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Processing Shape, Motion and Three-dimensional Shape-from-motion in the Human Cortex.

机译:在人类皮质中处理形状,运动和三维运动形状。

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摘要

Shape and motion are complementary visual features and each appears to be processed in unique cortical areas. However, object motion is a powerful cue for the perception of three-dimensional (3-D) shape, implying that the two types of information-motion and form-are well integrated. We conducted a series of fMRI experiments aimed at identifying the brain regions involved in inferring 3-D shape from motion cues. For each subject, we identified regions in occipital-temporal cortex that were activated when perceiving: (i) motion in unstructured random-dot patterns, (ii) 2-D and 3-D line drawing shapes, and (iii) 3-D shapes defined by motion cues (shape-from-motion, SFM). We found closely adjacent areas in the lateral occipital region activated by random motion and line-drawing shapes. In addition, we found that the SFM stimuli produced a greater MRI signal in only one of the areas identified with the random motion and line-drawing stimuli: the superior lateral occipital (SLO) region. High-resolution analysis showed that SFM objects and line drawings were processed in separate but adjacent sub-regions in SLO, suggesting that SLO codes object shape but retains topographic segregation based on shape cues. Expanding the analysis to the entire cortex identified a parietal area that had overlapping activation for both SFM and line drawings and increased MRI signal for 3-D versus 2-D shapes, suggesting this area is important for processing shape information.
机译:形状和动作是互补的视觉特征,每个看起来都在独特的皮质区域中进行处理。但是,对象运动是感知三维(3-D)形状的有力提示,这意味着信息运动和形式这两种信息都很好地集成在一起。我们进行了一系列功能磁共振成像实验,旨在识别涉及从运动线索推断3-D形状的大脑区域。对于每个受试者,我们确定了感知时会激活的枕颞皮质区域:(i)以非结构化随机点模式运动,(ii)2-D和3-D线描形状以及(iii)3-D由运动提示定义的形状(运动形,SFM)。我们在枕骨外侧区域发现了由随机运动和画线形状激活的紧密相邻的区域。此外,我们发现,SFM刺激仅在随机运动和画线刺激所识别的区域之一中产生较大的MRI信号:上枕骨(SLO)区域。高分辨率分析表明,SLO对象和线图在SLO中的单独但相邻的子区域中进行了处理,这表明SLO对对象的形状进行编码,但根据形状提示保留地形隔离。将分析扩展到整个皮质,可以确定壁区域,该壁区域对于SFM和线图都有重叠的激活,并且对于3D和2D形状的MRI信号增加,这表明该区域对于处理形状信息很重要。

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