Wang J, Zhou T, Qiu M, Du A, Cai K, Wang Z, Zhou C, Meng M, Zhuo Y, Fan S, Chen L
Beijing Laboratory of Cognitive Science, University of Science & Technology of China. jwang@
Hum Brain Mapp. 1999;8(4):170-81. doi: 10.1002/(SICI)1097-0193(1999)8:4<170::AID-HBM2>3.0.CO;2-W.
Recent imaging studies indicated the existence of two visual pathways in humans: a ventral stream for object and form vision and a dorsal stream for spatial and motion vision. The present study was motivated by a stimulating question: Supposing shape and motion are processed separately in the two pathways, how do the respective cortical areas respond to the stimuli of "forms defined by motion"? fMRI and ERP recordings were combined in order to measure the spatiotemporal activation pattern in the two pathways responding to forms defined by motion, which were produced solely by coherent movement of random dots against a background of dynamic or static random dots. The fMRI data indicated that the stimuli of forms defined by motion indeed activated both dorsal MT/V5 and ventral GTi/GF. Furthermore, the RV curves resulting from fMRI-seeded dipole modeling indicated that each pair of dipoles located at MT/V5 or GTi/GF reached the same best-fit point; a single pair of free dipoles located near the fMRI foci of MT/V5 and GTi/GF could be identified at the corresponding best-fit point; and the source waveforms resulting from fixed dipole modeling also showed simultaneous activation of MT/V5 and GTi/GF dipoles in the time interval around the best-fit point. The present results, therefore, suggest that MT/V5 and GTi/GF appear to be activated in parallel and simultaneously responding to forms defined by motion. Such findings raise interesting issues about the hierarchical organization and the functional specialization in the two pathways.
近期的影像学研究表明,人类存在两条视觉通路:一条腹侧通路用于物体和形状视觉,一条背侧通路用于空间和运动视觉。本研究受一个引人深思的问题所驱动:假设形状和运动在两条通路中分别进行处理,那么各个皮层区域如何对“由运动定义的形状”刺激做出反应?将功能磁共振成像(fMRI)和事件相关电位(ERP)记录相结合,以测量两条通路中对由运动定义的形状做出反应的时空激活模式,这些形状完全由随机点在动态或静态随机点背景上的连贯运动产生。fMRI数据表明,由运动定义的形状刺激确实激活了背侧的MT/V5和腹侧的GTi/GF。此外,fMRI种子偶极子模型得到的响应向量(RV)曲线表明,位于MT/V5或GTi/GF的每对偶极子都达到了相同的最佳拟合点;在相应的最佳拟合点可以识别出位于MT/V5和GTi/GF的fMRI焦点附近的一对偶极子;固定偶极子模型得到的源波形也显示在最佳拟合点周围的时间间隔内MT/V5和GTi/GF偶极子同时被激活。因此,本研究结果表明,MT/V5和GTi/GF似乎是并行激活的,同时对由运动定义的形状做出反应。这些发现引发了关于两条通路的层级组织和功能特化的有趣问题。