赖于对比度的运动处理。 mPPC的功能,连通性和解剖学邻域暗示与猴腹顶壁内区域(VIP)平行。

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  • 来源
    《Cerebral Cortex》 |2008年第3期|p.705-717|共13页
  • 作者单位

    1Max Planck Institute for Biological Cybernetics, Department of Physiology of Cognitive Processes, 72076 Tübingen, Germany 2Laboratory of Neurobiology, Department of Anatomy, University College London, London WC1E 6BT, UK;

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  • 入库时间 2022-08-18 01:13:57

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